Voyager™ 1200g/1202g
Single-Line Laser Bar Code Scanner
User’s Guide
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Product Agency Compliance - Voyager 1200g
USA
FCC Part 15 Subpart B Class B
This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions:
1. This device may not cause harmful interference.
2. This device must accept any interference received, including interference that may cause undesired operation.
This equipment has been tested and found to comply with the limits for a Class B digital device pursuant to part 15 of the
FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential instal-
lation. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accor-
dance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that
interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television
reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the inter-
ference by one or more of the following measures:
•
•
•
•
Reorient or relocate the receiving antenna.
Increase the separation between the equipment and receiver.
Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.
Consult the dealer or an experienced radio or television technician for help.
If necessary, the user should consult the dealer or an experienced radio/television technician for additional suggestions.
The user may find the following booklet helpful: “Something About Interference.” This is available at FCC local regional
offices. Honeywell is not responsible for any radio or television interference caused by unauthorized modifications of this
equipment or the substitution or attachment of connecting cables and equipment other than those specified by Honeywell.
The correction is the responsibility of the user.
Use only shielded data cables with this system. This unit has been tested with cables less than 3 meters. Cables greater
than 3 meters may not meet class B performance.
Caution: Any changes or modifications made to this equipment not expressly approved by Honeywell may void the FCC
authorization to operate this equipment.
UL Statement
UL listed: UL60950-1, 2nd Edition.
Canada
Industry Canada ICES-003
This Class B digital apparatus complies with Canadian ICES-003. Operation is subject to the following conditions:
1. This device may not cause harmful interference.
2. This device must accept any interference received, including interference that may cause undesired operation.
Conformité à la règlementation canadienne
Cet appareil numérique de la Classe B est conforme à la norme NMB-003 du Canada. Son fonctionnement est assujetti
aux conditions suivantes :
1. Cet appareil ne doit pas causer de brouillage préjudiciable.
2. Cet appareil doit pouvoir accepter tout brouillage reçu, y compris le brouillage pouvant causer un fonctionnement
indésirable.
C-UL Statement
C-UL listed: CSA C22.2 No.60950-1-07, Second Edition.
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Europe
The CE marking indicates compliance with the following directives:
• 2004/108/EC EMC
• 2011/65/EU RoHS (Recast)
In addition, complies to 2006/95/EC Low Voltage Directive, when shipped with recommended power supply. European
contact:
Hand Held Products Europe B.V.
Nijverheidsweg 9-13
5627 BT Eindhoven
The Netherlands
Honeywell International Inc. shall not be liable for use of our product with equipment (i.e., power supplies, personal comput-
ers, etc.) that is not CE marked and does not comply with the Low Voltage Directive.
Honeywell Scanning & Mobility Product Environmental Information
Australia/NZ
C-Tick Statement
Conforms to AS/NZS 3548 EMC requirement
Mexico
Conforms to NOM-019.
Russia
Gost-R certificate
South Korea
This product meets Korean agency approval.
Taiwan
If the following label is attached to your product, the product meets Taiwan agency approval:
BSMI Standard: CNS13438, CNS 14336
: CNS13438, CNS14336
International
LED Safety Statement
LEDs have been tested and classified as “EXEMPT RISK GROUP” to the standard: IEC 62471:2006.
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CB Scheme
Certified to CB Scheme IEC 60950-1, Second Edition.
Laser Safety Statement
LASER LIGHT: DO NOT STARE INTO
BEAM. CLASS 2 LASER PRODUCT.
LASERSTRAHLUNG: NICHT IN DEN
STRAHL BLICKEN. LASER KLASSE 2.
LUMIERE LASER: NE PAS REGARDER
DANS LE FAISCEAU. APPAREIL A LASER.
DE CLASSE 2 630-650nm, 1mW.
This device has been tested in accordance with and complies with IEC60825-1 ed2.0 and 21 CFR 1040.10 and 1040.11,
except for deviations pursuant to Laser Notice No. 50, dated June 24, 2007.
LASER LIGHT, DO NOT STARE INTO BEAM, CLASS 2 LASER PRODUCT, 1.0 mW MAX OUTPUT: 630-650nM.
Scanner Laser Beam
Wavelength 645 - 660 nm
Divergence < 1.5 mrad. per IEC 60825-1 worst case
Max power output < 1mw
The laser diode is considered an embedded laser. Intrabeam viewing of the laser shall be prevented.
Embedded Laser
Wavelength 645- 660 nm
Divergence < 1.5 mrad, per IEC 60825-1 worst case
Max power output < 10 mw
Caution - use of controls or adjustments or performance of procedures other than those specified herein may result in haz-
ardous radiation exposure.
Patents
Solids and Water Protection
The Voyager 1200g has a rating of IP42, immunity of foreign particles and dripping water.
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Product Agency Compliance - Voyager 1202g and CCB00-010BT
USA
FCC Part 15 Subpart C
This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions:
1. This device may not cause harmful interference.
2. This device must accept any interference received, including interference that may cause undesired operation.
Caution: Any changes or modifications made to this equipment not expressly approved by Honeywell may void the
FCC authorization to operate this equipment.
Use only shielded data cables with this system. This unit has been tested with cables less than 3 meters. Cables greater
than 3 meters may not meet class B performance.
UL Statement
UL listed: UL60950-1, Second Edition.
Canada
Industry Canada
This device complies with Canadian RSS-210. Operation is subject to the following conditions:
1. This device may not cause interference.
2. This device must accept any interference, including interference that may cause undesired operation.
Conformité à la règlementation canadienne
Cet appareil ISM est conforme à la norme CNR-210 du Canada. Son fonctionnement est assujetti aux conditions suivantes
:
1. Cet appareil ne doit pas causer de brouillage préjudiciable.
2. Cet appareil doit pouvoir accepter tout brouillage reçu, y compris le brouillage pouvant causer un fonctionnement
indésirable.
C-UL Statement
C-UL listed: CSA C22.2 No.60950-1-07, 2nd Edition for I.T.E. product safety.
Europe
The CE marking indicates compliance with the following directives:
• 1995/5/EC R&TTE
• 2011/65/EU RoHS (Recast)
In addition, complies to 2006/95/EC Low Voltage Directive, when shipped with recommended power supply. European
contact:
Hand Held Products Europe B.V.
Nijverheidsweg 9-13
5627 BT Eindhoven
The Netherlands
Honeywell shall not be liable for use of our product with equipment (i.e., power supplies, personal computers, etc.) that is
not CE marked and does not comply with the Low Voltage Directive.
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Honeywell Scanning & Mobility Product Environmental Information
Australia/NZ
C-Tick Statement
Conforms to AS/NZS 3548 EMC requirements.
China
SRRC Radio Certificate.
CCC safety (CCB00-010BT base only)
Japan
Complies with Technical Regulations Conformity Certification of Specified Radio equipment.
Korea
This product meets Korean agency approval.
Mexico
Mexico Certificate of Compliance certifies this product meets UL60950-1, 2nd Edition, safety standard.
Russia
Gost-R certificate
Taiwan
If the following label is attached to your product, the product meets Taiwan agency approval:
BSMI Standard: CNS13438, CNS14336 (Voyager 1202 only)
: CNS13438, CNS14336
NCC standard: Low power frequency electric machineries technical standard: LP0002
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International
LED Safety Statement
LEDs have been tested and classified as “EXEMPT RISK GROUP” to the standard: IEC 62471:2006.
Radio Technology
Class II
CB Scheme
Certified to CB Scheme IEC 60950-1, Second Edition.
Laser Safety Statement
LASER LIGHT: DO NOT STARE INTO
BEAM. CLASS 2 LASER PRODUCT.
LASERSTRAHLUNG: NICHT IN DEN
STRAHL BLICKEN. LASER KLASSE 2.
LUMIERE LASER: NE PAS REGARDER
DANS LE FAISCEAU. APPAREIL A LASER.
DE CLASSE 2 630-650nm, 1mW.
This device has been tested in accordance with and complies with IEC60825-1 ed2.0 and 21 CFR 1040.10 and 1040.11,
except for deviations pursuant to Laser Notice No. 50, dated June 24, 2007.
LASER LIGHT, DO NOT STARE INTO BEAM, CLASS 2 LASER PRODUCT, 1.0 mW MAX OUTPUT: 630-650nM.
Scanner Laser Beam
Wavelength 645 - 660 nm
Divergence < 1.5 mrad. per IEC 60825-1 worst case
Max power output < 1mw
The laser diode is considered an embedded laser. Intrabeam viewing of the laser shall be prevented.
Embedded Laser
Wavelength 645- 660 nm
Divergence < 1.5 mrad, per IEC 60825-1 worst case
Max power output < 10 mw
Caution - use of controls or adjustments or performance of procedures other than those specified herein may result in haz-
ardous radiation exposure.
Patents
Solids and Water Protection
The Voyager 1202g has a rating of IP42, immunity of foreign particles and dripping water.
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Voyager 1200g Safety Label Locations
Laser Output
Internal Laser Cautions
Compliance Markings
information, Part Number,
and Serial Number
information
Compliance Markings
information
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Voyager 1202g Safety Label Locations
Laser Output
Internal Laser Cautions
Laser Safety Information
Compliance Markings
information, Part Number,
and Serial Number
information
Compliance Markings
information
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CCB00-010BT Safety Label Locations
Item Number,
Serial
Compliance
Markings
information
Number, and
Compliance
Markings
information
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Table of Contents
About This Manual...............................................................................................................1-1
Connecting the Device.........................................................................................................1-1
Reading Techniques............................................................................................................1-5
Menu Bar Code Security Settings........................................................................................1-5
®
Verifone Ruby Terminal Default Settings...........................................................................2-7
®
Gilbarco Terminal Default Settings ....................................................................................2-7
©
Datalogic™ Magellan Bioptic Aux Port Configuration........................................................2-8
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Keyboard Wedge Modifiers ...............................................................................................2-18
Keyboard Style ............................................................................................................2-18
Keyboard Conversion ..................................................................................................2-19
Keyboard Modifiers......................................................................................................2-19
Keyboard Wedge Defaults...........................................................................................2-21
RS232 Modifiers................................................................................................................2-22
RS232 Baud Rate........................................................................................................2-22
RS232 Word Length: Data Bits, Stop Bits, and Parity.................................................2-23
RS232 Handshaking....................................................................................................2-24
RS232 Timeout............................................................................................................2-25
ACK/NAK..................................................................................................................... 2-26
NAK Retries................................................................................................................. 2-27
RS232 Defaults............................................................................................................2-27
NCR Modifiers ...................................................................................................................2-27
NCR ACK/NAK ............................................................................................................2-27
Block Check Character................................................................................................ 2-28
NCR Prefix...................................................................................................................2-28
NCR Suffix...................................................................................................................2-28
NCR Prefix/Suffix.........................................................................................................2-28
NCR NOF (Not-on-File) Error ......................................................................................2-29
Scanner to Bioptic Communication ...................................................................................2-29
Scanner-Bioptic Packet Mode .....................................................................................2-29
ACK/NAK..................................................................................................................... 2-29
How the Charge and Communications Base Works ...........................................................3-1
Communication Between the Cordless System
and the Host......................................................................................................................3-1
RF (Radio Frequency) Module Operation ...........................................................................3-2
System Conditions...............................................................................................................3-2
Scanner Is Out of Range ...............................................................................................3-2
Scanner Is Moved Back Into Range ..............................................................................3-2
Out of Range and Back into Range with Batch Mode On..............................................3-2
Page Button.........................................................................................................................3-3
Voyager 1202g Battery Removal.........................................................................................3-3
Charging Information .....................................................................................................3-3
Battery Recommendations ............................................................................................3-4
Proper Disposal of the Battery.......................................................................................3-4
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Beeper and LED Sequences and Meaning .........................................................................3-4
Scanner LED Sequences and Meaning.........................................................................3-5
Base LED Sequences and Meaning..............................................................................3-5
Scanning While in Base Cradle........................................................................................... 3-6
Paging Pitch.................................................................................................................. 3-7
Error Indicators.................................................................................................................... 3-7
Scanner Address.................................................................................................................3-7
Scanner Modes ...................................................................................................................3-7
Linked Modes ................................................................................................................3-8
Unlinking the Scanner .........................................................................................................3-9
Override Locked Scanner.................................................................................................... 3-9
Alarm Sound Type.........................................................................................................3-9
Scanner Power Time-Out Timer..........................................................................................3-9
RangeGate ........................................................................................................................3-10
Batch Mode .......................................................................................................................3-10
Batch Mode Quantity ...................................................................................................3-11
Delete Last Code......................................................................................................... 3-13
Record Counter ...........................................................................................................3-13
Total Records ..............................................................................................................3-13
Clear All Codes After Transmission.............................................................................3-14
Clear All Codes............................................................................................................3-14
Transmit Records Automatically.................................................................................. 3-14
Transmit Records to Host............................................................................................ 3-15
Batch Mode Transmit Delay ........................................................................................3-15
Scanner Name...................................................................................................................3-15
Changing the Scanner’s Bluetooth PIN Code..............................................................3-17
Minimizing Bluetooth/ISM Band Network Activity..............................................................3-17
Auto Reconnect Mode .................................................................................................3-17
Reset Scanner and Base...................................................................................................3-19
Power Up Beeper ................................................................................................................4-1
iii
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Good Read and Error Indicators..........................................................................................4-1
Beeper – Good Read.....................................................................................................4-1
Beeper Volume – Good Read........................................................................................4-2
Beeper Pitch – Good Read............................................................................................4-2
Beeper Duration – Good Read ......................................................................................4-3
Number of Beeps – Good Read ....................................................................................4-3
LED Indicators.....................................................................................................................4-4
LED Brightness..............................................................................................................4-5
In-Stand and Out-Of-Stand Settings....................................................................................4-6
In-Stand and Out-of-Stand Defaults ..............................................................................4-6
Presentation Modes.......................................................................................................4-6
Manual Activation Mode ................................................................................................4-7
End Manual Activation After Good Read.......................................................................4-7
Manual Activation Laser Timeout - Button Settings.......................................................4-8
CodeGate ......................................................................................................................4-9
Button Function..............................................................................................................4-9
End Object Detection After Good Read.......................................................................4-10
Object Detection Laser Timeout ..................................................................................4-11
End Character Activation After Good Read.................................................................4-12
Character Activation Laser Timeout ............................................................................4-12
Character Deactivation Mode............................................................................................ 4-12
Reread Delay.....................................................................................................................4-13
User-Specified Reread Delay............................................................................................4-13
Output Sequence Overview...............................................................................................4-14
Output Sequence Editor ..............................................................................................4-14
To Add an Output Sequence .......................................................................................4-14
Output Sequence Editor ..............................................................................................4-16
Sequence Timeout.......................................................................................................4-16
Sequence Match Beeper .............................................................................................4-16
Partial Sequence .........................................................................................................4-16
Require Output Sequence ...........................................................................................4-17
No Read ............................................................................................................................4-17
To Clear One or All Prefixes or Suffixes........................................................................ 5-2
To Add a Carriage Return Suffix to All Symbologies..................................................... 5-2
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Prefix Selections..................................................................................................................5-2
Suffix Selections..................................................................................................................5-3
Transmit Alternate Extended ASCII Characters..................................................................5-3
Function Code Transmit ......................................................................................................5-4
Intercharacter, Interfunction, and Intermessage Delays......................................................5-5
User Specified Intercharacter Delay.............................................................................. 5-5
Data Format Editor Introduction ..........................................................................................6-1
To Add a Data Format......................................................................................................... 6-1
Terminal ID Table................................................................................................................6-3
Data Format Editor Commands...........................................................................................6-3
Search Commands........................................................................................................ 6-6
Miscellaneous Commands.............................................................................................6-8
Data Formatter ..................................................................................................................6-10
Data Format Non-Match Error Tone............................................................................ 6-11
Primary/Alternate Data Formats........................................................................................6-11
Single Scan Data Format Change...............................................................................6-12
All Symbologies................................................................................................................... 7-1
Message Length Description...............................................................................................7-1
Codabar............................................................................................................................... 7-2
Codabar Concatenation.................................................................................................7-3
Code 39............................................................................................................................... 7-5
Code 32 Pharmaceutical (PARAF)................................................................................7-6
Full ASCII.......................................................................................................................7-7
Interleaved 2 of 5.................................................................................................................7-8
NEC 2 of 5...........................................................................................................................7-9
Code 93............................................................................................................................. 7-11
Straight 2 of 5 Industrial (three-bar start/stop)................................................................... 7-12
Straight 2 of 5 IATA (two-bar start/stop)............................................................................ 7-13
Matrix 2 of 5.......................................................................................................................7-14
Code 11............................................................................................................................. 7-15
Code 128...........................................................................................................................7-17
ISBT 128 Concatenation..............................................................................................7-18
GS1-128 ............................................................................................................................7-23
UPC-A/EAN-13 with Extended Coupon Code...................................................................7-28
UPC-A Number System 5 Addenda Required.............................................................7-29
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UPC-E0 .............................................................................................................................7-30
EAN/JAN-13 ......................................................................................................................7-33
ISBN Translate ............................................................................................................7-39
ISSN Translate ............................................................................................................7-40
EAN/JAN-8 ........................................................................................................................7-41
MSI ....................................................................................................................................7-43
Plessey Code ....................................................................................................................7-45
GS1 DataBar Expanded....................................................................................................7-48
Postal Codes .....................................................................................................................7-49
Keyboard Function Relationships........................................................................................8-1
Supported Interface Keys.................................................................................................... 8-2
To Add a Test Code I.D. Prefix to All Symbologies.............................................................9-1
Test Menu............................................................................................................................9-1
EZConfig-Scanning Introduction..........................................................................................9-1
Installing EZConfig-Scanning from the Web..................................................................9-2
Conventions.......................................................................................................................10-1
Menu Command Syntax....................................................................................................10-1
Query Commands .............................................................................................................10-1
Responses...................................................................................................................10-2
Serial Trigger Commands..................................................................................................10-3
Read Time-Out ............................................................................................................10-3
Resetting the Standard Product Defaults ..........................................................................10-3
Menu Commands ..............................................................................................................10-4
Voyager 1200g Product Specifications..............................................................................11-1
Voyager 1202g Product Specifications..............................................................................11-2
CCB00-010BT Product Specifications...............................................................................11-3
CCB00-010BT Mounting ...................................................................................................11-4
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Standard Cable Pinouts.....................................................................................................11-5
Keyboard Wedge.........................................................................................................11-5
Serial Output ............................................................................................................... 11-5
RS485 Output .............................................................................................................11-6
USB .............................................................................................................................11-6
Maintenance......................................................................................................................12-1
Cleaning the Device.....................................................................................................12-1
Inspecting Cords and Connectors ...............................................................................12-1
Replacing an Interface Cable in a Corded Scanner ....................................................12-2
Replacing Cables in Cordless Systems.............................................................................12-2
Troubleshooting a Voyager Scanner.................................................................................12-3
Troubleshooting a Cordless System..................................................................................12-4
Troubleshooting a Base...............................................................................................12-4
Troubleshooting a Cordless Scanner ..........................................................................12-4
Product Service and Repair...............................................................................................13-1
ASCII Conversion Chart (Code Page 1252)........................................................................A-2
vii
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1
Getting Started
About This Manual
This User’s Guide provides installation and programming instructions for the Voyager 1200g/1202g linear scanner. Product
specifications, dimensions, warranty, and customer support information are also included.
Honeywell bar code scanners are factory programmed for the most common terminal and communications settings. If you need
to change these settings, programming is accomplished by scanning the bar codes in this guide.
An asterisk (*) next to an option indicates the default setting.
Unpacking Your Device
After you open the shipping carton containing the product, take the following steps:
•
•
•
Check for damage during shipment. Report damage immediately to the carrier who delivered the carton.
Make sure the items in the carton match your order.
Save the shipping container for later storage or shipping.
Connecting the Device
Connecting with USB
A scanner or a base can be connected to the USB port of a computer.
1. Connect the appropriate interface cable to the scanner first, then to the computer.
Charge and
Communications
Base USB
Connection:
1 - 1
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2. Make sure the cables are secured in the wireways in the bottom of the base and that the base sits flat on a horizontal
surface.
3. The scanner beeps.
4. Verify the scanner or base operation by scanning a bar code from the Sample Symbols in the back of this manual.
For additional USB programming and technical information, refer to “USB Application Note,” available at www.honey-
wellaidc.com.
Connecting with Keyboard Wedge
A scanner or base can be connected between the keyboard and PC as a “keyboard wedge,” where the scanner provides
data output that is similar to keyboard entries. The following is an example of a keyboard wedge connection:
1. Turn off power and disconnect the keyboard cable from the back of the terminal/computer.
2. Connect the appropriate interface cable to the scanner and to the terminal/computer.
only if
power
supply is
included
Charge and
Communications Base
Keyboard Wedge
Connection:
3. Make sure the cables are secured in the wireways in the bottom of the base and that the base sits flat on a horizontal
surface.
4. Turn the terminal/computer power back on. The scanner beeps.
1 - 2
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5. Verify the scanner or base operation by scanning a bar code from the Sample Symbols in the back of this manual. The
scanner beeps once.
The unit defaults to an IBM PC AT and compatibles keyboard wedge interface with a USA keyboard. A carriage return (CR)
suffix is added to bar code data.
Connecting with RS232 Serial Port
1. Turn off power to the terminal/computer.
2. Connect the appropriate interface cable to the scanner.
Note: For the scanner or base to work properly, you must have the correct cable for your type of terminal/computer.
only if
power
supply is
included
Charge and
Communications
Base RS232
Serial Port
Connection:
3. Make sure the cables are secured in the wireways in the bottom of the base and that the base sits flat on a horizontal
surface.
4. Plug the serial connector into the serial port on your computer. Tighten the two screws to secure the connector to the
port.
5. Once the scanner or base has been fully connected, power up the computer.
This interface programs 9600 baud, 8 data bits, no parity, and 1 stop bit.
1 - 3
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Connecting with RS485
A scanner or base can be connected for an IBM POS terminal interface.
1. Connect the appropriate interface cable to the device, then to the computer.
Charge and
Communications
Base RS485
Connection:
2. Make sure the cables are secured in the wireways in the bottom of the base and that the base sits flat on a horizontal
surface.
3. Turn the terminal/computer power back on. The scanner beeps.
4. Verify the scanner or base operation by scanning a bar code from the Sample Symbols in the back of this manual. The
scanner beeps once.
1 - 4
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Reading Techniques
The scanner has a view finder that projects a bright red aiming beam that corresponds to the scanner’s horizontal field of view.
The aiming beam should be centered horizontally over the bar code and must highlight all the vertical bars of the bar code. It
will not read if the aiming beam is in any other direction.
Good Read
Bad Read
The aiming beam is smaller when the scanner is closer to the code and larger when it is farther from the code. Symbologies
with smaller bars or elements (mil size) should be read closer to the unit. Symbologies with larger bars or elements (mil size)
should be read farther from the unit. To read single or multiple symbols (on a page or on an object), hold the scanner at an
appropriate distance from the target, press the button, and center the aiming beam on the symbol. If the code being scanned is
highly reflective (e.g., laminated), it may be necessary to tilt the code up 15° to 18° to prevent unwanted reflection.
Menu Bar Code Security Settings
Honeywell scanners are programmed by scanning menu bar codes or by sending serial commands to the scanner. If you want
to restrict the ability to scan menu codes, you can use the Menu Bar Code Security settings. Please contact the nearest techni-
Setting Custom Defaults
You have the ability to create a set of menu commands as your own, custom defaults. To do so, scan the Set Custom Defaults
bar code below before each menu command or sequence you want saved. If your command requires scanning numeric codes
from the back cover, then a Save code, that entire sequence will be saved to your custom defaults. Scan the Set Custom
Defaults code again before the next command you want saved to your custom defaults.
When you have entered all the commands you want to save for your custom defaults, scan the Save Custom Defaults bar
code.
Set Custom Defaults
Save Custom Defaults
Note: If using a cordless system, scanning the Save Defaults bar code also causes both the scanner and the base to perform
a reset and become unlinked. The scanner must be placed in its base to re-establish the link before any setup codes are
You may have a series of custom settings and want to correct a single setting. To do so, just scan the new setting to overwrite
the old one. For example, if you had previously saved the setting for Beeper Volume at Low to your custom defaults, and decide
you want the beeper volume set to High, just scan the Set Custom Defaults bar code, then scan the Beeper Volume High
menu code, and then Save Custom Defaults. The rest of the custom defaults will remain, but the beeper volume setting will be
updated.
1 - 5
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Resetting the Custom Defaults
If you want the custom default settings restored to your scanner, scan the Activate Custom Defaults bar code below. This
resets the scanner to the custom default settings. If there are no custom defaults, it will reset the scanner to the factory default
settings. Any settings that have not been specified through the custom defaults will be defaulted to the factory default settings.
Activate Custom Defaults
Note: If using a cordless system, scanning this bar code also causes both the scanner and the base to perform a reset and
become unlinked. The scanner must be placed in its base to re-establish the link before any setup codes are entered.
1 - 6
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2
Programming the Interface
Introduction
This chapter describes how to program your system for the desired interface.
Programming the Interface - Plug and Play
Plug and Play bar codes provide instant scanner set up for commonly used interfaces.
Note: After you scan one of the codes, power cycle the host terminal to have the interface in effect.
Keyboard Wedge
If you want your system programmed for an IBM PC AT and compatibles keyboard wedge interface with a USA keyboard,
scan the bar code below. Keyboard wedge is the default interface.
Note: The following bar code also programs a carriage return (CR) suffix.
IBM PC AT and Compatibles with CR Suffix
IBM PS2 Keyboard
The following bar code programs you scanner for an IBM PS2 keyboard wedge interface with a USA keyboard.
Note: The following bar code also programs a carriage return (CR) suffix.
IBM PS2 with CR Suffix
RS232 Serial Port
The RS232 Interface bar code is used when connecting to the serial port of a PC or terminal. The following RS232 Inter-
face bar code also programs a carriage return (CR) and a line feed (LF) suffix, baud rate, and data format as indicated
below.
Option
Setting
Baud Rate
115,200 bps
Data Format
8 data bits, no parity bit, 1 stop bit
RS232 Interface
RS485
Scan one of the following “Plug and Play” codes to program the scanner for an IBM POS terminal interface.
Note: After scanning one of these codes, you must power cycle the cash register.
IBM Port 5B Interface
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IBM Port 9B
HHBCR-1 Interface
IBM Port 17 Interface
IBM Port 9B
HHBCR-2 Interface
Each bar code above also programs the following suffixes for each symbology:
Symbology Suffix
Symbology
Suffix
EAN 8
EAN 13
UPC A
UPC E
0C
16
0D
0A
Code 39
00 0A 0B
00 0D 0B
00 0A 0B
00 18 0B
Interleaved 2 of 5
Code 128 *
Code 128 **
* Suffixes programmed for Code 128 with IBM 4683 Port 5B, IBM 4683 Port 9B HHBCR-1, and IBM 4683 Port 17 Interfaces
**Suffixes programmed for Code 128 with IBM 4683 Port 9 HHBCR-2 Interface
OPOS Mode
The following bar code configures your scanner for OPOS (OLE for Retail Point of Sale) by modifying the following OPOS-
related settings:
Option
Setting
Interface
Baud Rate
RS232
38400
RS232 Handshaking Flow Control, No Timeout
XON/XOFF Off
ACK/NAK Off
Data Bits, Stop Bits, 8 Data, 1 Stop, Parity None
and Parity
Prefix/Suffix
Clear All Prefixes and Suffixes
Add Code ID and AIM ID Prefix
Add CR Suffix
Intercharacter Delay Off
Symbologies Enable UPC-A with check digit and number system
Enable UPC-E0 with check digit
Enable EAN/JAN-8 with check digit
Enable EAN/JAN-13 with check digit
Enable Code 128
Enable Code 39
Enable OPOS with automatic disable off
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OPOS Mode
USB IBM SurePos
Scan one of the following “Plug and Play” codes to program the scanner for an IBM SurePos (USB handheld scanner) or
IBM SurePos (USB tabletop scanner) interface.
Note: After scanning one of these codes, you must power cycle the cash register.
USB IBM SurePos
(USB Handheld Scanner)
Interface
USB IBM SurePos
(USB Tabletop Scanner)
Interface
Each bar code above also programs the following suffixes for each symbology:
Symbology
Suffix
Symbology
Suffix
EAN 8
EAN 13
UPC A
UPC E
0C
16
0D
0A
Code 39
Interleaved 2 of 5
Code 128
00 0A 0B
00 0D 0B
00 18 0B
00 0A 0B
Code 39
IBM Secondary Interface
On some older IBM cash registers, it may be necessary to disable the secondary or management interface. In particular, it
has been found necessary on IBM registers using the 4690 V2R4 operating system. The following bar codes are used for
this purpose. Default = Enable Secondary Interface.
*Enable Secondary Interface
Disable Secondary Interface
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USB PC or Macintosh Keyboard
Scan one of the following codes to program the scanner for USB PC Keyboard or USB Macintosh Keyboard. Scanning
these codes also adds a CR and LF.
USB Keyboard (PC)
USB Keyboard (Mac)
USB Japanese Keyboard (PC)
USB HID
Scan the following code to program the scanner for USB HID bar code scanners.
USB HID Bar Code Scanner
HID Fallback Mode
If you attempt to set a USB interface for your scanner, but the setup fails on the host system, you can program the scanner
to fall back to a HID keyboard interface after a set length of time. For example, if the scanner is configured for Serial Emu-
lation Mode, but the host system does not have the correct driver, the scanner would fail. If you set the HID Fallback Mode
for a set length of time, for example, 5 minutes, the scanner would change to a HID keyboard interface after 5 minutes of
trying to configure as serial emulation.
A unique beep sequence indicates that this mode has been entered. While in HID Fallback Mode, the scanner will not scan
normal bar codes and sounds a unique beep sequence that indicates the scanner is in Fallback Mode. Menu codes can
still be scanned while in HID Fallback Mode, allowing you to change the scanner’s programming.
Scan the bar code below, then set the length for the HID Fallback (from 0-60 minutes) by scanning digits from the
HID Fallback Mode
USB Serial Commands
USB Serial Emulation
Scan one of the following codes to program the scanner to emulate a regular RS232-based COM Port. If you are using a
Microsoft® Windows® PC, you will need to download a driver from the Honeywell website (www.honeywellaidc.com). The
driver will use the next available COM Port number. Apple® Macintosh computers recognize the scanner as a USB CDC
class device and automatically uses a class driver.
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Scanning either of these codes also adds a CR and LF.
USB Serial Emulation for
Windows XP, Windows Server
2003, and later
USB Serial Emulation for Windows 2000
Note: No extra configuration (e.g., baud rate) is necessary.
CTS/RTS Emulation
CTS/RTS Emulation On
* CTS/RTS Emulation Off
ACK/NAK Mode
ACK/NAK Mode On
* ACK/NAK Mode Off
Communication Timeout
This allows you to set the length (in milliseconds) for a timeout for the host ACK/NAK response. Scan the bar code below,
then set the timeout (from 0-65535 milliseconds) by scanning digits from the Programming Chart, then scanning Save.
Default = 2000 ms.
Communication Timeout
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Timeout Retries
This setting limits the number of Communication Timeout retries. If the Timeout Retries is set to 0, the transmission is
terminated after the initial Communication Timeout. Scan the bar code below, then set the number of retries (from 0-
255) by scanning digits from the Programming Chart, then scanning Save. (5 is the recommended setting.) Default =
0.
Timeout Retries
Communication Timeout Beeper
This selection programs the scanner to issue an error beep when a communication timeout has occurred. The error
Off
* On
NAK Retries
This selection limits the number of NAK retries that can occur in ACK/NAK mode. Scan the bar code below, then set the
number of retries (from 0-255) by scanning digits from the Programming Chart, then scanning Save. (5 is the recom-
mended setting.) Default = 0, or disabled.
NAK Retries
Support BEL/CAN in ACK/NAK
This protocol responds to <BEL> and <CAN> commands when in ACK/NAK mode. The scanner sounds an error tone
when a <BEL> command is sent from the host. <CAN> terminates the transmission. Default = BEL/CAN Off.
BEL/CAN On
* BEL/CAN Off
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®
Verifone Ruby Terminal Default Settings
Scan the following Plug and Play code to program the scanner for a Verifone Ruby terminal. This bar code sets the baud rate to
1200 bps and the data format to 8 data bits, Mark parity, 1 stop bit and RTS/CTS no timeout. It also adds a line feed (LF) suffix
and programs the following prefixes for each symbology:
Symbology
Prefix
UPC-A
UPC-E
EAN-8
EAN-13
A
A
FF
F
Verifone Ruby Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
®
Gilbarco Terminal Default Settings
Scan the following Plug and Play code to program the scanner for a Gilbarco terminal. This bar code sets the baud rate to 2400
bps and the data format to 7 data bits, even parity, 2 stop bits. It also adds a carriage return (CR) suffix and programs the follow-
ing prefixes for each symbology:
Symbology
Prefix
UPC-A
UPC-E
EAN-8
EAN-13
A
E0
FF
F
Gilbarco Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
Honeywell Bioptic Aux Port Configuration
Scan the following Plug and Play code to program the scanner for a Honeywell bioptic scanner auxiliary port configuration. This
bar code sets the baud rate to 38400 bps and the data format to 8 data bits, no parity, 1 stop bit. Character RTS/CTS with tim-
eout and 232 ACK/NAK are also enabled.
Honeywell Bioptic Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
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©
Datalogic™ Magellan Bioptic Aux Port Configuration
Scan the following Plug and Play code to program the scanner for a Datalogic Magellan bioptic scanner auxiliary port configura-
tion. This bar code sets the baud rate to 9600 bps and the data format to 8 data bits, no parity, 1 stop bit.
Datalogic Magellan Bioptic Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
NCR Bioptic Aux Port Configuration
Scan the following Plug and Play code to program the scanner for an NCR bioptic scanner auxiliary port configuration. This bar
code sets the baud rate to 9600 bps and the data format to 7 data bits, Even parity, 1 stop bit and Message RTS/CTS with time-
out. The following prefixes are programmed for each symbology:
Symbology
Prefix
Symbology
Prefix
UPC-A
UPC-E
EAN-8
A
E0
FF
Code 39
B1
B2
B3
Interleaved 2 of 5
All other bar
codes
EAN-13
F
NCR Bioptic Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
Wincor Nixdorf Terminal Default Settings
Scan the following Plug and Play code to program the scanner for a Wincor Nixdorf terminal. This bar code sets the baud rate
to 9600 bps and the data format to 8 data bits, no parity, 1 stop bit.
Wincor Nixdorf Terminal Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
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Wincor Nixdorf Beetle™ Terminal Default Settings
Scan the following Plug and Play code to program the scanner for a Wincor Nixdorf Beetle terminal. The following prefixes are
programmed for each symbology:
Symbology
Prefix
Symbology
EAN-13
GS1-128
Interleaved 2 of 5
Plessey
Straight 2 of 5 IATA
All other bar codes
Prefix
Code 128
Code 93
Codabar
UPC-A
UPC-E
EAN-8
K
L
N
A0
C
B
A
P
I
O
H
M
Wincor Nixdorf Beetle Settings
Note: If you are having unexpected results with this programming code, scan the Resetting the Custom Defaults bar code on
page 1-6 first, then scan the programming code above.
Wincor Nixdorf RS232 Mode A
Scan the following Plug and Play code to program the scanner for a Wincor Nixdorf RS232 Mode A terminal. The following pre-
fixes are programmed for each symbology:
Symbology
Prefix
Symbology
EAN-13
GS1-128
Interleaved 2 of 5
Plessey
Straight 2 of 5 IATA
GS1 DataBar
Prefix
Code 128
Code 93
Codabar
UPC-A
UPC-E
EAN-8
K
L
N
A0
C
B
A
K
I
O
H
E
All other bar codes
M
Wincor Nixdorf RS232 Mode A
Settings
Keyboard Country Layout
Scan the appropriate country code below to program the keyboard layout for your country or language. As a general rule, the
following characters are supported, but need special care for countries other than the United States:
@ | $ # { } [ ] = / ‘ \ < > ~
Keyboard Countries
* United States
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Keyboard Wedge Modifiers
ALT Mode
If your bar code contains special characters from the extended ASCII chart for example, an e with an accent grave (è), you
Note: Scan the ALT mode bar code after scanning the appropriate Keyboard Country code.
If your keystrokes require using the ALT key and 3 characters, scan the 3 Characters bar code. If your keystrokes require
the ALT key and 4 characters, scan the 4 Characters bar code. The data is then output with the special character(s).
Default = Off.
* Off
3 Characters
4 Characters
Keyboard Style
This programs keyboard styles, such as Caps Lock and Shift Lock. If you have used Keyboard Conversion settings, they
will override any of the following Keyboard Style settings. Default = Regular.
Regular is used when you normally have the Caps Lock key off.
* Regular
Caps Lock is used when you normally have the Caps Lock key on.
Caps Lock
Shift Lock is used when you normally have the Shift Lock key on (not common to U.S. keyboards).
Shift Lock
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Autocaps via NumLock bar code should be scanned in countries (e.g., Germany, France) where the Caps Lock key can-
not be used to toggle Caps Lock. The NumLock option works similarly to the regular Autocaps, but uses the NumLock key
to retrieve the current state of the Caps Lock.
Autocaps via NumLock
Emulate External Keyboard should be scanned if you do not have an external keyboard (IBM AT or equivalent).
Emulate External Keyboard
Note: After scanning the Emulate External Keyboard bar code, you must power cycle your computer.
Keyboard Conversion
Alphabetic keyboard characters can be forced to be all upper case or all lowercase. So if you have the following bar code:
“abc569GK,” you can make the output “ABC569GK” by scanning Convert All Characters to Upper Case, or to “abc569gk”
by scanning Convert All Characters to Lower Case. These settings override Keyboard Style selections.
Default = Keyboard Conversion Off.
* Keyboard Conversion Off
Convert All Characters to Upper
Case
Convert All Characters to Lower
Case
Keyboard Modifiers
This modifies special keyboard features, such as CTRL+ ASCII codes and Turbo Mode.
Control + ASCII Mode On: The scanner sends key combinations for ASCII control characters for values 00-1F (refer to the
ASCII Conversion Chart (Code Page 1252), page A-2). Windows is the preferred mode. All keyboard country codes are
supported. DOS mode is a legacy mode, and it does not support all keyboard country codes. New users should use the
Windows mode.
Windows Mode Prefix/Suffix Off: The scanner sends key combinations for ASCII control characters for values 00-1F
(refer to the ASCII Conversion Chart (Code Page 1252), page A-2), but it does not transmit any prefix or suffix information.
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Default = Control + ASCII Mode Off.
Windows Mode Control + ASCII
Mode On
* Control + ASCII Mode Off
DOS Mode Control + ASCII Mode
On
Windows Mode Prefix/Suffix Off
Numeric Keypad Mode: Sends numeric characters as if entered from a numeric keypad. Default = Off.
Numeric Keypad Mode On
* Numeric Keypad Mode Off
Inter-Scan Code Delay
When your keyboard detects that any key is being pressed, released, or held down, the keyboard sends a packet of infor-
mation known as a “scan code” to your computer. This selection allows you to adjust the delay between scan codes. Set
the length (in milliseconds) for a delay by scanning the bar code below, then setting the delay (from 1-30) by scanning digits
Inter-Scan Code Delay
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<F0> Break Character
When your keyboard detects that any key is being pressed, released, or held down, the keyboard sends a packet of infor-
mation known as a “scan code” to your computer. There are two different types of scan codes: “make codes” and “break
codes.” A make code is sent when a key is pressed or held down. A break code is sent when a key is released. The fol-
lowing selections allow you to suppress or transmit the character sequence of the break code. Default = Transmit.
Suppress
* Transmit
Keyboard Wedge Defaults
If you want the custom keyboard wedge default settings restored to your scanner, scan the Keyboard Wedge Defaults bar
code below. This resets the scanner to the custom default settings (see Setting Custom Defaults on page 1-5). If there are
no custom defaults, it will reset the scanner to the factory default settings. Any settings that have not been specified
through the custom defaults will be defaulted to the factory default settings.
Keyboard Wedge Defaults
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RS232 Modifiers
RS232 Baud Rate
Baud Rate sends the data from the scanner to the terminal at the specified rate. The host terminal must be set for the
same baud rate as the scanner. Default = 9600.
300
600
1200
2400
4800
* 9600
19200
38400
57,600
115,200
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RS232 Word Length: Data Bits, Stop Bits, and Parity
Data Bits sets the word length at 7 or 8 bits of data per character. If an application requires only ASCII Hex characters 0
through 7F decimal (text, digits, and punctuation), select 7 data bits. For applications that require use of the full ASCII set,
select 8 data bits per character. Default = 8.
Stop Bits sets the stop bits at 1 or 2. Default = 1.
Parity provides a means of checking character bit patterns for validity.
Default = None.
7 Data, 1 Stop, Parity Even
7 Data, 1 Stop, Parity None
7 Data, 1 Stop, Parity Odd
7 Data, 2 Stop, Parity Even
7 Data, 2 Stop Parity None
7 Data, 2 Stop, Parity Odd
8 Data, 1 Stop, Parity Even
* 8 Data, 1 Stop, Parity None
8 Data, 1 Stop, Parity Odd
7 Data, 1 Stop, Parity Space
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7 Data, 2 Stop, Parity Space
8 Data, 1 Stop, Parity Space
7 Data, 1 Stop, Parity Mark
7 Data, 2 Stop, Parity Mark
8 Data, 1 Stop Parity Mark
RS232 Handshaking
RS232 Handshaking allows control of data transmission from the scanner using software commands from the host device.
RTS/CTS Off: RTS/CTS is turned off so no data flow control is used, but RTS is still active.
RTS/CTS Off, RTS Inactive: RTS/CTS is turned off so no data flow control is used and RTS is inactive.
Flow Control, No Timeout: The scanner asserts RTS when it has data to send, and will wait indefinitely for CTS to be
asserted by the host.
Character-Based Flow Control, No Timeout: The scanner asserts RTS when it has a character to send, and will wait
indefinitely for CTS to be asserted by the host
Two-Direction Flow Control: The scanner asserts RTS when it is OK for the host to transmit. The host asserts CTS
when it is OK for the device to transmit.
Flow Control with Timeout: The scanner asserts RTS when it has data to send and waits for a delay (see RS232
Timeout on page 2-25) for CTS to be asserted by the host. If the delay time expires and CTS is not asserted, the device
transmit buffer is cleared and scanning may resume.
Character-Based Flow Control with Timeout: The scanner asserts RTS when it has a character to send and waits for a
delay (see RS232 Timeout on page 2-25) for CTS to be asserted by the host. If the delay time expires and CTS is not
asserted, the device transmit buffer is cleared and scanning may resume.
Default = RTS/CTS Off, RTS Inactive (Voyager 1200)
RTS/CTS Off (Voyager 1202)
* RTS/CTS Off
* RTS/CTS Off, RTS Inactive
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Flow Control, No Timeout
Character-Based Flow Control,
No Timeout
Two-Direction Flow Control
Flow Control with Timeout
Character-Based Flow Control
with Timeout
RS232 Timeout
When using Flow Control with Timeout, you must program the length of the delay you want to wait for CTS from the host.
Set the length (in milliseconds) for a timeout by scanning the bar code below, then setting the timeout (from 1-5100 millisec-
onds) by scanning digits from the Programming Chart, then scanning Save. Default = 1000 ms (1 second).
RS232 Timeout
XON/XOFF
Standard ASCII control characters can be used to tell the scanner to start sending data (XON/XOFF On) or to stop sending
data (XON/XOFF Off). When the host sends the XOFF character (DC3, hex 13) to the scanner, data transmission stops.
To resume transmission, the host sends the XON character (DC1, hex 11). Data transmission continues where it left off
when XOFF was sent. Default = XON/XOFF Off.
XON/XOFF On
* XON/XOFF Off
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ACK/NAK
After transmitting data, the scanner waits for an ACK character (hex 06) or a NAK character (hex 15) response from the
host. If ACK is received, the communications cycle is completed and the scanner looks for more bar codes. If NAK is
received, the last set of bar code data is retransmitted and the scanner waits for ACK/NAK again. Turn on the ACK/NAK
protocol by scanning the ACK/NAK On bar code below. To turn off the protocol, scan ACK/NAK Off. Default = ACK/NAK
Off.
ACK/NAK On
* ACK/NAK Off
Communication Timeout
This allows you to set the length (in milliseconds) for a timeout for the host ACK/NAK response. Scan the bar code below,
then set the timeout (from 1-65535 milliseconds) by scanning digits from the Programming Chart, then scanning Save.
Default = 2000 ms.
Communication Timeout
Timeout Retries
This setting limits the number of Communication Timeout retries. If the Timeout Retries is set to 0, the transmission is
terminated after the initial Communication Timeout. Scan the bar code below, then set the number of retries (from 0-
255) by scanning digits from the Programming Chart, then scanning Save. (5 is the recommended setting.) Default =
0.
Timeout Retries
Communication Timeout Beeper
This selection programs the scanner to issue an error beep when a communication timeout has occurred. The error
Off
* On
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NAK Retries
This selection limits the number of NAK retries that can occur in ACK/NAK mode. Scan the bar code below, then set the
number of retries (from 0-255) by scanning digits from the Programming Chart, then scanning Save. (5 is the recom-
mended setting.) Default = 0, or disabled.
NAK Retries
Support BEL/CAN in ACK/NAK
This protocol responds to <BEL> and <CAN> commands when in ACK/NAK mode. The scanner sounds an error tone
when a <BEL> command is sent from the host. <CAN> terminates the transmission. Default = BEL/CAN Off.
BEL/CAN On
* BEL/CAN Off
RS232 Defaults
If you want the custom RS232 default settings restored to your scanner, scan the RS232 Defaults bar code below. This
resets the scanner to the custom default settings (see Setting Custom Defaults on page 1-5). If there are no custom
defaults, it will reset the scanner to the factory default settings. Any settings that have not been specified through the cus-
tom defaults will be restored to the factory default settings.
RS232 Defaults
NCR Modifiers
NCR ACK/NAK
This is an NCR communication protocol for ACK/NAK processing. Default = NCR ACK/NAK Off.
* NCR ACK/NAK Off
NCR ACK/NAK On
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Block Check Character
When this selection is set to Transmit, the NCR Block Check Character (BCC) is expected with incoming messages and
transmitted with outgoing messages. Default = Transmit.
* Transmit
Don’t Transmit
NCR Prefix
This selection allows you to program an NCR-specific prefix. Refer to the ASCII Conversion Chart (Code Page
1252), page A-2 to find the hex equivalent for the characters you want for the NCR prefix (typically, 02 for STX). Scan the
bar code below, then set the hex number (from 0-FF) by scanning digits from the Programming Chart, then scanning Save.
Default = 0.
NCR Prefix
NCR Suffix
This selection allows you to program an NCR-specific suffix. Refer to the ASCII Conversion Chart (Code Page 1252), page
A-2 to find the hex equivalent for the characters you want for the NCR suffix (typically, 03 for ETX). Scan the bar code
below, then set the hex number (from 0-FF) by scanning digits from the Programming Chart, then scanning Save. Default
= 0.
NCR Suffix
NCR Prefix/Suffix
When set to Transmit, both the NCR prefix and suffix are transmitted with bar codes. Usually, prefixes and suffixes are
programmed using the Data Editing selections (see Data Editing beginning on page 5-1), however, the following commands
override any other prefix/suffix settings. Default = Don’t Transmit.
Transmit
* Don’t Transmit
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NCR NOF (Not-on-File) Error
A scanner receives an NOF (Not on File) command from the POS whenever it cannot cross-reference the bar code to a
price parameter. When set to On, the error tone sounds (set via Number of Beeps – Error, page 4-3) for an NOF, and dis-
ables the scanner while the cashier looks up the price manually. When set to Off, no sound is emitted for an NOF. Default
= Off.
On
* Off
Scanner to Bioptic Communication
The following settings are used to set up communication between Honeywell scanners and bioptic scanners.
Note: The scanner’s baud rate must be set to 38400 and the RS232 Timeout must be set to 3000 in order to communicate with
a bioptic scanner. See "RS232 Modifiers" on page 2-22, and RS232 Timeout on page 2-25 for further information.
Scanner-Bioptic Packet Mode
Packet Mode On must be scanned to set the scanner’s format so it is compatible with a bioptic scanner. Default = Packet
Mode Off.
* Packet Mode Off
Packet Mode On
ACK/NAK
After transmitting data, the scanner waits for an ACK character (hex 06) or a NAK character (hex 15) response from the
host. If ACK is received, the communications cycle is completed and the scanner looks for more bar codes. If NAK is
received, the last set of bar code data is retransmitted and the scanner waits for ACK/NAK again. Turn on the ACK/NAK
protocol by scanning the ACK/NAK On bar code below. To turn off the protocol, scan ACK/NAK Off. Default = ACK/NAK
Off.
ACK/NAK On
* ACK/NAK Off
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Communication Timeout
This allows you to set the length (in milliseconds) for a timeout for the host ACK/NAK response. Scan the bar code below,
then set the timeout (from 1-65535 milliseconds) by scanning digits from the Programming Chart, then scanning Save.
Default = 2000 ms.
Communication Timeout
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3
Cordless System Operation
Note: This chapter applies only to cordless scanning systems. It does not apply to corded scanners.
How the Charge and Communications Base Works
A cordless charge and communications base provides the link between the cordless scanner and the host system. The base
contains an interface assembly and an RF communication module. The RF communication module performs the data
exchange between the cordless scanner and the interface assembly. The control assembly coordinates the central interface
activities including: transmitting/receiving commands and data to/from the host system, performing software activities (parame-
ter menuing, visual indicator support, power-on diagnostics), and data translation required for the host system.
The cordless charge base is also a scanner’s battery charger. Refer to Charging Information, page 3-3, for additional informa-
tion.
Linking the Scanner to a Base
Turn off power before connecting a base, then power up the computer once the base is fully connected. When the base is con-
nected and powered up, put the scanner in the base to establish a link. The red LED on the base lights to indicate power, and
the green LED flashes to indicate the scanner’s battery is charging.
If the scanner and base have previously been linked, you do not receive any feedback. If this is the first time that the scanner
and base are linked, both devices emit a short chirp when their radios link. That indicates that the scanner is linked to the base.
Scanner
Page Button
Base LEDs
Charge Base
To determine if your cordless system is set up correctly, scan one of the sample bar codes in the back of this manual. If the
scanner provides a single good read beep and the green LED lights, the scanner has successfully linked to the base. If you
receive an error tone and the red LED lights, the scanner has not linked to the base. Refer to page 12-4 for troubleshooting
information.
Communication Between the Cordless System
and the Host
The cordless scanner provides immediate feedback in the form of a “good read” indication (a green LED on the scanner and an
audible beep) after a bar code is scanned correctly and the base has acknowledged receiving the data. This is possible since
the cordless system provides two-way communication between the scanner and the base.
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When data is scanned, the data is sent to the host system via the base. The cordless scanner recognizes data acknowledge-
ment (ACK) from the base. If it cannot be determined that the data has been properly sent to the base, the scanner issues an
error indication. You must then check to see if the scanned data was received by the host system.
Read
1) Good
2) ACK
from
base
nds
3) Base se
data to host
RF (Radio Frequency) Module Operation
The cordless system uses a two-way Bluetooth® radio to transmit and receive data between the scanner and the base.
Designed for point-to-point and multipoint-to-single point applications, the radio operates using a license free ISM band. This
band sends relatively small data packets at a fast data rate over a radio signal with randomly changing frequencies. This makes
the cordless system highly responsive to a wide variety of data collection applications and resistant to noisy RF environments.
The Bluetooth Class 2 power level provides a communication range of 33 feet (10m) between the scanner and base, depending
on the environment.
System Conditions
The components of the cordless system interact in specific ways as you associate the scanner with its base, as you move a
scanner out of range, or bring a scanner back in range. The following information explains the cordless system operating condi-
tions.
Linking Process
Once a scanner is placed into a cordless charge base, the scanner’s battery charge status is checked, and software auto-
matically detects the scanner and links it to the base depending on the selected link mode.
Scanner Is Out of Range
The cordless scanner is in communication with its base, even when it is not transmitting bar code data. Whenever the
scanner can’t communicate with the base for a few seconds, it is out of range. If the scanner is out of range and you scan
a bar code, the scanner issues an error tone indicating no communication with the base. A cordless charge base can also
Scanner Is Moved Back Into Range
The scanner relinks if the scanner or the base have been reset, or the scanner comes back into range. If the scanner
relinks, you will hear a single chirp when the relinking process is complete. Refer to Out-of-Range Alarm on page 3-9 for
further information.
Out of Range and Back into Range with Batch Mode On
The scanner may store a number of symbols (approximately 14,000 U.P.C. symbols; others may vary) when it is out of
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You will not hear a communication error tone in this mode, but you will hear a short buzz when you press the button if the
radio communication is not working. Once the radio connection is made, the scanner produces a series of beeps while the
data is being transferred to the base.
Page Button
When you press the Page button on the base, the scanner associated with that base will begin beeping (3 short and 1 long
beep). If you press the button on a scanner that is beeping in response, or press the Page button on the base a second
time, the scanner will stop beeping. See Paging on page 3-6 for further information about Page Button settings.
About the Battery
There is a danger of explosion if the batteries are incorrectly replaced. Replace the batteries with only the same or
equivalent type recommended by the manufacturer. Dispose of used batteries according to the recycle program for
batteries as directed by the governing agency for the country where the batteries are to be discarded.
!
Power is supplied to the cordless scanner by a rechargeable battery that is integrated in the scanner handle. Batteries
are shipped approximately 30% to 60% charged. The battery should be charged for a minimum of 4 hours before initial use to
ensure optimal performance.
Voyager 1202g Battery Removal
Charging Information
The battery is designed to charge while the scanner is positioned in the base unit. Refer to Base LED Sequences and
Meaning, page 3-5, for an interpretation of the Charge Status indicators. Refer to Charge Only Mode (page 3-7) if you
need to charge a scanner without linking it to the base.
The model Voyager 1202g is designed for use with Honeywell battery pack model 100000495 (Li-ion 3.7Vdc, 7.4 watt
hour), or model BAT-SCN01 (Li-ion 3.75Vdc, 9.0 watt hour).
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Place the scanner in the base that is connected to an appropriate power supply. Use only a Listed Limited Power Source
(LPS) or Class 2 type power supply with output rated 5 to 5.2Vdc, 1A.
Note: If you are powering the base through the interface cable (for example, a USB cable) and not using an external power
supply plugged into the aux port, the current available for charging is reduced and the charge time is increased.
Battery Recommendations
•
The battery is a lithium ion cell and can be used without a full charge, and can also be charged without fully discharging,
without impacting the battery life. There is no need to perform any charge/discharge conditioning on this type of battery.
•
•
•
Keep the base connected to power when the host is not in use.
Replace a defective battery immediately since it could damage the scanner.
Although your battery can be recharged many times, it will eventually be depleted. Replace it after the battery is unable
to hold an adequate charge.
•
If you are not sure if the battery or charger is working properly, send it to Honeywell International Inc. or an authorized
Caution:
!
The model CCB00-010BT base is designed for use with the Honeywell model Voyager 1202g scanner. Use of
any non-Honeywell battery may result in damage not covered by the warranty.
Safety Precautions for Lithium Batteries
•
Do not place batteries in fire or heat the batteries.
•
•
•
•
•
•
Do not store batteries near fire or other high temperature locations.
Do not store or carry batteries together with metal objects.
Do not expose batteries to water or allow the batteries to get wet.
Do not connect (short) the positive and negative terminals, of the batteries, to each other with any metal object.
Do not pierce, strike or step on batteries or subject batteries to strong impacts or shocks.
Do not disassemble or modify batteries.
Caution:
!
Danger of explosion if batteries are incorrectly replaced. Dispose of used batteries according to the recycle
program for batteries as directed by the governing agency for the country where the batteries are to be
discarded.
Proper Disposal of the Battery
When the battery has reached the end of its useful life, the battery should be disposed of by a qualified
recycler or hazardous materials handler. Do not incinerate the battery or dispose of the battery with gen-
eral waste materials. You may send the scanner’s battery to us. (postage paid). The shipper is responsi-
ble for complying with all federal, state, and local laws and regulations related to the packing, labeling,
manifesting, and shipping of spent batteries. Contact the Product Service Department (page 13-1) for
recycling or disposal information. Since you may find that your cost of returning the batteries significant,
it may be more cost effective to locate a local recycle/disposal company.
Flash Updates
The scanner can be flashed either in the base or out of the base, however, it is recommended that you flash the scanner while it
is in the base. Flash updates cannot be completed when the scanner is out of the base and the battery is low, or when the
scanner is out of range.
Beeper and LED Sequences and Meaning
The scanner contains LEDs on the top that indicate linking status, decoding state, and battery condition. The base has LEDs
on the front that indicate its power up, communication, and battery charge condition. The unit’s audible indicators have meaning
as well. The following table lists the indication and cause of the LED illumination and beeps for the scanner and charge base.
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Scanner LED Sequences and Meaning
Note: Pressing the button on the scanner causes the LED to glow red until it communicates successfully with the base.
LED Indication
Beeper Indication
Cause
Normal Operation
Red Flash
None
Battery low
Green Flash
1 beep
Razz or error tone
Successful communication or linking
Failed communication
Red, blinking
Menu Operation
Green Flash
2 beeps
Razz or error tone
Successful menu change
Unsuccessful menu change
Red, blinking
Base LED Sequences and Meaning
The base contains a red LED that indicate the status of the unit and verifies its communication with the host system. The
base also has a green LED that indicates the scanner battery charge condition.
Red LED - Host Communication
Red LED
Communication Condition
Off
Power off, USB suspend
Power on, system idle
On continuously
Short blinks. Occurs while transferring data to/from the RF module Receiving data
or the host port.
Green LED - Scanner Battery
Green LED
Charge Condition
Off
Battery not detected or charge suspended
Pre-charge and charging
Charge complete
Slow flash, 1 second on, 1 second off
On continuously
Fast flash, 300 mSec on, 300 mSec off
Charge Error
Base Power Communication Indicator
To display the power indicator on the base, scan the Base Power Communication Indicator On bar code. To turn off the
power indicator, scan the Off bar code. Default = On.
* Base Power Communication
Indicator On
Base Power Communication
Indicator Off
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Reset Scanner
Scanning this bar code reboots the scanner and causes it to relink with the base.
Reset Scanner
Scanning While in Base Cradle
If you want to be able to scan bar codes while the scanner is in the base, scan the following Scanning in Cradle On bar code.
If you want to only allow scanning when the scanner is out of the base, scan Scanning in Cradle Off. Default = Scanning in
Cradle On.
Scanning in Cradle Off
* Scanning in Cradle On
Note: When Scanning in Cradle Off is selected, the scanner will not scan any bar codes while it is in the base. It will only scan
when removed from the base.
Paging
Paging Mode
By default, the paging button on the base pages the scanner associated with that base. If you want the paging button on
your base to be disabled, scan the following Paging Mode Off bar code. When Paging Mode is off, the base will no longer
page the scanner when the button is pressed. The red LED on the base will remain lit to indicate that Paging Mode is off.
(This light will go out when the button is pressed, then back on when it’s released.) Default = Paging Mode On.
* Paging Mode On
Paging Mode Off
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Paging Pitch
When you press the Page button on the base, the scanner associated with that base will begin beeping (see Page Button
on page 3-3). You can set the pitch of the paging beep for the scanner by scanning one of the following bar codes. Default
= Low.
* Low (1000 Hz)
Medium (3250 Hz)
High (4200 Hz)
Error Indicators
Scanner Address
Scan the following bar code to determine the address of the scanner you are using.
Scanner Address
Base Address
Scan the following bar code to determine the address of the base you are using.
Base Address
Scanner Modes
The Voyager is capable of working with Bluetooth devices other than the CCB00-010BT charge base.
Charge Only Mode
There may be times when you want to charge your scanner, but not link to the base. For example, if a scanner is linked to
a Bluetooth device and you need to charge the scanner, but want to retain your existing link.
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In order to program the base for Charge Only Mode, you must link a scanner to it. Once the scanner is linked to the base,
scan the Charge Only Mode bar code. Any subsequent scanners placed in that base will charge without linking to it. The
scanner used to program the base remains linked to the base. To unlink this scanner, scan Unlink Scanner on page 3-9.
Charge Only Mode
Note: When in Charge Only Mode, the scanner periodically wakes up and beeps. See "Power Up Beeper" on page 4-1 to
change this setting.
If you want to charge a scanner and link to the base, use Charge and Link Mode. If the base is programmed for Charge
Only Mode, you must link a scanner to it first in order to program it for Charge and Link Mode. Scan the linking bar code on
the base to link the scanner, then scan Charge and Link Mode. Default = Charge and Link Mode.
* Charge and Link Mode
Linked Modes
Locked Link Mode and Open Link Mode are the link modes that accommodate different applications. Scan the appropriate
bar codes included in the Open Link and Locked Link Mode explanations that follow to switch from one mode to another.
Default = Open Link Mode.
Locked Link Mode - Single Scanner
If you link a scanner to a base using the Locked Link Mode, other scanners are blocked from being linked if they are
inadvertently placed into the base. If you do place a different scanner into a base, it will charge the scanner, but the
scanner will not be linked.
Locked Link Mode
(Single Scanner)
To use a different scanner, you need to unlink the original scanner by scanning the Unlink Scanner bar code. (See
Open Link Mode - Single Scanner
When newly shipped or defaulted to factory settings, a scanner is not linked to a base. A link is established when the
scanner is placed into a base. When in Open Link Mode, a new link is established when a new scanner is placed in
the base. Each time a scanner is placed into a base, the scanner becomes the linked to the base and the old scanner
is unlinked.
* Open Link Mode
(Single Scanner)
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Unlinking the Scanner
If a base has a scanner linked to it, that scanner must be unlinked before a new scanner can be linked. Once the previous scan-
ner is unlinked, it will no longer communicate with the base. To unlink the scanner from a base, scan the following Unlink Scan-
ner bar code.
Unlink Scanner
Override Locked Scanner
If you need to replace a broken or lost scanner that is linked to a base, scan the following Override Locked Scanner bar code
with a new scanner and place that scanner in the base. The locked link will be overridden, the broken or lost scanner’s link with
the base will be removed, and the new scanner will be linked.
Override Locked Scanner
(Single Scanner)
Out-of-Range Alarm
If your scanner is out range of the base, an alarm sounds from the scanner. The alarm stops when the scanner is moved closer
to the base, when the base connects to another scanner, or when the alarm duration expires.
Note: If you are out of range when you scan a bar code, you will receive an error tone even if you do not have the alarm set.
You receive the error tone since the data could not be communicated to the base or the host.
Alarm Sound Type
Set the alarm type for the scanner by scanning the following appropriate bar code. If the alarm is on, the scanner will emit
3 long, high pitched beeps. Default = Alarm On.
Alarm Off
* Alarm On
Alarm Duration
To set the the length of time you want the Out-of-Range alarm to sound, scan the following bar code and then set the time-
out duration (from 0-3000 seconds) by scanning digits on the Programming Chart inside the back cover, then scanning
Save. Default = 1 sec.
Scanner Alarm Duration
Scanner Power Time-Out Timer
Note: Scanner Power Time-out Timer only applies to cordless systems. It does not apply to corded scanners.
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When there is no activity within a specified time period, the scanner enters low power mode. Scan the appropriate scanner
power time-out bar code to change the time-out duration (in seconds).
If the scanner is not activated during the timer interval, the scanner goes into power down mode. Whenever the scanner is acti-
vated, the timer is reset. If Scanning While in Base Cradle (page 3-6) is disabled, the scanner will still go into power down
mode. Default = 3600 seconds.
Timer Off
200 seconds
400 seconds
900 seconds
* 3600 seconds
7200 seconds
Note: When the scanner is in power down mode, press the scanner’s button to power the unit back up. There will be a set of
power up beeps and a delay of up to a few seconds for the radio to join. The scanner will then be ready to use.
RangeGate
If you need RangeGate functionality, the scanner can be programmed for Automatic Batch Mode (page 3-11), which offers
equivalent capabilities.
Batch Mode
Batch mode is used to store bar code data when a scanner is out of range of its base, or when performing inventory. The data
is transmitted to the base once the scanner is back in range or when the records are manually transmitted.
Automatic Batch Mode stores bar code data when the scanner is out of range of the base. The data is automatically transmit-
ted to the base once the scanner is back in range. When the scanner’s buffer space is full, any bar codes scanned generate an
error tone. In order to scan bar codes again, the scanner must be moved back into range of the base so data can be transmit-
ted.
Inventory Batch Mode stores bar code data, whether or not you are in range of the base. To transmit the stored data to the
base, either place the scanner in the base, or scan Transmit Inventory Records (page 3-15). When the scanner’s buffer space
is full, any bar codes scanned generate an error tone. In order to scan bar codes again, the data must be transmitted to the
base.
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Default = Batch Mode Off.
* Batch Mode Off
Automatic Batch Mode
Inventory Batch Mode
[
Batch Mode Beep
When scanning in Batch Mode, the scanner beeps every time a bar code is scanned. When Batch Mode Beep is On, you
will also hear a click when each bar code is sent to the host. If you do not want to hear these clicks, scan Batch Mode
Beep Off. Default = Batch Mode Beep Off.
* Batch Mode Beep Off
Batch Mode Beep On
Batch Mode Quantity
When in Inventory Batch Mode (page 3-11), you may wish to transmit the number of multiple bar codes scanned, rather
than a single bar code multiple times. For example, if you scan three bar codes called XYZ with Batch Mode Quantity Off,
when you transmit your data it will appear as XYZ three times. Using Batch Mode Quantity On and the Quantity Codes
* Batch Mode Quantity Off
Batch Mode Quantity On
Entering Quantities
Quantity Codes (page 3-12) allow you to enter a quantity for the last item scanned, up to 9999 (default = 1). Quantity digits
are shifted from right to left, so if a 5th digit is scanned, the 1st digit scanned is discarded and the 2nd, 3rd and 4th digits
are moved to the left to accommodate the new digit.
For example, if the Quantity 5 bar code is scanned after the quantity has been set to 1234, then the 1 is dropped, the quan-
tity will be 2345.
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Example: Add a quantity of 5 for the last item scanned.
1. Scan the item's bar code.
2. Scan the quantity 5 bar code.
Example: Add a quantity of 1,500 for the last item scanned.
1. Scan the item's bar code.
2. Scan the quantity 1 bar code.
3. Scan the quantity 5 bar code.
4. Scan the quantity 0 bar code.
5. Scan the quantity 0 bar code.
Example: Change a quantity of 103 to 10.
To correct an incorrect quantity, scan the quantity 0 bar code to replace the incorrect digits, then scan the correct quantity
bar codes.
1. Scan the quantity 0 bar code to change the quantity to 1030.
2. Scan the quantity 0 bar code to change the quantity to 0300.
3. Scan the quantity 1 bar code to change the quantity to 3001.
4. Scan the quantity 0 bar code to change the quantity to 0010.
Quantity Codes
0
1
2
3
4
5
6
7
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8
9
Delete Last Code
If you want to delete the last bar code scanned when in Batch Mode, scan Delete Last Code.
Delete Last Code
Record Counter
If you wish to add a record counter to each bar code scanned in Batch Mode, scan Record Counter On. Your batch output
would add a sequential number before each bar code, for example:
00001,bar code 1
00002,bar code 2
Default = Record Counter Off.
* Record Counter Off
Record Counter On
Total Records
If you wish to output the total number of bar codes scanned when in Batch Mode, scan Total Records.
Total Records
Batch Mode Output Order
When batch data is transmitted, select whether you want that data sent as FIFO (first-in first-out), or LIFO (last-in first-out).
Default = Batch Mode FIFO.
* Batch Mode FIFO
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Batch Mode LIFO
Clear All Codes After Transmission
If you want to clear the scanner’s buffer of all data accumulated in Batch Mode after the data has been transmitted to the
host system, scan Clear All Codes After Transmission. If you do not want the buffer cleared after transmission, scan
Don’t Clear All Codes After Transmission. Default = Don’t Clear All Codes After Transmission.
* Don’t Clear All Codes After
Transmission
Clear All Codes After
Transmission
Clear All Codes
If you want to clear the scanner’s buffer of all data accumulated in Batch Mode, scan Clear All Codes.
Clear All Codes
Transmit Records Automatically
If you are operating in Inventory Batch Mode (see Inventory Batch Mode on page 3-11), you can transmit all stored data to
the host system when the scanner is placed in the base. If you don’t want the records transmitted when the scanner is
placed in the base, scan the Don’t Transmit Records Automatically bar code. Default = Don’t Transmit Records Auto-
matically.
* Don’t Transmit Records
Automatically
Transmit Records Automatically
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Transmit Records to Host
If you are operating in Inventory Batch Mode (see Inventory Batch Mode on page 3-11), and your scanner is set to Don’t
Transmit Records Automatically, you must scan the following bar code to transmit all stored records to the host system.
Transmit Inventory Records
Batch Mode Transmit Delay
Sometimes when accumulated scans are sent to the host system, the transmission of those scans is too fast for the appli-
cation to process. To program a transmit delay between accumulated scans, scan one of the following delays. Default =
Off.
Note: In most cases, a short (250 ms (milliseconds)) delay is ideal, however, longer delays may be programmed. Contact
* Batch Mode Transmit Delay Off
(No Delay)
Batch Mode Transmit Delay Short
(250 ms)
Batch Mode Transmit Delay Medium
(500 ms)
Batch Mode Transmit Delay Long
(1000 ms)
Scanner Name
You may assign a name to each scanner you are using for identification purposes. The default name is “Voyager.”
Perform the rename operation using either the bar codes on page 3-16, or by sending the serial command :Voyager:BT_NAM-
name. where name is the new name for the scanner. If you wish to change the names of additional scanners, link them to the
base one at a time and repeat the :Voyager:BT_NAMname. command for each scanner.
To rename scanners with sequential, numeric names, scan the following bar codes. Scan the Reset code after each name
change and wait for the scanner to relink to the base.
0001
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0002
0004
0006
0003
0005
0007
Reset
You may also scan the following Scanner Name bar code and scan up to 30 numbers and/or letters for the scanner name. For
example, if you wanted to name the linked scanner “312,” you would scan the following bar code, scan the 3, 1, and 2 bar codes
on the Programming Chart inside the back cover of this manual, then scan Save. Scan the Reset bar code and wait for the
scanner to relink to the base.
To output the name of the scanner, scan the following bar code. The name will be output showing the product name, model
number, and the scanner’s 10-digit serial number.
Scanner Name
Using the Scanner with Bluetooth Devices
The scanner can be used either with the CCB00-010BT charge base or with other Bluetooth devices. Those devices include
personal computers and laptops.
Scanning the following Non-Base BT Connection bar code allows the scanner to be used with other Bluetooth devices (e.g.,
PC/laptop). After you scan the Non-Base BT Connection bar code, follow the instructions supplied with your Bluetooth device
to locate the scanner and connect to it.
Note: If you go out of range with your scanner, the scanner will not reconnect to the Bluetooth device when it is back in range.
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To relink to the charge base, scan the Base BT Connection bar code.
Non-Base BT Connection
Base BT Connection
Changing the Scanner’s Bluetooth PIN Code
Some devices require a PIN code as part of the Bluetooth security features. Your scanner’s default PIN is 0000, which you
may need to enter the first time you connect to your non-base Bluetooth device. To change the PIN, scan the following bar
code and then scan the appropriate numeric bar codes from the Programming Chart inside the back cover of this manual.
(The PIN code must be between 1 and 16 characters.) Scan Save to save your selection. Default = 0000.
Bluetooth PIN
Minimizing Bluetooth/ISM Band Network Activity
The following settings can help you customize the relinking behavior of the cordless system to obtain the best compromise
between convenience and low interference.
Note: ISM band refers to the 2.4 to 2.48 GHz frequency band used by wireless networks, cordless phones, and Bluetooth.
Auto Reconnect Mode
Auto Reconnect controls whether or not the scanner automatically begins the relink process when a loss of connection is
detected. When the Auto Reconnect On bar code is scanned, the scanner begins the relink process immediately, without
user intervention. Default = Auto Reconnect On.
* Auto Reconnect On
Auto Reconnect Off
The following table shows the results of the Auto Reconnect On and Off settings:
Event
Auto Reconnect On
Auto Reconnect Off
Scanner out of range
Relink occurs automatically. If maximum
number of link attempts is unsuccessful,
then the scanner must be relinked by
either pressing the scanner’s button or
The scanner is relinked by pressing
the button.
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Event
Auto Reconnect On
Auto Reconnect Off
Base reset (firmware upgrade or
power cycle)
Scanner behaves as if out of range.
No attempt to relink made while base
is powered off. Button must be
pressed to initiate relinking.
Scanner reset due to firmware
upgrade
Relink occurs automatically.
Scanner reset due to battery
change
Relink occurs automatically.
Scanner placed in different base
unit
Relink to new base occurs automatically.
Maximum Link Attempts
The Maximum Link Attempts setting controls the number of times the scanner tries to form a connection with a base.
During the connection setup process, the scanner transmits in order to search for and connect to a base. In order to pre-
vent continuous transmissions that could interfere with other users of the ISM band, the number of attempts to connect is
limited by this setting. After the maximum number of attempts is reached, the scanner will not attempt to reconnect to a
base. Pressing the scanner’s button or placing the scanner in the base resets the attempt count and the scanner will again
try to link.
Scan the Maximum Link Attempts bar code, then scan the number of attempts for the setting (from 0-255) from the inside
back cover. Scan Save to save the setting. Default = 0.
Maximum Link Attempts
Note: When Auto Reconnect Mode is On, setting Maximum Link Attempts to zero will cause the scanner to try to link until
the Power Time-Out Timer setting (see page 3-9) expires. When Auto Reconnect Mode is Off, setting Maximum Link
Attempts to zero will cause the scanner to only attempt linking one time after a button press.
Relink Time-Out
Relink Time-Out controls the idle time between relink attempts. An attempt to link a scanner to a base typically lasts up to
5 seconds. This is the time when the scanner is actually attempting a contact . Relink Time-Out controls the amount of
time, in seconds, that elapses between the end of one connection attempt and the start of the next.
Scan the Relink Time-Out bar code, then scan the number of seconds for the setting (from 1-100) from the inside back
cover. Scan Save to save the setting. Default = 3 seconds.
Relink Time-Out
Bluetooth/ISM Network Activity Examples
Default values
When the scanner goes out of range, the scanner repeatedly attempts to connect to the base unit. Each attempt consists
of approximately 5 seconds of active time followed by 3 seconds of idle time. After one hour, the scanner powers off and
batch mode data is lost.
Maximum Link Attempts set to 15
Other values at default settings
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When the scanner goes out of range, 15 attempts are made to link to the base unit. Each attempt consists of approximately
5 seconds of active time followed by 3 seconds of idle time. After 15 cycles (8*15 =120), or about 2 minutes, the scanner
stops trying to connect to the base, but retains any bar codes that may have been saved in batch mode. After one hour, the
scanner powers off and batch mode data is lost.
Auto Reconnect Mode set to 0
Maximum Link Attempts set to 15
Other values at default settings
When the scanner goes out of range, no action is taken to relink. When the scanner’s button is pressed, 15 attempts are
made to link to the base. Each attempt consists of approximately 5 seconds of active time followed by 3 seconds of idle
time. After 15 cycles (8*15 =120), or about 2 minutes, the scanner stops trying to connect to the base, but retains any bar
codes that may have been saved in batch mode. After one hour, the scanner powers off and batch mode data is lost. Refer
Reset Scanner and Base
After changing settings, you may need to reset your scanner and base. Scan the Reset Base bar code and wait for the scanner
to unlink and relink to a base. Once that is done, scan the Reset Scanner bar code and wait for the base to unlink and relink to
the scanner.
Reset Scanner
: * : R E S E T _ . ³
Reset Base
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4
Input/Output Settings
Power Up Beeper
The scanner can be programmed to beep when it’s powered up. Scan the Off bar code(s) if you don’t want a power up beep.
Default = Power Up Beeper On - Scanner.
Power Up Beeper Off -
Scanner
* Power Up Beeper On -
Scanner
Beep on BEL Character
You may wish to force the scanner to beep upon a command sent from the host. If you scan the following Beep on BEL On bar
code, the scanner will beep every time a BEL character is received from the host. Default = Beep on BEL Off.
*Beep on BEL Off
Beep on BEL On
Good Read and Error Indicators
Beeper – Good Read
The beeper may be programmed On or Off in response to a good read. Turning this option off, only turns off the beeper
response to a good read indication. All error and menu beeps are still audible. Default = Beeper - Good Read On.
Beeper - Good Read Off
* Beeper - Good Read On
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Beeper Volume – Good Read
The beeper volume codes modify the volume of the beep the scanner emits on a good read. Default = High.
Low
Medium
* High
Off
Beeper Pitch – Good Read
The beeper pitch codes modify the pitch (frequency) of the beep the scanner emits on a good read. Default = Medium.
Low (1600 Hz)
* Medium (2350 Hz)
High (4200 Hz)
Beeper - Transmit Order
The beeper transmit order determines when the good read beep occurs. The scanner can be set to emit the good read
beep either before or after data transmission. Default = Before Transmission.
* Before Transmission
After Transmission
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Beeper Pitch – Error
The beeper pitch codes modify the pitch (frequency) of the sound the scanner emits when there is a bad read or error.
Default = Razz.
* Razz (100 Hz)
Medium (2000 Hz)
High (4200 Hz)
Beeper Duration – Good Read
The beeper duration codes modify the length of the beep the scanner emits on a good read. Default = Normal.
* Normal Beep
Short Beep
Number of Beeps – Good Read
The number of beeps of a good read can be programmed from 1 - 9. The same number of beeps will be applied to the
beeper and LED in response to a good read. For example, if you program this option to have five beeps, there will be five
beeps and five LED flashes in response to a good read. The beeps and LED flashes are in sync with one another.
To change the number of beeps, scan the following bar code and then scan a digit (1-9) bar code and the Save bar code on
Number of Good Read Beeps/LED Flashes
Number of Beeps – Error
The number of beeps and LED flashes emitted by the scanner for a bad read or error can be programmed from 1 - 9. For
example, if you program this option to have five error beeps, there will be five error beeps and five LED flashes in response
to an error.
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To change the number of error beeps, scan the following bar code and then scan a digit (1-9) bar code and the Save bar
Number of Error Beeps/LED Flashes
LED Indicators
The green and red LEDs can be programmed to be On or Off and at different brightness levels to indicate various scanner
states. Use the following bar codes to program the LED indicators.
LED Settings
Default = Red LED On with Laser/Red LED Blinks when Battery is Low, Green LED On with Good Scan.
Red LED Off
Green LED Off
Red LED On with Good Scan
* Green LED On with Good Scan
Red LED On with Laser
* Red LED On with Laser/
Red LED Blinks when Battery is Low
Green LED On with Laser
Red LED On when CodeGate
Disabled
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Green LED On when CodeGate
Disabled
Red LED On when In-Stand
Green LED On when In-Stand
Red LED On with CTS
Green LED On with CTS
Red LED On when Battery is Low
Green LED On when Battery is Low
LED Brightness
Default = Red High, Green High.
Red Off
Green Off
Red Low
Green Low
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Red Medium
Green Medium
* Red High
* Green High
In-Stand and Out-Of-Stand Settings
The following settings program the scanner’s behavior when it is either in the stand, or out of the stand (hand-held).
Caution: When working with In-Stand and Out-of-Stand settings, enable the settings you want before disabling those
you do not want to use. If you disable settings first, you may program the scanner so it is unable to read bar
In-Stand and Out-of-Stand Defaults
If you want the In-Stand or Out-of-Stand default settings restored to your scanner, scan the appropriate Defaults bar code
below. They reset the scanner to the custom default settings (see Setting Custom Defaults on page 1-5). If there are no
custom defaults, it will reset the scanner to the factory default settings. Any settings that have not been specified through
the custom defaults will be defaulted to the factory default settings.
In-Stand Defaults
Out-of-Stand Defaults
Presentation Modes
When the scanner is in the stand, by default, bar codes are automatically read when they are detected in the scanner’s field
of view. When the scanner is out of the stand, by default you must push the button on top of the scanner to read a bar code.
Use the following commands to adjust how the scanner behaves when it is out of the stand.
Note: If you are using a cordless charge base in Presentation Mode, the battery will not charge unless the power supply is
plugged into the base’s auxiliary power port.
Presentation Mode Out-of-Stand: When the scanner is not in the stand, it automatically detects bar codes, then scans
and transmits the data. The laser turns off afterward. (If you are accustomed to a Voyager 9520, this setting is the same as
the 9520’s default.)
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Presentation Mode with CodeGate Out-of-Stand: When the scanner is not in the stand, it automatically detects bar
codes and decodes them. However, the data is not transmitted until you press the button. The laser remains on briefly
after the transmission. (If you are accustomed to a Voyager 9540, this setting is the same as the 9540’s default.)
Presentation Mode
Out-of-Stand
Presentation Mode with
CodeGate Out-of-Stand
Manual Activation Mode
In Manual Activation Mode, you must press the button to scan a bar code. The scanner scans until a bar code is read, or
until the button is released. Default = Manual Activation Mode On In-Stand, Manual Activation On Out-of-Stand.
Manual Activation Mode Off
In-Stand
* Manual Activation Mode On
In-Stand
Manual Activation Mode Off
Out-of-Stand
* Manual Activation Mode On
Out-of-Stand
End Manual Activation After Good Read
After a bar code is successfully read, the laser can be programmed either to remain on and scanning, or to turn off. When
End Manual Activation After Good Read is enabled, the laser turns off and stops scanning after a good read. If you scan
Do Not End Manual Activation After Good Read, the laser remains on after a good read, but the button must be pressed
to scan the next bar code. Default = End Manual Activation After Good Read.
Do Not End Manual Activation
After Good Read In-Stand
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* End Manual Activation After
Good Read In-Stand
Do Not End Manual Activation
After Good Read Out-of-Stand
* End Manual Activation After
Good Read Out-of-Stand
Manual Activation Laser Timeout - Button Settings
You can set a timeout for the length of time the laser remains on and attempting to decode bar codes when the button is
held down, and after it is released. Set the length (in milliseconds) for a timeout by scanning one of the following bar codes,
then setting the timeout (from 1-65535 milliseconds) by scanning digits from the Programming Chart, then scanning Save.
Default = Button Hold In-Stand 5000 ms, Button Hold Out-of-Stand 5000 ms, Button Release In or Out-of-Stand 0.
Laser Timeout - Button Hold
In-Stand
Laser Timeout - Button
Release In-Stand
Laser Timeout - Button Hold
Out-of-Stand
Laser Timeout - Button
Release Out-of-Stand
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CodeGate
When CodeGate is On, the button is used to allow decoded data to be transmitted to the host system. The scanner
remains on, scanning and decoding bar codes, but the bar code data is not transmitted until the button is pressed. When
CodeGate is Off, bar code data is transmitted when it is decoded. Default = CodeGate Off in-Stand, CodeGate On Out-of-
Stand.
* CodeGate Off
In-Stand
CodeGate On
In-Stand
CodeGate Off
Out-of-Stand
* CodeGate On
Out-of-Stand
Button Function
Note: Button Function applies only to the Voyager 1202. It is not supported in the Voyager 1200.
When Button Function is set to On, press and hold the button for 7 seconds to change the CodeGate setting from Code-
Gate Off Out-of-Stand to CodeGate On Out-of-Stand. When the scanner is power cycled, the CodeGate function reverts
to the saved CodeGate setting. When Button Function is set to Off, holding the button down for 7 seconds shuts down the
scanner. Default = Off.
* Button Function Off
Button Function On
Object Detection Mode
Object Detection Mode uses an LED to detect when an object is in the scanner’s field of view. When an object is detected,
the laser turns on and the scanner attempts to scan the bar code. Default = Object Detection Mode On In-Stand.
Object Detection Mode Off
In-Stand
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* Object Detection Mode On
In-Stand
* Object Detection Mode Off
Out-of-Stand
Object Detection Mode On
Out-of-Stand
End Object Detection After Good Read
After a bar code is successfully detected and read from the scanner, the laser can be programmed either to remain on and
scanning, or to turn off. When End Object Detection After Good Read is enabled, the laser turns off and stops scanning
after a good read. If you scan Do Not End Object Detection After Good Read, the laser remains on after a good read.
Default = End Object Detection After Good Read.
Do Not End Object Detection
After Good Read In-Stand
* End Object Detection After
Good Read In-Stand
Do Not End Object Detection
After Good Read Out-of-Stand
* End Object Detection After
Good Read Out-of-Stand
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Object Detection Laser Timeout
You can set a timeout for the length of time the laser remains on and attempting to decode bar codes after an object is
detected. Set the length (in milliseconds) for a timeout by scanning the following bar code, then setting the timeout (from 1-
65535 milliseconds) by scanning digits from the Programming Chart, then scanning Save. Default = 5000 ms.
Object Detection Laser
Timeout In-Stand
Object Detection Laser
Timeout Out-of-Stand
Object Detection Distance
When the scanner is in the stand and you are using Object Detection Mode, you can set the distance range for detecting
objects. Short sets the scanner to detect objects approximately 5 inches (12.7cm) away from the nose. Long sets it to
detect objects approximately 10 inches (25.4cm) away. Default = Short In-Stand, Long Out-of-Stand.
* Short
In-Stand
Long
In-Stand
Short
Out-of-Stand
* Long
Out-of-Stand
Character Activation Mode
You may use a character sent from the host to trigger the scanner to begin scanning. When the activation character is received,
the scanner continues scanning until either the Character Activation Laser Timeout (page 4-12), the deactivation character is
received (see Deactivation Character on page 4-13), or a bar code is transmitted. Scan the following On bar code to use char-
acter activation, then use Activation Character (following) to select the character you will send from the host to start scanning.
Default = Off.
* Off
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On
Activation Character
This sets the character used to trigger scanning when using Character Activation Mode. On the ASCII Conversion Chart
(Code Page 1252), page A-2, find the hex value that represents the character you want to use to trigger scanning. Scan
the following bar code, then use the Programming Chart to read the alphanumeric combination that represents that ASCII
Activation Character
End Character Activation After Good Read
After a bar code is successfully detected and read from the scanner, the laser can be programmed either to remain on and
scanning, or to turn off. When End Character Activation After Good Read is enabled, the laser turns off and stops scan-
ning after a good read. If you scan Do Not End Character Activation After Good Read, the laser remains on after a good
read. Default = End Character Activation After Good Read.
Do Not End Character Activation
After Good Read
* End Character Activation After
Good Read
Character Activation Laser Timeout
You can set a timeout for the length of time the laser remains on and attempting to decode bar codes when using Character
Activation Mode. Set the length (in milliseconds) for a timeout by scanning the following bar code, then setting the timeout
(from 1-65535 milliseconds) by scanning digits from the Programming Chart, then scanning Save. Default = 5000 ms.
Character Activation Laser
Timeout
Character Deactivation Mode
If you have sent a character from the host to trigger the scanner to begin scanning, you can also send a deactivation character
to stop scanning. Scan the following On bar code to use character deactivation, then use Deactivation Character (following) to
select the character you will send from the host to terminate scanning. Default = Off.
* Off
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On
Deactivation Character
This sets the character used to terminate scanning when using Character Deactivation Mode. On the ASCII Conversion
Chart (Code Page 1252), page A-2, find the hex value that represents the character you want to use to terminate scanning.
Scan the following bar code, then use the Programming Chart to read the alphanumeric combination that represents that
Deactivation Character
Reread Delay
This sets the time period before the scanner can read the same bar code a second time. Setting a reread delay protects against
accidental rereads of the same bar code. Longer delays are effective in minimizing accidental rereads. Use shorter delays in
applications where repetitive bar code scanning is required. Default = Medium.
Short (500 ms)
* Medium (750 ms)
Long (1000 ms)
Extra Long (2000 ms)
User-Specified Reread Delay
If you want to set your own length for the reread delay, scan the following bar code, then set the delay (from 0-30,000 millisec-
User-Specified Reread Delay
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Output Sequence Overview
Output Sequence Editor
This programming selection allows you to program the scanner to output data (when scanning more than one symbol) in
whatever order your application requires, regardless of the order in which the bar codes are scanned. Reading the Default
Sequence symbol programs the scanner to the following Universal values. These are the defaults. Be certain you want to
delete or clear all formats before you read the Default Sequence symbol.
Note: If CodeGate is enabled, you must hold the button down while reading each bar code in a sequence.
Note: To make Output Sequence Editor selections, you’ll need to know the code I.D., code length, and character match(es)
your application requires. Use the Alphanumeric symbols on the Programming Chart to read these options.
To Add an Output Sequence
2. Code I.D.
On the Symbology Charts on page A-1, find the symbology to which you want to apply the output sequence format.
Locate the Hex value for that symbology and scan the 2 digit hex value from the Programming Chart (inside back
cover).
3. Length
Specify what length (up to 9999 characters) of data output will be acceptable for this symbology. Scan the four digit
data length from the Programming Chart. (Note: 50 characters is entered as 0050. 9999 is a universal number,
indicating all lengths.) When calculating the length, you must count any programmed prefixes, suffixes, or formatted
characters as part of the length (unless using 9999).
4. Character Match Sequences
On the ASCII Conversion Chart (Code Page 1252), page A-2, find the Hex value that represents the character(s) you
want to match. Use the Programming Chart to read the alphanumeric combination that represents the ASCII
characters. (99 is the Universal number, indicating all characters.)
5. End Output Sequence Editor
Other Programming Selections
•
Discard
This exits without saving any Output Sequence changes.
Output Sequence Example
In this example, you are scanning Code 93, Code 128, and Code 39 bar codes, but you want the scanner to output Code 39
1st, Code 128 2nd, and Code 93 3rd, as shown below.
Note: Code 93 must be enabled to use this example.
A - Code 39
B - Code 128
C - Code 93
You would set up the sequence editor with the following command line:
SEQBLK62999941FF6A999942FF69999943FF
The breakdown of the command line follows:
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SEQBLKsequence editor start command
62
code identifier for Code 39
9999
41
code length that must match for Code 39, 9999 = all lengths
start character match for Code 39, 41h = “A”
termination string for first code
FF
6A
code identifier for Code 128
9999
42
code length that must match for Code 128, 9999 = all lengths
start character match for Code 128, 42h = “B”
termination string for second code
FF
69
code identifier for Code 93
9999
43
code length that must match for Code 93, 9999 = all lengths
start character match for Code 93, 43h = “C”
termination string for third code
FF
To program the previous example using specific lengths, you would have to count any programmed prefixes, suffixes, or for-
matted characters as part of the length. If you use the example on page 4-14, but assume a <CR> suffix and specific code
lengths, you would use the following command line:
SEQBLK62001241FF6A001342FF69001243FF
The breakdown of the command line follows:
SEQBLKsequence editor start command
62
code identifier for Code 39
0012
41
A - Code 39 sample length (11) plus CR suffix (1) = 12
start character match for Code 39, 41h = “A”
termination string for first code
FF
6A
code identifier for Code 128
0013
42
B - Code 128 sample length (12) plus CR suffix (1) = 13
start character match for Code 128, 42h = “B”
termination string for second code
FF
69
code identifier for Code 93
0012
43
C - Code 93 sample length (11) plus CR suffix (1) = 12
start character match for Code 93, 43h = “C”
termination string for third code
FF
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Output Sequence Editor
Enter Sequence
Default Sequence
Sequence Timeout
You may wish to set the maximum time between bar code scans in an output sequence. If that maximum time is not met,
the output sequence operation is terminated. Set the length (in milliseconds) for a timeout by scanning the following bar
code, then setting the timeout (from 1-65535 milliseconds) by scanning digits from the Programming Chart, then scanning
Sequence Timeout
Sequence Match Beeper
By default, the scanner beeps when a sequence match is found. If you want the scanner to remain silent, scan the follow-
ing Sequence Match Beeper Off bar code. Default = Sequence Match Beeper On.
Sequence Match Beeper Off
* Sequence Match Beeper On
Partial Sequence
If an output sequence operation is terminated before all your output sequence criteria are met, the bar code data acquired
to that point is a “partial sequence.”
Scan Discard Partial Sequence to discard partial sequences when the output sequence operation is terminated before
completion.
Scan Transmit Partial Sequence to transmit partial sequences. (Any fields in the sequence where no data match
occurred will be skipped in the output.) If you have programmed a Sequence Timeout (page 4-16) and the timeout is
reached, the partial sequence is transmitted. Default = Discard Partial Sequence.
Transmit Partial Sequence
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* Discard Partial Sequence
Require Output Sequence
When an output sequence is Required, all output data must conform to an edited sequence or the scanner will not transmit
the output data to the host device. When it’s On/Not Required, the scanner will attempt to get the output data to conform
to an edited sequence but, if it cannot, the scanner transmits all output data to the host device as is.
When the output sequence is Off, the bar code data is output to the host as the scanner decodes it. Default = Off.
Required
On/Not Required
*Off
No Read
With No Read turned On, the scanner notifies you if a code cannot be read. If using an EZConfig-Scanning Tool Scan Data
Window (see page 9-1), an “NR” appears when a code cannot be read. If No Read is turned Off, the “NR” will not appear.
Default = Off.
On
* Off
If you want a different notation than “NR,” for example, “Error,” or “Bad Code,” you can edit the output message (see Data
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5
Data Editing
Prefix/Suffix Overview
When a bar code is scanned, additional information is sent to the host computer along with the bar code data. This group of bar
code data and additional, user-defined data is called a “message string.” The selections in this section are used to build the
user-defined data into the message string.
Prefix and Suffix characters are data characters that can be sent before and after scanned data. You can specify if they should
be sent with all symbologies, or only with specific symbologies. The following illustration shows the breakdown of a message
string:
Prefix
Scanned Data
Suffix
1-11
variable length
1-11
alpha numeric &
alpha numeric &
control characters
control characters
Points to Keep In Mind
•
It is not necessary to build a message string. The selections in this chapter are only used if you wish to alter the default
settings. Default prefix = None. Default suffix is dependent on interface.
•
•
A prefix or suffix may be added or cleared from one symbology or all symbologies.
You can add any prefix or suffix from the ASCII Conversion Chart (Code Page 1252), page A-2, plus Code I.D. and AIM
I.D.
•
•
•
You can string together several entries for several symbologies at one time.
Enter prefixes and suffixes in the order in which you want them to appear on the output.
When setting up for specific symbologies (as opposed to all symbologies), the specific symbology ID value counts as an
added prefix or suffix character.
•
The maximum size of a prefix or suffix configuration is 32 characters, which includes header information.
To Add a Prefix or Suffix:
Step 2. Determine the 2 digit Hex value from the Symbology Chart (included in the Symbology Charts, beginning on page
A-1) for the symbology to which you want to apply the prefix or suffix. For example, for Code 128, Code ID is “j” and
Hex ID is “6A”.
Step 3. Scan the 2 hex digits from the Programming Chart inside the back cover of this manual or scan 9, 9 for all
symbologies.
Step 4. Determine the hex value from the ASCII Conversion Chart (Code Page 1252), page A-2, for the prefix or suffix you
wish to enter.
Step 6. Repeat Steps 4 and 5 for every prefix or suffix character.
Step 7. To add the Code I.D., scan 5, C, 8, 0.
To add AIM I.D., scan 5, C, 8, 1.
To add a backslash (\), scan 5, C, 5, C.
Note: To add a backslash (\) as in Step 7, you must scan 5C twice – once to create the leading backslash and then to create
the backslash itself.
Repeat Steps 1-6 to add a prefix or suffix for another symbology.
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Example: Add a Suffix to a specific symbology
To send a CR (carriage return)Suffix for U.P.C. only:
Step 1. Scan Add Suffix.
Step 2. Determine the 2 digit hex value from the Symbology Chart (included in the Symbology Charts, beginning on page
A-1) for U.P.C.
Step 4. Determine the hex value from the ASCII Conversion Chart (Code Page 1252), page A-2, for the CR (carriage
return).
To Clear One or All Prefixes or Suffixes
You can clear a single prefix or suffix, or clear all prefixes/suffixes for a symbology. If you have been entering prefixes and
suffixes for single symbologies, you can use Clear One Prefix (Suffix) to delete a specific character from a symbology.
When you Clear All Prefixes (Suffixes), all the prefixes or suffixes for a symbology are deleted.
Step 1. Scan the Clear One Prefix or Clear One Suffix symbol.
Step 2. Determine the 2 digit Hex value from the Symbology Chart (included in the Symbology Charts, beginning on page
A-1) for the symbology from which you want to clear the prefix or suffix.
Step 3. Scan the 2 digit hex value from the Programming Chart inside the back cover of this manual or scan 9, 9 for all
symbologies.
Your change is automatically saved.
To Add a Carriage Return Suffix to All Symbologies
Scan the following bar code if you wish to add a carriage return suffix to all symbologies at once. This action first clears all
current suffixes, then programs a carriage return suffix for all symbologies.
Add CR Suffix
All Symbologies
Prefix Selections
Add Prefix
Clear One Prefix
Clear All Prefixes
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Suffix Selections
Add Suffix
Clear One Suffix
Clear All Suffixes
Transmit Alternate Extended ASCII Characters
You may need to emulate special keyboard functions, such as up or down arrows, Alt/Make or Alt/Break commands, that are not
supported in the Extended ASCII Character table. Refer to Alternate Extended ASCII Characters (page 5-3) for a range of key-
board function keys and corresponding decimal and hex characters. If you scan the Transmit Alternate Extended ASCII code,
any hex entries in a prefix or suffix will result in the corresponding Keyboard Function output.
Example: Transmit Alternate Extended ASCII is enabled, and you scan Add Suffix, then scan 9 9 8 9. All symbologies (99)
would have a suffix of a Page Down (hex 89) added to them.
When Transmit Normal Extended ASCII is selected, the normal extended ASCII character is transmitted ASCII Conversion
Example: Transmit Normal Extended ASCII is enabled, and you scan Add Suffix, then scan 9 9 8 9. All symbologies (99)
would have a suffix of a
‰
character added to them.
Default = Transmit Alternate Extended ASCII.
* Transmit Alternate Extended
ASCII
Transmit Normal Extended
ASCII
Alternate Extended ASCII Characters
DEC HEX Keyboard Function
DEC HEX Keyboard Function
128 80
129 81
130 82
131 83
152 98 F9
up arrow
down arrow
right arrow
↑
153 99 F10
154 9A F11
155 9B F12
↓
→
left arrow
←
132 84
133 85
134 86
Insert
Delete
Home
156 9C Numeric Keypad +
157 9D Numeric Keypad -
158 9E Numeric Keypad *
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Alternate Extended ASCII Characters (Continued)
DEC HEX Keyboard Function
DEC HEX Keyboard Function
135 87
136 88
137 89
138 8A
139 8B
140 8C
141 8D
142 8E
143 8F
144 90
145 91
146 92
147 93
148 94
149 95
150 96
151 97
End
Page Up
Page Down
Right ALT
Right CTRL
Reserved
Reserved
Numeric Keypad Enter
159 9F Caps Lock
160 A0 Num Lock
161 A1 Left Alt
162 A2 Left Ctrl
163 A3 Left Shift
164 A4 Right Shift
165 A5 Print Screen
166 A6 Tab
167 A7 Shift Tab
168 A8 Enter
169 A9 Esc
170 AA Alt Make
171 AB Alt Break
172 AC Control Make
173 AD Control Break
174 AE Alt Sequence with 1 Character
175 AF Ctrl Sequence with 1 Character
Numeric Keypad /
F1
F2
F3
F4
F5
F6
F7
F8
Function Code Transmit
When this selection is enabled and function codes are contained within the scanned data, the scanner transmits the function
code to the terminal. Charts of these function codes are provided in Supported Interface Keys starting on page 8-2. When the
scanner is in keyboard wedge mode, the scan code is converted to a key code before it is transmitted. Default = Enable.
* Enable
Disable
Communication Check Character
To enhance security, you can specify the transmission type of a check character; either LRC where the calculation starts on the
first transmitted character, LRC where the calculation starts on the second transmitted character, or CRC.
Note: This option adds a check character to the bar code data for all symbologies. If you need to enable or disable check
Scan the following bar code to set the communication check character type. Default = None.
* None
LRC Starts on 1st Character
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LRC Starts on 2nd Character
CRC
Intercharacter, Interfunction, and Intermessage Delays
Some terminals drop information (characters) if data comes through too quickly. Intercharacter, interfunction, and intermessage
delays slow the transmission of data, increasing data integrity.
Intercharacter Delay
An intercharacter delay of up to 5000 milliseconds (in 5ms increments) may be placed between the transmission of each
character of scanned data. Scan the following Intercharacter Delay bar code, then scan the number of 5ms delays, and
Prefix
Scanned Data
Suffix
1
2
3
4
5
Intercharacter Delay
Intercharacter Delay
To remove this delay, scan the Intercharacter Delay bar code, then set the number of delays to 0. Scan the Save bar code
Note: Intercharacter delays are not supported in USB serial emulation.
User Specified Intercharacter Delay
An intercharacter delay of up to 5000 milliseconds (in 5ms increments) may be placed after the transmission of a particular
character of scanned data. Scan the following Delay Length bar code, then scan the number of 5ms delays, and the Save
Next, scan the Character to Trigger Delay bar code, then the 2-digit hex value for the ASCII character that will trigger the
Delay Length
Character to Trigger Delay
To remove this delay, scan the Delay Length bar code, and set the number of delays to 0. Scan the Save bar code using
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Interfunction Delay
An interfunction delay of up to 5000 milliseconds (in 5ms increments) may be placed between the transmission of each
segment of the message string. Scan the following Interfunction Delay bar code, then scan the number of 5ms delays,
Prefix
STX
Scanned Data
3 4
Interfunction Delays
Suffix
1
HT
2
5
CR
LF
Interfunction Delay
To remove this delay, scan the Interfunction Delay bar code, then set the number of delays to 0. Scan the Save bar code
Intermessage Delay
An intermessage delay of up to 5000 milliseconds (in 5ms increments) may be placed between each scan transmission.
Scan the following Intermessage Delay bar code, then scan the number of 5ms delays, and the Save bar code using the
Programming Chart inside the back cover of this manual.
1st Scan Transmission
2nd Scan Transmission
Intermessage Delay
Intermessage Delay
To remove this delay, scan the Intermessage Delay bar code, then set the number of delays to 0. Scan the Save bar code
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6
Data Formatting
Data Format Editor Introduction
You may use the Data Format Editor to change the scanner’s output. For example, you can use the Data Format Editor to insert
characters at certain points in bar code data as it is scanned. The selections in the following pages are used only if you wish to
alter the output. Default Data Format setting = None.
Normally, when you scan a bar code, it gets outputted automatically; however when you create a format, you must use a “send”
Multiple formats may be programmed into the scanner. They are stacked in the order in which they are entered. However, the
following list presents the order in which formats are applied:
1. Specific Terminal ID, Actual Code ID, Actual Length
2. Specific Terminal ID, Actual Code ID, Universal Length
3. Specific Terminal ID, Universal Code ID, Actual Length
4. Specific Terminal ID, Universal Code ID, Universal Length
5. Universal Terminal ID, Actual Code ID, Actual Length
6. Universal Terminal ID, Actual Code ID, Universal Length
7. Universal Terminal ID, Universal Code ID, Actual Length
8. Universal Terminal ID, Universal Code ID, Universal Length
The maximum size of a data format configuration is 256 bytes, which includes header information. No format can contain more
than 50 bytes.
If you have changed data format settings, and wish to clear all formats and return to the factory defaults, scan the following
Default Data Format code.
* Default Data Format
To Add a Data Format
Step 2. Select Primary/Alternate Format
Determine if this will be your primary data format, or one of 3 alternate formats. This allows you to save a total of 4
different data formats. To program your primary format, scan 0 using the Programming Chart inside the back cover of
this manual. If you are programming an alternate format, scan 1, 2, or 3, depending on which alternate format you are
Step 3. Terminal Type
Refer to Terminal ID Table (page 6-3) and locate the Terminal ID number for your PC. Scan three numeric bar codes
on the Programming Chart to program the scanner for your terminal ID (you must enter 3 digits). For example, scan 0
0 3 for an AT wedge.
Note: The wildcard for all terminal types is 099.
Step 4. Code I.D.
In the Symbology Charts, beginning on page A-1, find the symbology to which you want to apply the data format. Locate
the Hex value for that symbology and scan the 2 digit hex value from the Programming Chart inside the back cover of
this manual.
Step 5. Length
Specify what length (up to 9999 characters) of data will be acceptable for this symbology. Scan the four digit data length
from the Programming Chart inside the back cover of this manual. (Note: 50 characters is entered as 0050. 9999 is a
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universal number, indicating all lengths.)
Step 6. Editor Commands
Refer to (page 6-3). Scan the symbols that represent the command you want to enter. 94 alphanumeric characters
may be entered for each symbology data format.
Step 7. Scan Save to save your data format, or Discard to exit without saving your changes.
Enter Data Format
Save
Discard
Other Programming Selections
Clear One Data Format
This deletes one data format for one symbology. If you are clearing the primary format, scan 0 from the Programming
Chart inside the back cover of this manual. If you are clearing an alternate format, scan 1, 2, or 3, depending on the
format you are clearing. Scan the Terminal Type and Code I.D. (see Symbology Charts on page A-1), and the bar code
data length for the specific data format that you want to delete. All other formats remain unaffected.
Clear all Data Formats
This clears all data formats.
Save to exit and save your data format changes.
Discard to exit without saving any data format changes.
Clear One Data Format
Clear All Data Formats
Save
Discard
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Terminal ID Table
Terminal
Model(s)
Terminal ID
IBM
PC/AT and compatibles
PS2 Keyboard
USB SurePOS Handheld Scanner
USB SurePOS Tabletop Scanner
True
003
002
128
129
000
000
051
130
124
125
134
131
RS232
TTL
RS485
USB
Serial
PC Keyboard
Mac Keyboard
Japanese Keyboard (PC)
HID POS
Data Format Editor Commands
Send Commands
Send all characters
F1 Include in the output message all of the characters from the input message, starting from current cursor position,
followed by an insert character. Syntax = F1xx where xx stands for the insert character’s hex value for its ASCII code.
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
Send a number of characters
F2 Include in the output message a number of characters followed by an insert character. Start from the current cursor
position and continue for “nn” characters or through the last character in the input message, followed by character “xx.”
Syntax = F2nnxx where nn stands for the numeric value (00-99) for the number of characters, and xx stands for the
insert character’s hex value for its ASCII code.
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
F2 Example: Send a number of characters
Send the first 10 characters from the bar code above, followed by a carriage return. Command string: F2100D
F2 is the “Send a number of characters” command
10 is the number of characters to send
0D is the hex value for a CR
The data is output as: 1234567890
F2 and F1 Example: Split characters into 2 lines
Send the first 10 characters from the bar code above, followed by a carriage return, followed by the rest of the charac-
ters.
Command string: F2100DF10D
F2 is the “Send a number of characters” command
10 is the number of characters to send for the first line
0D is the hex value for a CR
F1 is the “Send all characters” command
0D is the hex value for a CR
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The data is output as:
1234567890
ABCDEFGHIJ
<CR>
Send all characters up to a particular character
F3 Include in the output message all characters from the input message, starting with the character at the current cursor
position and continuing to, but not including, the search character “ss,” followed by an insert character. The cursor is
moved forward to the “ss” character. Syntax = F3ssxx where ss stands for the search character’s hex value for its ASCII
code, and xx stands for the insert character’s hex value for its ASCII code.
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
F3 Example: Send all characters up to a particular character
Using the bar code above, send all characters up to but not including “D,” followed by a carriage return.
Command string: F3440D
F3 is the “Send all characters up to a particular character” command
44 is the hex value for a 'D”
0D is the hex value for a CR
The data is output as:
1234567890ABC
<CR>
Send all but the last characters
E9 Include in the output message all but the last “nn” characters, starting from the current cursor position. The cursor is
moved forward to one position past the last input message character included. Syntax = E9nn where nn stands for the
numeric value (00-99) for the number of characters that will not be sent at the end of the message.
Insert a character multiple times
F4 Send “xx” character “nn” times in the output message, leaving the cursor in the current position. Syntax = F4xxnn where
xx stands for the insert character’s hex value for its ASCII code, and nn is the numeric value (00-99) for the number of
times it should be sent. Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and
character codes.
E9 and F4 Example: Send all but the last characters, followed by 2 tabs
Send all characters except for the last 8 from the bar code above, followed by 2 tabs.
Command string: E908F40902
E9 is the “Send all but the last characters” command
08 is the number of characters at the end to ignore
F4 is the “Insert a character multiple times” command
09 is the hex value for a horizontal tab
02 is the number of times the tab character is sent
The data is output as: 1234567890AB <tab><tab>
Insert symbology name
B3 Insert the name of the bar code’s symbology in the output message, without moving the cursor. Only symbologies with
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
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Insert bar code length
B4 Insert the bar code’s length in the output message, without moving the cursor. The length is expressed as a numeric
string and does not include leading zeros.
B3 and B4 Example: Insert the symbology name and length
Send the symbology name and length before the bar code data from the bar code above. Break up these insertions
with spaces. End with a carriage return.
Command string: B3F42001B4F42001F10D
B3 is the “Insert symbology name” command
F4 is the “Insert a character multiple times” command
20 is the hex value for a space
01 is the number of times the space character is sent
B4 is the “Insert bar code length” command
F4 is the “Insert a character multiple times” command
20 is the hex value for a space
01 is the number of times the space character is sent
F1 is the “Send all characters” command
0D is the hex value for a CR
The data is output as:
Code128 20 1234567890ABCDEFGHIJ
<CR>
Move Commands
Move the cursor forward a number of characters
F5 Move the cursor ahead “nn” characters from current cursor position.
Syntax = F5nn where nn is the numeric value (00-99) for the number of characters the cursor should be moved ahead.
F5 Example: Move the cursor forward and send the data
Move the cursor forward 3 characters, then send the rest of the bar code data from the bar code above. End with a
carriage return.
Command string: F503F10D
F5 is the “Move the cursor forward a number of characters” command
03 is the number of characters to move the cursor
F1 is the “Send all characters” command
0D is the hex value for a CR
The data is output as:
4567890ABCDEFGHIJ
<CR>
Move the cursor backward a number of characters
F6 Move the cursor back “nn” characters from current cursor position.
Syntax = F6nn where nn is the numeric value (00-99) for the number of characters the cursor should be moved back.
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Move the cursor to the beginning
F7 Move the cursor to the first character in the input message. Syntax = F7.
FE and F7 Example: Manipulate bar codes that begin with a 1
Search for bar codes that begin with a 1. If a bar code matches, move the cursor back to the beginning of the data and
send 6 characters followed by a carriage return. Using the bar code above:
Command string: FE31F7F2060D
FE is the “Compare characters” command
31 is the hex value for 1
F7 is the “Move the cursor to the beginning” command
F2 is the “Send a number of characters” command
06 is the number of characters to send
0D is the hex value for a CR
The data is output as:
123456
<CR>
Move the cursor to the end
EA Move the cursor to the last character in the input message. Syntax = EA.
Search Commands
Search forward for a character
F8 Search the input message forward for “xx” character from the current cursor position, leaving the cursor pointing to the
“xx” character. Syntax = F8xx where xx stands for the search character’s hex value for its ASCII code. Refer to the
F8 Example: Send bar code data that starts after a particular character
Search for the letter “D” in bar codes and send all the data that follows, including the “D.” Using the bar code above:
Command string: F844F10D
F8 is the “Search forward for a character” command
44 is the hex value for “D”
F1 is the “Send all characters” command
0D is the hex value for a CR
The data is output as:
DEFGHIJ
<CR>
Search backward for a character
F9 Search the input message backward for “xx” character from the current cursor position, leaving the cursor pointing to
the “xx” character. Syntax = F9xx where xx stands for the search character’s hex value for its ASCII code.
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
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Search forward for a string
B0 Search forward for “s” string from the current cursor position, leaving cursor pointing to “s” string. Syntax = B0nnnnS
where nnnn is the string length (up to 9999), and S consists of the ASCII hex value of each character in the match string.
For example, B0000454657374 will search forward for the first occurrence of the 4 character string “Test.”
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
B0 Example: Send bar code data that starts after a string of characters
Search for the letters “FGH” in bar codes and send all the data that follows, including “FGH.” Using the bar code
above:
Command string: B00003464748F10D
B0 is the “Search forward for a string” command
0003 is the string length (3 characters)
46 is the hex value for “F”
47 is the hex value for “G”
48 is the hex value for “H”
F1 is the “Send all characters” command
0D is the hex value for a CR
The data is output as:
FGHIJ
<CR>
Search backward for a string
B1 Search backward for “s” string from the current cursor position, leaving cursor pointing to “s” string. Syntax = B1nnnnS
where nnnn is the string length (up to 9999), and S consists of the ASCII hex value of each character in the match string.
For example, B1000454657374 will search backward for the first occurrence of the 4 character string “Test.”
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
Search forward for a non-matching character
E6 Search the input message forward for the first non-“xx” character from the current cursor position, leaving the cursor
pointing to the non-“xx” character. Syntax = E6xx where xx stands for the search character’s hex value for its ASCII
code. Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
E6 Example: Remove zeros at the beginning of bar code data
This example shows a bar code that has been zero filled. You may want to ignore the zeros and send all the data that
follows. E6 searches forward for the first character that is not zero, then sends all the data after, followed by a carriage
return. Using the bar code above:
Command string: E630F10D
E6 is the “Search forward for a non-matching character” command
30 is the hex value for 0
F1 is the “Send all characters” command
0D is the hex value for a CR
The data is output as:
37692
<CR>
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Search backward for a non-matching character
E7 Search the input message backward for the first non-“xx” character from the current cursor position, leaving the cursor
pointing to the non-“xx” character. Syntax = E7xx where xx stands for the search character’s hex value for its ASCII
code. Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
Miscellaneous Commands
Suppress characters
FB Suppress all occurrences of up to 15 different characters, starting at the current cursor position, as the cursor is
advanced by other commands. When the FC command is encountered, the suppress function is terminated. The
cursor is not moved by the FB command.
Syntax = FBnnxxyy . .zz where nn is a count of the number of suppressed characters in the list, and xxyy .. zz is the list
of characters to be suppressed.
FB Example: Remove spaces in bar code data
This example shows a bar code that has spaces in the data. You may want to remove the spaces before sending the
data. Using the bar code above:
Command string: FB0120F10D
FB is the “Suppress characters” command
01 is the number of character types to be suppressed
20 is the hex value for a space
F1 is the “Send all characters” command
0D is the hex value for a CR
The data is output as:
34567890
<CR>
Stop suppressing characters
FC Disables suppress filter and clear all suppressed characters. Syntax = FC.
Replace characters
E4 Replaces up to 15 characters in the output message, without moving the cursor. Replacement continues until the E5
command is encountered. Syntax = E4nnxx xx yy yy ...zz zz where nn is the total count of the number of characters
1
2
1
2
1
2
in the list (characters to be replaced plus replacement characters); xx defines characters to be replaced and xx defines
1
2
replacement characters, continuing through zz and zz .
1
2
E4 Example: Replace zeroes with CRs in bar code data
If the bar code has characters that the host application does not want included, you can use the E4 command to
replace those characters with something else. In this example, you will replace the zeroes in the bar code above with
carriage returns.
Command string: E402300DF10D
E4 is the “Replace characters” command
02 is the total count of characters to be replaced, plus the replacement characters (0 is replaced by CR, so total char-
acters = 2)
30 is the hex value for 0
0D is the hex value for a CR (the character that will replace the 0)
F1 is the “Send all characters” command
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0D is the hex value for a CR
The data is output as:
1234
5678
ABC
<CR>
Stop replacing characters
E5 Terminates character replacement. Syntax = E5.
Compare characters
FE Compare the character in the current cursor position to the character “xx.” If characters are equal, move the cursor
forward one position. Syntax = FExx where xx stands for the comparison character’s hex value for its ASCII code.
Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for decimal, hex and character codes.
Compare string
B2 Compare the string in the input message to the string “s.” If the strings are equal, move the cursor forward past the end
of the string. Syntax = B2nnnnS where nnnn is the string length (up to 9999), and S consists of the ASCII hex value
of each character in the match string. For example, B2000454657374 will compare the string at the current cursor
position with the 4 character string “Test.” Refer to the ASCII Conversion Chart (Code Page 1252), page A-2 for
decimal, hex and character codes.
Check for a number
EC Check to make sure there is an ASCII number at the current cursor position. The format is aborted if the character is
not numeric.
EC Example: Only output the data if the bar code begins with a number
If you want only data from bar codes that begin with a number, you can use EC to check for the number.
Command string: ECF10D
EC is the “Check for a number” command
F1 is the “Send all characters” command
0D is the hex value for a CR
If this bar code is read,
the next data format, if there is one, will be used on the data. If there
is no other format, the format fails and the raw data is output as AB1234.
If this bar code is read:
the data is output as:
1234AB
<CR>
Check for non-numeric character
ED Check to make sure there is a non-numeric ASCII character at the current cursor position. The format is aborted if the
character is numeric.
ED Example: Only output the data if the bar code begins with a letter
If you want only data from bar codes that begin with a letter, you can use ED to check for the letter.
Command string: EDF10D
ED is the “Check for a non-numeric character” command
F1 is the “Send all characters” command
0D is the hex value for a CR
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If this bar code is read,
the next data format, if there is one, will be used on this data. If there
is no other format, the format fails and the raw data is output as 1234AB.
If this bar code is read:
the data is output as:
AB1234
<CR>
Insert a delay
EF Inserts a delay of up to 49,995 milliseconds (in multiples of 5), starting from the current cursor position. Syntax = EFnnnn
where nnnn stands for the delay in 5ms increments, up to 9999. This command can only be used with keyboard wedge
interfaces.
Data Formatter
When Data Formatter is turned Off, the bar code data is output to the host as read, including prefixes and suffixes.
Data Formatter Off
You may wish to require the data to conform to a data format you have created and saved. The following settings can be applied
to your data format:
Data Formatter On, Not Required, Keep Prefix/Suffix
Scanned data is modified according to your data format, and prefixes and suffixes are transmitted.
Data Formatter On, Not Required, Drop Prefix/Suffix
Scanned data is modified according to your data format. If a data format is found for a particular symbol, those prefixes and
suffixes are not transmitted.
Data Format Required, Keep Prefix/Suffix
Scanned data is modified according to your data format, and prefixes and suffixes are transmitted. Any data that does not
match your data format requirements generates an error tone and the data in that bar code is not transmitted. If you wish
to process this type of bar code without generating an error tone, see Data Format Non-Match Error Tone.
Data Format Required, Drop Prefix/Suffix
Scanned data is modified according to your data format. If a data format is found for a particular symbol, those prefixes and
suffixes are not transmitted. Any data that does not match your data format requirements generates an error tone. If you
wish to process this type of bar code without generating an error tone, see Data Format Non-Match Error Tone.
Choose one of the following options. Default = Data Formatter On, Not Required, Keep Prefix/Suffix.
* Data Formatter On,
Not Required,
Keep Prefix/Suffix
Data Formatter On,
Not Required,
Drop Prefix/Suffix
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Data Format Required,
Keep Prefix/Suffix
Data Format Required,
Drop Prefix/Suffix
Data Format Non-Match Error Tone
When a bar code is encountered that doesn’t match your required data format, the scanner normally generates an error
tone. However, you may want to continue scanning bar codes without hearing the error tone. If you scan the Data Format
Non-Match Error Tone Off bar code, data that doesn’t conform to your data format is not transmitted, and no error tone will
sound. If you wish to hear the error tone when a non-matching bar code is found, scan the Data Format Non-Match Error
Tone On bar code. Default = Data Format Non-Match Error Tone On.
* Data Format Non-Match Error
Tone On
Data Format Non-Match
Error Tone Off
Primary/Alternate Data Formats
You can save up to four data formats, and switch between these formats. Your primary data format is saved under 0. Your other
three formats are saved under 1, 2, and 3. To set your device to use one of these formats, scan one of the following bar codes.
Primary Data Format
Data Format 1
Data Format 2
Data Format 3
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Single Scan Data Format Change
You can also switch between data formats for a single scan. The next bar code is scanned using an alternate data format,
then reverts to the format you have selected above (either Primary, 1, 2, or 3).
For example, you may have set your device to the data format you saved as Data Format 3. You can switch to Data Format
1 for a single button press by scanning the following Single Scan-Data Format 1 bar code. The next bar code that is
scanned uses Data Format 1, then reverts back to Data Format 3.
Single Scan-Primary
Data Format
Single Scan-Data Format 1
Single Scan-Data Format 2
Single Scan-Data Format 3
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7
Symbologies
This programming section contains the following menu selections. Refer to Chapter 10 for settings and defaults.
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
•
Airline Code 5 - see Straight 2 of 5 IATA (two-bar start/stop)
All Symbologies
If you want to decode all the symbologies allowable for your scanner, scan the All Symbologies On code. If on the other hand,
you want to decode only a particular symbology, scan All Symbologies Off followed by the On symbol for that particular sym-
bology.
All Symbologies On
All Symbologies Off
Message Length Description
You are able to set the valid reading length of some of the bar code symbologies. If the data length of the scanned bar code
doesn’t match the valid reading length, the scanner will issue an error tone. You may wish to set the same value for minimum
and maximum length to force the scanner to read fixed length bar code data. This helps reduce the chances of a misread.
EXAMPLE: Decode only those bar codes with a count of 9-20 characters.
Min. length = 09Max. length = 20
EXAMPLE: Decode only those bar codes with a count of 15 characters.
Min. length = 15Max. length = 15
For a value other than the minimum and maximum message length defaults, scan the bar codes included in the explanation of
the symbology, then scan the digit value of the message length and Save bar codes on the Programming Chart inside the back
cover of this manual. The minimum and maximum lengths and the defaults are included with the respective symbologies.
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Codabar
<Default All Codabar Settings>
Codabar On/Off
* On
Off
Codabar Start/Stop Characters
Start/Stop characters identify the leading and trailing ends of the bar code. You may either transmit, or not transmit Start/
Stop characters. Default = Don’t Transmit.
Transmit
* Don’t Transmit
Codabar Check Character
Codabar check characters are created using different “modulos.” You can program the scanner to read only Codabar bar
codes with Modulo 16, Modulo 7 CD, or CLSI check characters. Default = No Check Character.
No Check Character indicates that the scanner reads and transmits bar code data with or without a check character.
When Check Character is set to Validate and Transmit, the scanner will only read Codabar bar codes printed with a check
character, and will transmit this character at the end of the scanned data.
When Check Character is set to Validate, but Don’t Transmit, the unit will only read Codabar bar codes printed with a
check character, but will not transmit the check character with the scanned data.
* No Check Character
Validate Modulo 16, but
Don’t Transmit
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Validate Modulo 16
and Transmit
Validate Modulo 7 CD, but Don’t
Transmit
Validate Modulo 7 CD and
Transmit
Validate CLSI, but Don’t
Transmit
Validate CLSI and Transmit
Codabar Concatenation
Codabar supports symbol concatenation. When you enable concatenation, the scanner looks for a Codabar symbol having
a “D” start character, adjacent to a symbol having a “D” stop character. In this case the two messages are concatenated
into one with the “D” characters omitted.
A 1 2 3 4 D
D 5 6 7 8
Select Require to prevent the scanner from decoding a single “D” Codabar symbol without its companion. This selection
has no effect on Codabar symbols without Stop/Start D characters.
On
* Off
Require
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Concatenation Timeout
When searching for bar codes during concatenation, you may wish to set a delay used to find the next bar code. Set
the length (in milliseconds) for this delay by scanning the following bar code, then setting the timeout (from 1-65535
Concatenation Timeout
Codabar Redundancy
If you are encountering errors when reading Codabar bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the following Codabar Redundancy bar code, then scan a redundancy count between 0 and 10 on the Programming Chart
Codabar Redundancy
Codabar Message Length
Scan the following bar codes to change the message length. Refer to Message Length Description (page 7-1) for addi-
tional information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
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Code 39
< Default All Code 39 Settings >
Code 39 On/Off
* On
Off
Code 39 Start/Stop Characters
Start/Stop characters identify the leading and trailing ends of the bar code. You may either transmit, or not transmit Start/
Stop characters. Default = Don’t Transmit.
Transmit
* Don’t Transmit
Code 39 Check Character
No Check Character indicates that the scanner reads and transmits bar code data with or without a check character.
When Check Character is set to Validate, but Don’t Transmit, the unit only reads Code 39 bar codes printed with a check
character, but will not transmit the check character with the scanned data.
When Check Character is set to Validate and Transmit, the scanner only reads Code 39 bar codes printed with a check
character, and will transmit this character at the end of the scanned data. Default = No Check Character.
* No Check Character
Validate, but Don’t Transmit
Validate and Transmit
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Code 39 Redundancy
If you are encountering errors when reading Code 39 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Code 39 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
Code 39 Redundancy
Code 39 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
Code 32 Pharmaceutical (PARAF)
Code 32 Pharmaceutical is a form of the Code 39 symbology used by Italian pharmacies. This symbology is also known as
PARAF.
On
* Off
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Full ASCII
If Full ASCII Code 39 decoding is enabled, certain character pairs within the bar code symbol will be interpreted as a single
character. For example: $V will be decoded as the ASCII character SYN, and /C will be decoded as the ASCII character #.
Default = Off.
NUL %U
SOH $A
STX $B
ETX $C
EOT $D
ENQ $E
ACK $F
BEL $G
BS $H
HT $I
DLE $P
DC1 $Q
DC2 $R
DC3 $S
DC4 $T
NAK $U
SYN $V
ETB $W
CAN $X
EM $Y
SUB $Z
ESC %A
FS %B
GS %C
RS %D
US %E
SP
!
SPACE
/A
/B
/C
/D
/E
/F
/G
/H
/I
0
1
2
3
4
5
6
7
8
9
:
0
@
A
B
C
D
E
F
%V
A
B
C
D
E
F
P
Q
R
S
T
U
V
W
X
Y
Z
[
P
‘
%W
+A
+B
+C
+D
+E
+F
+G
+H
+I
p
q
r
+P
+Q
+R
+S
+T
1
Q
a
b
c
d
e
f
“
2
R
#
$
%
&
‘
3
S
s
t
4
T
5
U
u
v
w
x
y
z
{
+U
+V
+W
+X
+Y
+Z
6
V
7
G
H
I
G
H
I
W
X
g
h
i
(
8
)
9
Y
LF $J
VT $K
FF $L
CR $M
SO $N
*
/J
/Z
%F
%G
%H
%I
%J
J
J
Z
j
+J
+
,
/K
/L
;
K
L
K
L
%K
%L
%M
%N
%O
k
l
+K
+L
%P
%Q
%R
%S
<
=
>
?
\
|
-
-
M
N
O
M
N
O
]
m
n
o
+M
+N
}
.
.
^
~
SI
$O
/
/O
_
+O DEL %T
Character pairs /M and /N decode as a minus sign and period respectively.
Character pairs /P through /Y decode as 0 through 9.
Full ASCII On
* Full ASCII Off
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Interleaved 2 of 5
< Default All Interleaved 2 of 5 Settings >
Interleaved 2 of 5 On/Off
* On
Off
NULL Characters
Interleaved 2 of 5 requires an even number of characters. When an odd number of characters is present, it is due to NULL
characters embedded in the bar code. Scan the On bar code below to decode this type of Interleaved 2 of 5 bar code.
Default = Off.
* Off
On
Check Digit
No Check Digit indicates that the scanner reads and transmits bar code data with or without a check digit.
When Check Digit is set to Validate, but Don’t Transmit, the unit only reads Interleaved 2 of 5 bar codes printed with a
check digit, but will not transmit the check digit with the scanned data.
When Check Digit is set to Validate and Transmit, the scanner only reads Interleaved 2 of 5 bar codes printed with a
check digit, and will transmit this digit at the end of the scanned data. Default = No Check Digit.
* No Check Digit
Validate, but Don’t Transmit
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Validate and Transmit
Interleaved 2 of 5 Redundancy
If you are encountering errors when reading Interleaved 2 of 5 bar codes, you may want to adjust the redundancy count.
Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of
errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy,
scan the Interleaved 2 of 5 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the
Interleaved 2 of 5 Redundancy
Interleaved 2 of 5 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 6, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
NEC 2 of 5
< Default All NEC 2 of 5 Settings >
NEC 2 of 5 On/Off
On
* Off
Check Digit
No Check Digit indicates that the scanner reads and transmits bar code data with or without a check digit.
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When Check Digit is set to Validate, but Don’t Transmit, the unit only reads NEC 2 of 5 bar codes printed with a check
digit, but will not transmit the check digit with the scanned data.
When Check Digit is set to Validate and Transmit, the scanner only reads NEC 2 of 5 bar codes printed with a check digit,
and will transmit this digit at the end of the scanned data. Default = No Check Digit.
* No Check Digit
Validate, but Don’t Transmit
Validate and Transmit
NEC 2 of 5 Redundancy
If you are encountering errors when reading NEC 2 of 5 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the NEC 2 of 5 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
NEC 2 of 5 Redundancy
NEC 2 of 5 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
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Code 93
< Default All Code 93 Settings >
Code 93 On/Off
* On
Off
Code 93 Redundancy
If you are encountering errors when reading Code 93 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Code 93 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
Code 93 Redundancy
Code 93 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
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Straight 2 of 5 Industrial (three-bar start/stop)
<Default All Straight 2 of 5 Industrial Settings>
Straight 2 of 5 Industrial On/Off
On
* Off
Straight 2 of 5 Industrial Redundancy
If you are encountering errors when reading Straight 2 of 5 Industrial bar codes, you may want to adjust the redundancy
count. Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number
of errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redun-
dancy, scan the Straight 2 of 5 Industrial Redundancy bar code below, then scan a redundancy count between 0 and 10
on the Programming Chart inside the back cover of this manual. Then scan the Save bar code. Default = 0.
Straight 2 of 5 Industrial
Redundancy
Straight 2 of 5 Industrial Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
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Straight 2 of 5 IATA (two-bar start/stop)
<Default All Straight 2 of 5 IATA Settings>
Straight 2 of 5 IATA On/Off
On
* Off
Straight 2 of 5 IATA Redundancy
If you are encountering errors when reading Straight 2 of 5 IATA bar codes, you may want to adjust the redundancy count.
Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of
errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy,
scan the Straight 2 of 5 IATA Redundancy bar code below, then scan a redundancy count between 0 and 10 on the
Straight 2 of 5 IATA
Redundancy
Straight 2 of 5 IATA Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 13, Maximum Default = 15.
Minimum Message Length
Maximum Message Length
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Matrix 2 of 5
<Default All Matrix 2 of 5 Settings>
Matrix 2 of 5 On/Off
On
* Off
Matrix 2 of 5 Check Character
No Check Character indicates that the scanner reads and transmits bar code data with or without a check character.
When Check Character is set to Validate, but Don’t Transmit, the unit only reads Matrix 2 of 5 bar codes printed with a
check character, but will not transmit the check character with the scanned data.
When Check Character is set to Validate and Transmit, the scanner only reads Matrix 2 of 5 bar codes printed with a
check character, and will transmit this character at the end of the scanned data. Default = No Check Character.
* No Check Character
Validate, but Don’t Transmit
Validate and Transmit
Matrix 2 of 5 Redundancy
If you are encountering errors when reading Matrix 2 of 5 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Matrix 2 of 5 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming
Matrix 2 of 5 Redundancy
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Matrix 2 of 5 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
Code 11
<Default All Code 11 Settings>
Code 11 On/Off
On
* Off
Check Digits Required
These options set whether 1 or 2 check digits are required with Code 11 bar codes. Auto Select Check Digits determines
the number of check digits based on the length of the bar code. If the bar code is 10 digits or more, 2 check digits are
required. If it is 9 digits or less, 1 check digit is required. The check digit data is only transmitted if you program that feature
One Check Digit Required
* Two Check Digits Required
Auto Select Check Digits
Required
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Check Digit Validation
When Check Character is set to Validate and Transmit, the scanner will only read Code 11 bar codes printed with the
specified type check character(s), and will transmit the character(s) at the end of the scanned data.
Validate and Transmit One
Check Digit
Validate and Transmit Two
Check Digits
Validate and Transmit Auto
Select Check Digits
Code 11 Redundancy
If you are encountering errors when reading Code 11 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Code 11 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
Code 11 Redundancy
Code 11 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
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Code 128
<Default All Code 128 Settings>
Code 128 On/Off
* On
Off
128 Group Separator Output
If you wish to transmit embedded FNC1 characters as group separators (1B hex) with your Code 128 bar code output, scan
the On bar code. When Off is scanned, nothing is transmitted for FNC1 characters. Default =Off.
On
* Off
Code 128 Redundancy
If you are encountering errors when reading Code 128 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Code 128 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
Code 128 Redundancy
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Code 128 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
ISBT 128 Concatenation
In 1994 the International Society of Blood Transfusion (ISBT) ratified a standard for communicating critical blood informa-
tion in a uniform manner. The use of ISBT formats requires a paid license. The ISBT 128 Application Specification
describes 1) the critical data elements for labeling blood products, 2) the current recommendation to use Code 128 due to
its high degree of security and its space-efficient design, 3) a variation of Code 128 that supports concatenation of neigh-
boring symbols, and 4) the standard layout for bar codes on a blood product label. Use the bar codes below to turn concat-
enation on or off. Default =Off.
On
* Off
Concatenation Timeout
When searching for bar codes during concatenation, you may wish to set a delay used to find the next bar code. Set the
length (in milliseconds) for this delay by scanning the bar code below, then setting the timeout (from 1-65535 milliseconds)
Concatenation Timeout
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ISBT 128 Predefined Concatenation Sequences
Note: You must enable Code 128 and ISBT 128 to use this feature.
The following bar codes are used to select the pre-defined ISBT 128 Concatenation Sequence you wish to use. Once you
have selected the concatenation sequence, use ISBT 128 Predefined Concatenation Sequences On/Off to enable this fea-
ture. Default = Donation ID Number (001)
and ABO/RhD Blood Groups (002).
* Donation ID Number (001)
and ABO/RhD Blood Groups (002)
Donation ID Number (001) and
Donor ID Number (019)
Donation ID Number (001) and
Confidential Unit Exclusion
Status
Product Code (003) and
Expiration Date (Form 1)
Product Code (003) and
Expiration Date (Form 2)
Product Code (003) and
Expiration Date (Form 3)
Product Code (003) and
Expiration Date (Form 4)
ISBT 128 Predefined Concatenation Sequences On/Off
The following selections allow you to enable or require the Predefined ISBT 128 Concatenation Sequences.
If you scan Off, the predefined concatenation sequences are disabled.
If you scan the Allow Predefined Sequence code, then the scanner will output only the data combination specified in the
predefined concatenation sequence you selected.
If you scan the Require Predefined Sequence code, the data combination specified in the predefined concatenation
sequence you selected is required to transmit the data. No data is output unless the sequence is read.
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Default = Off.
* Off
Allow Predefined Sequence
Require Predefined Sequence
ISBT 128 User-Defined Concatenation Sequences
Note: You must enable Code 128 and ISBT 128 to use this feature.
The following bar codes are used to create a custom ISBT 128 Concatenation Sequence. Select the identifiers you want to
transmit in the 1st and 2nd positions, both left and right. Refer to the ISBT 128 Standard Technical Specification for the list
of data identifiers.
Use the ASCII Conversion Chart (Code Page 1252), page A-2, to find the characters needed for the identifier. Locate the
hex value for each character and scan that 2 digit/character value from the Programming Chart inside the back cover of this
manual.
Example: You want to create a concatenation sequence that has the Donation Identification Number (001) as the left iden-
tifier, and Product Code (003) as the right identifier.
The ISBT Index of Data Structures shows that for the Donation Identification Number, the first character is “=” and the sec-
ond character can be from A-N; P-Z; 1-9. For this example, use “G.” The Product Code first character is “=” and the second
character is “<.”
Step 1. Scan the 1st Left Identifier bar code, below.
Step 4. Scan the 2nd Left Identifier bar code, below.
Step 7. Scan the 1st Right Identifier bar code, below.
Step 10. Scan the 2nd Right Identifier bar code, below.
Once you have programmed the concatenation sequence, use ISBT 128 User-Defined Concatenation Sequences to
enable this feature. Default = 0.
1st Left Identifier
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2nd Left Identifier
1st Right Identifier
2nd Right Identifier
ISBT 128 User-Defined Concatenation Sequences On/Off
The following selections allow you to enable or require the User-Defined ISBT 128 Concatenation Sequences.
If you scan Off, the User-Defined concatenation sequences are disabled.
If you scan the Allow User-Defined Sequence code, then the scanner will output only the data combination specified in
the User-Defined concatenation sequence you created.
If you scan the Require User-Defined Sequence code, the data combination specified in the User-Defined concatenation
sequence is required to transmit the data. No data is output unless the sequence is read.
Default = Off.
* Off
Allow User-Defined Sequence
Require User-Defined Sequence
Content Verification
When the On bar code is scanned, the check character values are output along with the bar code data, thus allowing you to
verify that the check character is in agreement with that calculated for the data stream. Default = Off.
On
* Off
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Transmit Identifiers
You may disable the transmission of the ISBT Code 128 data identifiers by scanning Off. When this selection is Off, the
first 2 data (ID) characters are removed from the data stream unless the ISBT code contains the Donation Identification
Number identifiers. If the code contains the Donation Identification Number identifiers, only the first ID character is
removed from the Donation Identification Number. The second character is transmitted as normal data. Default = On.
* On
Off
Flag Digit Conversion
Type 3 flag digits are a part of the Donation Identification Number in an ISBT 128 bar code. If you select On, the flag data
is converted into a single MOD (37, 2) character and transmitted with the bar code data. Scan Off if you do not want the
flag digits transmitted. Default = Off.
On
* Off
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GS1-128
<Default All GS1-128 Settings>
GS1-128 On/Off
* On
Off
GS1-128 Application Identifier Parsing
This allows a single GS1-128 bar code to be broken into multiple transmissions based on the presence of application iden-
tifiers (AI) embedded in the bar code. To use this feature, first enable 128 Group Separator Output (page 7-17). Next, scan
Transmit Without Identifiers if you want the bar code broken into packets and stripped of the AI. If you want the AI
included, scan Transmit With Identifiers. Default = Off.
* Off
Transmit Without Identifiers
Transmit With Identifiers
GS1-128 Redundancy
If you are encountering errors when reading GS1-128 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the GS1-128 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
GS1-128 Redundancy
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GS1-128 Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
Telepen
<Default All Telepen Settings>
Telepen On/Off
On
* Off
Telepen Output
Using AIM Telepen Output, the scanner reads symbols with start/stop pattern 1 and decodes them as standard full ASCII
(start/stop pattern 1). When Original Telepen Output is selected, the scanner reads symbols with start/stop pattern 1 and
decodes them as compressed numeric with optional full ASCII (start/stop pattern 2). Default = AIM Telepen Output.
* AIM Telepen Output
Original Telepen Output
Telepen Redundancy
If you are encountering errors when reading Telepen bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Telepen Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
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Telepen Redundancy
Telepen Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
UPC-A
<Default All UPC-A Settings>
UPC-A On/Off
* On
Off
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UPC-A Number System and Check Digit
UPC-A sample showing the number system and check digit:
Number
Check
Digit
UPC-A Check Digit
This selection allows you to specify whether the check digit should be transmitted at the end of the scanned data or not.
Default = On.
* On
Off
UPC-A Number System
The numeric system digit of a U.P.C. symbol is normally transmitted at the beginning of the scanned data, but the unit can
be programmed so it will not transmit it. Default = On.
* On
Off
UPC-A Addenda
This selection adds 2 or 5 digits to the end of all scanned UPC-A data. Default = Off for both 2 Digit and 5 Digit Addenda.
2 Digit Addenda On
* 2 Digit Addenda Off
5 Digit Addenda On
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* 5 Digit Addenda Off
UPC-A Addenda Required
When Required is scanned, the scanner will only read UPC-A bar codes that have addenda. You must then turn on a 2 or
Required
* Not Required
Addenda Timeout
You can set a time during which the scanner looks for an addenda. If an addenda is not found within this time period, the
data can be either transmitted or discarded, based on the setting you are using for UPC-A Addenda Required (see page 7-
27). Set the length (in milliseconds) for this timeout by scanning the bar code below, then setting the timeout (from 0-65535
Note: The Addenda Timeout setting is applied to all addenda and coupon code searches.
Addenda Timeout
UPC-A Addenda Separator
When this feature is on, there is a space between the data from the bar code and the data from the addenda. When turned
off, there is no space. Default = Off.
On
* Off
UPC-A Redundancy
If you are encountering errors when reading UPC-A bar codes, you may want to adjust the redundancy count. Redundancy
adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors. Note that
the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan the UPC-A
Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart inside the back
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UPC-A Redundancy
UPC-A/EAN-13 with Extended Coupon Code
Use the following codes to enable or disable UPC-A and EAN-13 with Extended Coupon Code. When left on the default setting
(Off), the scanner treats Coupon Codes and Extended Coupon Codes as single bar codes.
If you scan the Allow Concatenation code, when the scanner sees the coupon code and the extended coupon code in a single
scan, it transmits both as separate symbologies. Otherwise, it transmits the first coupon code it reads.
If you scan the Require Concatenation code, the scanner must see and read the coupon code and extended coupon code in a
single read to transmit the data. No data is output unless both codes are read. Default = Off.
* Off
Allow Concatenation
Require Concatenation
UPC-A Number System 4 Addenda Required
This setting programs the scanner to require a coupon code only on UPC-A bar codes that begin with a “4.” The following
settings can be programmed:
Require Coupon Code: All UPC-A bar codes that begin with a “4” must have a coupon code. The UPC-A bar code with
the coupon code is then transmitted as a single, concatenated bar code. If a coupon code is not found within the Addenda
Timeout period, the UPC-A bar code is discarded.
Don’t Require Coupon Code: If you have selected Require Coupon Code, and you want to disable this feature, scan
Don’t Require Coupon Code. UPC-A bar codes are transmitted, depending on the setting you are using for UPC-A/EAN-
Default = Don’t Require Coupon Code.
* Don’t Require Coupon Code
Require Coupon Code
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UPC-A Number System 5 Addenda Required
This setting programs the scanner to require any combination of a coupon code, a 2 digit addenda, or a 5 digit addenda on
UPC-A bar codes that begin with a “5.” The following settings can be programmed:
Require Coupon Code/Addenda: All UPC-A bar codes that begin with a “5” must have a coupon code, a 2 digit addenda,
a 5 digit addenda, or a combination of these addenda. The UPC-A bar code with the coupon code and/or addenda is then
transmitted as a single, concatenated bar code. If a coupon code and/or required addenda is not found within the Addenda
Timeout period, the UPC-A bar code is discarded.
Don’t Require Coupon Code/Addenda: If you have selected Require Coupon Code/Addenda, and you want to disable
this feature, scan Don’t Require Coupon Code/Addenda. UPC-A bar codes are transmitted, depending on the setting
Default = Don’t Require Coupon Code/Addenda.
* Don’t Require Coupon Code/
Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
Require Coupon Code
Require Coupon Code or 2 Digit
Addenda
Require Coupon Code or 5 Digit
Addenda
Require Coupon Code, 2 Digit
Addenda, or 5 Digit Addenda
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Addenda Timeout
You can set a time during which the scanner looks for a coupon code. If a coupon code is not found within this time period,
the data can be either transmitted or discarded, based on the setting you are using for UPC-A/EAN-13 with Extended
Coupon Code or UPC-A Number System 4 Addenda Required. Set the length (in milliseconds) for this timeout by scanning
the bar code below, then setting the timeout (from 0-65535 milliseconds) by scanning digits from the Programming Chart,
Note: The Addenda Timeout setting is applied to all addenda and coupon code searches.
Addenda Timeout
UPC-E0
<Default All UPC-E0 Settings>
UPC-E0 On/Off
Most U.P.C. bar codes lead with the 0 number system. To read these codes, use the UPC-E0 On selection. If you need to
* UPC-E0 On
UPC-E0 Off
UPC-E0 Expand
UPC-E Expand expands the UPC-E code to the 12 digit, UPC-A format. Default = Off.
On
* Off
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UPC-E0 Number System
The numeric system digit of a UPC-A symbol is normally transmitted at the beginning of scanned data. When using UPC-
E Expand, the unit can be programmed so it will not transmit it. Default = On.
* On
Off
UPC-E0 Number System and Check Digit
UPC-E0 sample showing the number system and check digit:
Number
Check
Digit
UPC-E0 Check Digit
Check Digit specifies whether the check digit should be transmitted at the end of the scanned data or not. Default =
Off.
On
* Off
UPC-E0 Leading Zero
This feature allows the transmission of a leading zero (0) at the beginning of scanned data. To prevent transmission, scan
Off. Default = Off.
On
* Off
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UPC-E0 Addenda
This selection adds 2 or 5 digits to the end of all scanned UPC-E data. Default = Off for both 2 Digit and 5 Digit Addenda.
2 Digit Addenda On
* 2 Digit Addenda Off
5 Digit Addenda On
* 5 Digit Addenda Off
UPC-E0 Addenda Required
When Required is scanned, the scanner will only read UPC-E bar codes that have addenda. Default = Not Required.
Required
* Not Required
Addenda Timeout
You can set a time during which the scanner looks for an addenda. If an addenda is not found within this time period, the
data can be either transmitted or discarded, based on the setting you are using for UPC-E0 Addenda Required (page 7-32).
Set the length (in milliseconds) for this timeout by scanning the bar code below, then setting the timeout (from 0-65535 mil-
Note: The Addenda Timeout setting is applied to all addenda and coupon code searches.
Addenda Timeout
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UPC-E0 Addenda Separator
When this feature is On, there is a space between the data from the bar code and the data from the addenda. When turned
Off, there is no space. Default = Off.
On
* Off
UPC-E0 Redundancy
If you are encountering errors when reading UPC-E0 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the UPC-E0 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
UPC-E0 Redundancy
EAN/JAN-13
<Default All EAN/JAN Settings>
EAN/JAN-13 On/Off
* On
Off
Convert UPC-A to EAN-13
When UPC-A Converted to EAN-13 is selected, UPC-A bar codes are converted to 13 digit EAN-13 codes by adding a
zero to the front. When Do not Convert UPC-A is selected, UPC-A codes are read as UPC-A.
UPC-A Converted to EAN-13
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* Do not Convert UPC-A
EAN/JAN-13 Check Digit
This selection allows you to specify whether the check digit should be transmitted at the end of the scanned data or not.
Default = On.
* On
Off
EAN/JAN-13 Addenda
This selection adds 2 or 5 digits to the end of all scanned EAN/JAN-13 data. Default = Off for both 2 Digit and 5 Digit
Addenda.
2 Digit Addenda On
* 2 Digit Addenda Off
5 Digit Addenda On
* 5 Digit Addenda Off
EAN/JAN-13 Addenda Required
When Required is scanned, the scanner will only read EAN/JAN-13 bar codes that have addenda. Default = Not Required.
Required
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* Not Required
EAN-13 Beginning with 2 Addenda Required
This setting programs the scanner to require a 2 digit addenda only on EAN-13 bar codes that begin with a “2.” The follow-
ing settings can be programmed:
Require 2 Digit Addenda: All EAN-13 bar codes that begin with a “2” must have a 2 digit addendum. The EAN-13 bar
code with the 2 digit addendum is then transmitted as a single, concatenated bar code. If a 2 digit addendum is not found
Note: if you are using EAN-13 Beginning with 290 Addenda Required (page 7-35), that setting will take precedence over
this one.
Don’t Require 2 Digit Addenda: If you have selected Require 2 Digit Addenda, and you want to disable this feature,
scan Don’t Require 2 Digit Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/
Default = Don’t Require 2 Digit Addenda.
* Don’t Require 2 Digit
Addenda
Require 2 Digit Addenda
EAN-13 Beginning with 290 Addenda Required
This setting programs the scanner to require a 5 digit addenda only on EAN-13 bar codes that begin with “290.” The follow-
ing settings can be programmed:
Require 5 Digit Addenda: All EAN-13 bar codes that begin with “290” must have a 5 digit addendum. The EAN-13 bar
code with the 5 digit addendum is then transmitted as a single, concatenated bar code. If a 5 digit addendum is not found
Note: if you are using EAN-13 Beginning with 2 Addenda Required (page 7-35), this setting will take precedence.
Don’t Require 5 Digit Addenda: If you have selected Require 5 Digit Addenda, and you want to disable this feature,
scan Don’t Require 5 Digit Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/
Default = Don’t Require 5 Digit Addenda.
* Don’t Require 5 Digit
Addenda
Require 5 Digit Addenda
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EAN-13 Beginning with 378/379 Addenda Required
This setting programs the scanner to require any combination of a 2 digit addenda or a 5 digit addenda on EAN-13 bar
codes that begin with a “378” or “379.” The following settings can be programmed:
Require Addenda: All EAN-13 bar codes that begin with a “378” or “379” must have a 2 digit addenda, a 5 digit addenda,
or a combination of these addenda. The EAN-13 bar code with the addenda is then transmitted as a single, concatenated
bar code. If the required addenda is not found within the Addenda Timeout period, the EAN-13 bar code is discarded.
Don’t Require Addenda: If you have selected Require Addenda, and you want to disable this feature, scan Don’t
Require Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/JAN-13 Addenda
Default = Don’t Require Addenda.
* Don’t Require Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
EAN-13 Beginning with 414/419 Addenda Required
This setting programs the scanner to require any combination of a 2 digit addenda or a 5 digit addenda on EAN-13 bar
codes that begin with a “414” or “419.” The following settings can be programmed:
Require Addenda: All EAN-13 bar codes that begin with a “414” or “419” must have a 2 digit addenda, a 5 digit addenda,
or a combination of these addenda. The EAN-13 bar code with the addenda is then transmitted as a single, concatenated
bar code. If the required addenda is not found within the Addenda Timeout period, the EAN-13 bar code is discarded.
Don’t Require Addenda: If you have selected Require Addenda, and you want to disable this feature, scan Don’t
Require Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/JAN-13 Addenda
Default = Don’t Require Addenda.
* Don’t Require Addenda
Require 2 Digit Addenda
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Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
EAN-13 Beginning with 434/439 Addenda Required
This setting programs the scanner to require any combination of a 2 digit addenda or a 5 digit addenda on EAN-13 bar
codes that begin with a “434” or “439.” The following settings can be programmed:
Require Addenda: All EAN-13 bar codes that begin with a “434” or “439” must have a 2 digit addenda, a 5 digit addenda,
or a combination of these addenda. The EAN-13 bar code with the addenda is then transmitted as a single, concatenated
bar code. If the required addenda is not found within the Addenda Timeout period, the EAN-13 bar code is discarded.
Don’t Require Addenda: If you have selected Require Addenda, and you want to disable this feature, scan Don’t
Require Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/JAN-13 Addenda
Default = Don’t Require Addenda.
* Don’t Require Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
EAN-13 Beginning with 977 Addenda Required
This setting programs the scanner to require a 2 digit addenda only on EAN-13 bar codes that begin with “977.” The follow-
ing settings can be programmed:
Require 2 Digit Addenda: All EAN-13 bar codes that begin with “977” must have a 2 digit addendum. The EAN-13 bar
code with the 2 digit addendum is then transmitted as a single, concatenated bar code. If a 2 digit addendum is not found
Don’t Require 2 Digit Addenda: If you have selected Require 2 Digit Addenda, and you want to disable this feature,
scan Don’t Require 2 Digit Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/
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Default = Don’t Require 2 Digit Addenda.
* Don’t Require 2 Digit Addenda
Require 2 Digit Addenda
EAN-13 Beginning with 978 Addenda Required
These settings program the scanner to require a 5 digit addenda only on EAN-13 bar codes that begin with “978.” The fol-
lowing settings can be programmed:
Require 5 Digit Addenda: All EAN-13 bar codes that begin with “978” must have a 5 digit addendum. The EAN-13 bar
code with the 5 digit addendum is then transmitted as a single, concatenated bar code. If a 5 digit addendum is not found
Don’t Require 5 Digit Addenda: If you have selected Require 5 Digit Addenda, and you want to disable this feature,
scan Don’t Require 5 Digit Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/
Default = Don’t Require 5 Digit Addenda.
* Don’t Require 5 Digit Addenda
Require 5 Digit Addenda
EAN-13 Beginning with 979 Addenda Required
These settings program the scanner to require a 5 digit addenda only on EAN-13 bar codes that begin with “979.” The fol-
lowing settings can be programmed:
Require 5 Digit Addenda: All EAN-13 bar codes that begin with “979” must have a 5 digit addendum. The EAN-13 bar
code with the 5 digit addendum is then transmitted as a single, concatenated bar code. If a 5 digit addendum is not found
Don’t Require 5 Digit Addenda: If you have selected Require 5 Digit Addenda, and you want to disable this feature,
scan Don’t Require 5 Digit Addenda. EAN-13 bar codes are transmitted, depending on the setting you are using for EAN/
Default = Don’t Require 5 Digit Addenda.
* Don’t Require 5 Digit Addenda
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Require 5 Digit Addenda
Addenda Timeout
You can set a time during which the scanner looks for an addenda. If an addenda is not found within this time period, the
data can be either transmitted or discarded, based on the setting you are using for EAN/JAN-13 Addenda Required. Set
the length (in milliseconds) for this timeout by scanning the bar code below, then setting the timeout (from 0-65535 millisec-
Note: The Addenda Timeout setting is applied to all addenda and coupon code searches.
Addenda Timeout
EAN/JAN-13 Addenda Separator
When this feature is On, there is a space between the data from the bar code and the data from the addenda. When turned
Off, there is no space. Default = Off.
On
* Off
Note: If you want to enable or disable EAN13 with Extended Coupon Code, refer to UPC-A/EAN-13 with Extended Coupon
EAN/JAN-13 Redundancy
If you are encountering errors when reading EAN/JAN-13 bar codes, you may want to adjust the redundancy count.
Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of
errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy,
scan the EAN/JAN-13 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the
EAN/JAN-13 Redundancy
ISBN Translate
When On is scanned, EAN-13 Bookland symbols are translated into their equivalent ISBN number format. Default = Off.
On
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* Off
Convert ISBN to 13-Digit
When translating EAN-13 codes to the ISBN format, you can convert the bar code to a 13 digit format by scanning the
Convert to 13-Digit On bar code below. Default = Convert to 13-Digit Off.
Convert to 13-Digit On
*Convert to 13-Digit Off
ISBN Reformat
In normal use, the first two or three digits of an EAN-13 bar code identify the country of origin. The country prefixes are
978 and 979. To reformat ISBN codes so the country prefix is dropped out, scan the Reformat On bar code below.
Default = Reformat Off.
Reformat On
*Reformat Off
ISSN Translate
When On is scanned, EAN-13 977 Bookland symbols are translated into their equivalent 8-digit ISSN number format. For
example, 9770123456787 will be transmitted as 01234560. Default = Off.
On
* Off
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ISSN Reformat
When Reformat On is scanned, EAN-13 977 Bookland symbols are translated into their equivalent 8-digit ISSN num-
ber format, with hyphens added to the output. For example, 9770123456787 will be transmitted as 0123-456-0. (You
Reformat On
* Reformat Off
EAN/JAN-8
<Default All EAN/JAN-8 Settings>
EAN/JAN-8 On/Off
* On
Off
EAN/JAN-8 Check Digit
This selection allows you to specify whether the check digit should be transmitted at the end of the scanned data or not.
Default = On.
* On
Off
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EAN/JAN-8 Addenda
This selection adds 2 or 5 digits to the end of all scanned EAN/JAN-8 data. Default = Off for both 2 Digit and 5 Digit
Addenda.
2 Digit Addenda On
* 2 Digit Addenda Off
5 Digit Addenda On
* 5 Digit Addenda Off
EAN/JAN-8 Addenda Required
When Required is scanned, the scanner will only read EAN/JAN-8 bar codes that have addenda. Default = Not Required.
Required
* Not Required
Addenda Timeout
You can set a time during which the scanner looks for an addenda. If an addenda is not found within this time period, the
data can be either transmitted or discarded, based on the setting you are using for EAN/JAN-8 Addenda Required. Set the
length (in milliseconds) for this timeout by scanning the bar code below, then setting the timeout (from 0-65535 millisec-
Note: The Addenda Timeout setting is applied to all addenda and coupon code searches.
Addenda Timeout
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EAN/JAN-8 Addenda Separator
When this feature is On, there is a space between the data from the bar code and the data from the addenda. When turned
Off, there is no space. Default = Off.
On
* Off
EAN/JAN-8 Redundancy
If you are encountering errors when reading EAN/JAN-8 bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the ba code. To adjust the redundancy, scan the
EAN/JAN-8 Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
EAN/JAN-8 Redundancy
MSI
<Default All MSI Settings>
MSI On/Off
On
* Off
MSI Check Character
Different types of check characters are used with MSI bar codes. You can program the scanner to read MSI bar codes with
Type 10 check characters. Default = Validate Type 10, but Don’t Transmit.
When Check Character is set to Validate Type 10/11 and Transmit, the scanner will only read MSI bar codes printed with
the specified type check character(s), and will transmit the character(s) at the end of the scanned data.
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When Check Character is set to Validate Type 10/11, but Don’t Transmit, the unit will only read MSI bar codes printed
with the specified type check character(s), but will not transmit the check character(s) with the scanned data.
* Validate Type 10, but Don’t
Transmit
Validate Type 10 and Transmit
Validate 2 Type 10 Characters,
but Don’t Transmit
Validate 2 Type 10 Characters
and Transmit
Validate Type 10 then Type 11
Character, but Don’t Transmit
Validate Type 10 then
Type 11 Character and Transmit
Disable MSI Check Characters
MSI Redundancy
If you are encountering errors when reading MSI bar codes, you may want to adjust the redundancy count. Redundancy
adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors. Note that
the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan the MSI
Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart inside the back
MSI Redundancy
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MSI Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
Plessey Code
< Default All Plessey Code Settings >
Plessey Code On/Off
On
* Off
Plessey Check Character
No Check Character indicates that the scanner reads and transmits bar code data with or without a check character.
When Check Character is set to Validate, but Don’t Transmit, the unit only reads Plessey bar codes printed with a check
character, but will not transmit the check character with the scanned data.
When Check Character is set to Validate and Transmit, the scanner only reads Plessey bar codes printed with a check
character, and will transmit this character at the end of the scanned data. Default = No Check Character.
* No Check Character
Validate, but Don’t Transmit
Validate and Transmit
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Plessey Redundancy
If you are encountering errors when reading Plessey bar codes, you may want to adjust the redundancy count. Redun-
dancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number of errors.
Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redundancy, scan
the Plessey Redundancy bar code below, then scan a redundancy count between 0 and 10 on the Programming Chart
Plessey Redundancy
Plessey Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
GS1 DataBar Omnidirectional
< Default All GS1 DataBar Omnidirectional Settings >
GS1 DataBar Omnidirectional On/Off
* On
Off
GS1 DataBar Omnidirectional Redundancy
If you are encountering errors when reading GS1 DataBar Omnidirectional bar codes, you may want to adjust the redun-
dancy count. Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the
number of errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the
redundancy, scan the GS1 DataBar Omnidirectional Redundancy bar code below, then scan a redundancy count
between 0 and 10 on the Programming Chart inside the back cover of this manual. Then scan the Save bar code. Default
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= 0.
GS1 DataBar Omnidirectional
Redundancy
GS1 DataBar Limited
< Default All GS1 DataBar Limited Settings >
GS1 DataBar Limited On/Off
* On
Off
GS1 DataBar Limited Redundancy
If you are encountering errors when reading GS1 DataBar Limited bar codes, you may want to adjust the redundancy
count. Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number
of errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redun-
dancy, scan the GS1 DataBar Limited Redundancy bar code below, then scan a redundancy count between 0 and 10 on
the Programming Chart inside the back cover of this manual. Then scan the Save bar code. Default = 0.
GS1 DataBar Limited
Redundancy
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GS1 DataBar Expanded
< Default All GS1 DataBar Expanded Settings >
GS1 DataBar Expanded On/Off
* On
Off
GS1 DataBar Expanded Redundancy
If you are encountering errors when reading GS1 DataBar Expanded bar codes, you may want to adjust the redundancy
count. Redundancy adjusts the number of times a bar code is decoded before transmission, which may reduce the number
of errors. Note that the higher the redundancy count, the longer it will take to decode the bar code. To adjust the redun-
dancy, scan the GS1 DataBar Expanded Redundancy bar code below, then scan a redundancy count between 0 and 10
on the Programming Chart inside the back cover of this manual. Then scan the Save bar code. Default = 0.
GS1 DataBar Expanded
Redundancy
GS1 DataBar Expanded Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for additional
information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
Trioptic Code
Trioptic Code is used for labeling magnetic storage media.
On
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* Off
GS1 Emulation
The scanner can automatically format the output from any GS1 data carrier to emulate what would be encoded in an equivalent
GS1-128 or GS1 DataBar symbol. GS1 data carriers include UPC-A and UPC-E, EAN-13 and EAN-8, ITF-14, GS1-128, and
GS1-128 DataBar and GS1 Composites. (Any application that accepts GS1 data can be simplified since it only needs to recog-
nize one data carrier type.)
If GS1-128 Emulation is scanned, all retail codes (U.P.C., UPC-E, EAN8, EAN13) are expanded out to 16 digits. If the AIM ID
If GS1 DataBar Emulation is scanned, all retail codes (U.P.C., UPC-E, EAN8, EAN13) are expanded out to 16 digits. If the AIM
If GS1 Code Expansion Off is scanned, retail code expansion is disabled, and UPC-E expansion is controlled by the UPC-E0
Expand (page 7-30) setting. If the AIM ID is enabled, the value will be the GS1-128 AIM ID, ]C1 (see Symbology Charts on
If EAN8 to EAN13 Conversion is scanned, all EAN8 bar codes are converted to EAN13 format.
Default = GS1 Emulation Off.
GS1-128 Emulation
GS1 DataBar Emulation
GS1 Code Expansion Off
EAN8 to EAN13 Conversion
* GS1 Emulation Off
Postal Codes
The following lists linear postal codes. Any combination of linear postal code selections can be active at a time.
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China Post (Hong Kong 2 of 5)
<Default All China Post (Hong Kong 2 of 5) Settings>
China Post (Hong Kong 2 of 5) On/Off
On
* Off
China Post (Hong Kong 2 of 5) Redundancy
If you are encountering errors when reading China Post (Hong Kong 2 of 5) bar codes, you may want to adjust the
redundancy count. Redundancy adjusts the number of times a bar code is decoded before transmission, which may
reduce the number of errors. Note that the higher the redundancy count, the longer it will take to decode the bar code.
To adjust the redundancy, scan the China Post (Hong Kong 2 of 5) Redundancy bar code below, then scan a redun-
dancy count between 0 and 10 on the Programming Chart inside the back cover of this manual. Then scan the Save
bar code. Default = 0.
China Post (Hong Kong 2 of 5)
Redundancy
China Post (Hong Kong 2 of 5) Message Length
Scan the bar codes below to change the message length. Refer to Message Length Description (page 7-1) for addi-
tional information. Minimum and Maximum lengths = 1-80. Minimum Default = 3, Maximum Default = 80.
Minimum Message Length
Maximum Message Length
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8
Interface Keys
Keyboard Function Relationships
The following Keyboard Function Code, Hex/ASCII Value, and Full ASCII “CTRL”+ relationships apply to all terminals that can
Function Code
HEX/ASCII Value
Full ASCII “CTRL” +
NUL
SOH
STX
ETX
EOT
ENQ
ACK
BEL
BS
00
01
02
03
04
05
06
07
08
09
0A
0B
0C
0D
0E
0F
10
11
12
13
14
15
16
17
18
19
1A
1B
1C
1D
1E
1F
@
A
B
C
D
E
F
G
H
I
HT
LF
J
VT
K
L
FF
CR
M
N
O
P
Q
R
S
T
U
V
W
X
Y
Z
[
SO
SI
DLE
DC1
DC2
DC3
DC4
NAK
SYN
ETB
CAN
EM
SUB
ESC
FS
\
GS
]
RS
^
US
_
The last five characters in the Full ASCII “CTRL”+ column ( [ \ ] 6 - ), apply to US only. The following chart indicates the equiva-
lents of these five characters for different countries.
Note: Not all countries may be supported by your device.
Country
Codes
United States
Belgium
[
\
]
6
6
6
6
6
6
6
-
-
[
<
<
8
Ã
\
]
Scandinavia
France
8
^
9
$
+
+
. .
-
=
-
Germany
Italy
-
Switzerland
<
-
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Country
Codes
United Kingdom
Denmark
Norway
[
¢
\
]
6
6
6
6
-
-
-
-
8
8
[
9
9
]
\
Spain
\
Supported Interface Keys
IBM AT/XT and
PS/2
Compatibles,
WYSE PC/AT
Supported Keys
Apple Mac/iMac
Supported Keys
ASCII
HEX
NUL
SOH
STX
ETX
EOT
ENQ
ACK
BEL
BS
HT
LF
VT
FF
00
01
02
03
04
05
06
07
08
09
0A
0B
0C
0D
0E
0F
10
11
12
13
14
15
16
17
18
19
1A
1B
1C
1D
1E
1F
7F
Reserved
Enter (KP)
Cap Lock
ALT make
ALT break
CTRL make
CTRL break
CR/Enter
Reserved
Tab
Reserved
Tab
Delete
CR/Enter
Insert
Escape
F11
Home
Print
Back Space
Back Tab
F12
Reserved
Enter/Numpad Enter
CAPS
ALT make
ALT break
CNTRL make
CNTRL break
RETURN
APPLE make
TAB
APPLE break
TAB
Del
RETURN
Ins Help
ESC
F11
Home
Prnt Scrn
BACKSPACE
LSHIFT TAB
F12
F1
F2
F3
F4
CR
SO
SI
DLE
DC1
DC2
DC3
DC4
NAK
SYN
ETB
CAN
EM
SUB
ESC
FS
GS
RS
F1
F2
F3
F4
F5
F6
F7
F8
F5
F6
F7
F8
F9
F10
F9
F10
BACKSPACE
US
DEL
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9
Utilities
To Add a Test Code I.D. Prefix to All Symbologies
This selection allows you to turn on transmission of a Code I.D. before the decoded symbology. (See the Symbology Charts,
beginning on page A-1) for the single character code that identifies each symbology.) This action first clears all current prefixes,
then programs a Code I.D. prefix for all symbologies. This is a temporary setting that will be removed when the unit is power
cycled.
Add Code I.D. Prefix to
All Symbologies (Temporary)
Show Software Revision
Scan the bar code below to output the current software revision, unit serial number, and other product information for both the
scanner and base.
Show Revision
Show Data Format
Scan the bar code below to show current data format settings.
DFMBK3?.
Data Format Settings
Test Menu
When you scan the Test Menu On code, then scan a programming code in this manual, the scanner displays the content of a
programming code. The programming function will still occur, but in addition, the content of that programming code is output to
the terminal.
Note: This feature should not be used during normal scanner operation.
On
* Off
EZConfig-Scanning Introduction
EZConfig-Scanning provides a wide range of PC-based programming functions that can be performed on a scanner connected
to your PC's COM port. EZConfig-Scanning allows you to download upgrades to the scanner's firmware, change programmed
parameters, and create and print programming bar codes. Using EZConfig-Scanning, you can even save/open the program-
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ming parameters for a scanner. This saved file can be e-mailed or, if required, you can create a single bar code that contains all
the customized programming parameters and mail or fax that bar code to any location. Users in other locations can scan the
bar code to load in the customized programming.
To communicate with a scanner, EZConfig-Scanning requires that the PC have at least one available serial communication port,
or a serial port emulation using a physical USB port. If you are using the serial port and RS232 cable, an external power supply
is required. When using a USB serial port emulation, only a USB cable is required.
EZConfig-Scanning Operations
The EZConfig-Scanning software performs the following operations:
Scan Data
Scan Data allows you to scan bar codes and display the bar code data in a window. Scan Data lets you send serial
commands to the scanner and receive scanner response that can be seen in the Scan Data window. The data dis-
played in the Scan Data window can either be saved in a file or printed.
Configure
Configure displays the programming and configuration data of the scanner. The scanner's programming and configu-
ration data is grouped into different categories. Each category is displayed as a tree item under the “Configure” tree
node in the application explorer. When one of these tree nodes is clicked, the right-hand side is loaded with the
parameters' form belonging to that particular category. The Configure tree option has all the programming and config-
uration parameters specified for a scanner. You can set or modify these parameters as required. You can later write
the modified settings to the scanner, or save them to a dcf file.
Installing EZConfig-Scanning from the Web
Note: EZConfig-Scanning requires .NET software. If .NET is not installed on your PC, you will be prompted to install it
during the EZConfig-Scanning installation.
2. Click on the Resources tab. Select Software.
3. Click on the dropdown for Select Product Number. Click on your product number.
4. Click on the listing for EZConfig-Scanning.
5. When prompted, select Save File, and save the files to the c:\windows\temp directory.
6. Once you have finished downloading the file, exit the web site.
7. Using Explorer, go to the c:\windows\temp file.
8. Double click on the Setup.exe file. Follow the screen prompts to install the EZConfig-Scanning program.
9. If you’ve selected the defaults during installation, you can click on Start Menu-All Programs-Honeywell-EZConfig-
Scanning.
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Resetting the Factory Defaults
This selection erases all your settings and resets the scanner to the original factory defaults.
!
If you aren’t sure what programming options are in your scanner, or you’ve changed some options and want to restore the scan-
ner to factory default settings, first scan the Remove Custom Defaults bar code, then scan Activate Defaults. This resets the
scanner to the factory default settings.
Remove Custom Defaults
Activate Defaults
Note: If using a cordless system, scanning the Activate Defaults bar code also causes both the scanner and the base or Access
Point to perform a reset and become unlinked. The scanner must be placed in its base to re-establish the link before any
setup codes are entered. If using an Access Point, the linking bar code must be scanned. See Cordless System
The Serial Programming Commands, beginning on page 10-1 list the factory default settings for each of the commands (indi-
cated by an asterisk (*) on the programming pages).
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10
Serial Programming Commands
The serial programming commands can be used in place of the programming bar codes. Both the serial commands and the
programming bar codes will program the scanner. For complete descriptions and examples of each serial programming com-
mand, refer to the corresponding programming bar code in this manual.
The device must be set to an RS232 interface (see page 2-1). The following commands can be sent via a PC COM port using
terminal emulation software.
Conventions
The following conventions are used for menu and query command descriptions:
parameterA label representing the actual value you should send as part of a command.
[option]An optional part of a command.
{Data}Alternatives in a command.
boldNames of menus, menu commands, buttons, dialog boxes, and windows that appear on the screen.
Menu Command Syntax
Menu commands have the following syntax (spaces have been used for clarity only):
Prefix [:Name:] Tag SubTag {Data} [, SubTag {Data}] [; Tag SubTag {Data}] […] Storage
PrefixThree ASCII characters: SYN M CR (ASCII 22,77,13).
:Name:To send information to the scanner (with the base connected to host), use :Voyager: The default factory setting for a
Voyager scanner is Voyager scanner. If the name is not known, a wildcard (*) can be used :*:.
Note: Since the base stores all work group settings and transfers to them to scanner once they are linked, changes are typically
done to the base and not to the scanner.
Tag A 3 character case-insensitive field that identifies the desired menu command group. For example, all RS232 configuration
settings are identified with a Tag of 232.
SubTagA 3 character case-insensitive field that identifies the desired menu command within the tag group. For example, the
SubTag for the RS232 baud rate is BAD.
DataThe new value for a menu setting, identified by the Tag and SubTag.
StorageA single character that specifies the storage table to which the command is applied. An exclamation point (!) performs
the command’s operation on the device’s volatile menu configuration table. A period (.) performs the command’s operation
on the device’s non-volatile menu configuration table. Use the non-volatile table only for semi-permanent changes you want
saved through a power cycle.
Query Commands
Several special characters can be used to query the device about its settings.
^
?
*
What is the default value for the setting(s).
What is the device’s current value for the setting(s).
What is the range of possible values for the setting(s). (The device’s response uses a dash (-) to indicate a continuous
range of values. A pipe (|) separates items in a list of non-continuous values.)
:Name: Field Usage (Optional)
This command returns the query information from the scanner.
Tag Field Usage
When a query is used in place of a Tag field, the query applies to the entire set of commands available for the particular
storage table indicated by the Storage field of the command. In this case, the SubTag and Data fields should not be used
because they are ignored by the device.
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SubTag Field Usage
When a query is used in place of a SubTag field, the query applies only to the subset of commands available that match the
Tag field. In this case, the Data field should not be used because it is ignored by the device.
Data Field Usage
When a query is used in place of the Data field, the query applies only to the specific command identified by the Tag and
SubTag fields.
Concatenation of Multiple Commands
Multiple commands can be issued within one Prefix/Storage sequence. Only the Tag, SubTag, and Data fields must be
repeated for each command in the sequence. If additional commands are to be applied to the same Tag, then the new
command sequence is separated with a comma (,) and only the SubTag and Data fields of the additional command are
issued. If the additional command requires a different Tag field, the command is separated from previous commands by a
semicolon (;).
Responses
The device responds to serial commands with one of three responses:
ACKIndicates a good command which has been processed.
ENQIndicates an invalid Tag or SubTag command.
NAKIndicates the command was good, but the Data field entry was out of the allowable range for this Tag and SubTag
combination, e.g., an entry for a minimum message length of 100 when the field will only accept 2 characters.
When responding, the device echoes back the command sequence with the status character inserted directly before each
of the punctuation marks (the period, exclamation point, comma, or semicolon) in the command.
Examples of Query Commands
In the following examples, a bracketed notation [ ] depicts a non-displayable response.
Example: What is the range of possible values for Codabar Coding Enable?
Enter:
cbrena*.
Response: CBRENA0-1[ACK]
This response indicates that Codabar Coding Enable (CBRENA) has a range of values from 0 to 1 (off and on).
Example: What is the default value for Codabar Coding Enable?
Enter:
cbrena^.
Response: CBRENA1[ACK]
This response indicates that the default setting for Codabar Coding Enable (CBRENA) is 1, or on.
Example: What is the device’s current setting for Codabar Coding Enable?
Enter:
cbrena?.
Response: CBRENA1[ACK]
This response indicates that the device’s Codabar Coding Enable (CBRENA) is set to 1, or on.
Example: What are the device’s settings for all Codabar selections?
Enter:
cbr?.
Response: CBRENA1[ACK],
SSX0[ACK],
CK20[ACK],
CCT1[ACK],
MIN2[ACK],
MAX60[ACK],
DFT[ACK].
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This response indicates that the device’s Codabar Coding Enable (CBRENA) is set to 1, or on;
the Start/Stop Character (SSX) is set to 0, or Don’t Transmit;
the Check Character (CK2) is set to 0, or Not Required;
concatenation (CCT) is set to 1, or Enabled;
the Minimum Message Length (MIN) is set to 2 characters;
the Maximum Message Length (MAX) is set to 60 characters;
and the Default setting (DFT) has no value.
Serial Trigger Commands
You can activate and deactivate the scanner with serial trigger commands. The button is activated and deactivated by sending
the following commands:
Activate: SYN T CR
Deactivate: SYN U CR
The scanner scans until a bar code has been read or until the deactivate command is sent. The scanner can also be set to turn
Read Time-Out
Use this selection to set a time-out (in milliseconds) of the scanner’s button when using serial commands to trigger the
scanner. Once the scanner has timed out, you can activate the scanner either by pressing the button or using a serial trig-
ger command. After scanning the Read Time-Out bar code, set the time-out duration (from 0-300,000 milliseconds) by
scanning digits on the Programming Chart inside the back cover, then scanning Save. Default = 30,000 ms.
Read Time-Out
Resetting the Standard Product Defaults
If you aren’t sure what programming options are in your scanner, or you’ve changed some options and want the factory default
settings restored, scan the Standard Product Default Settings bar code below.
Standard Product Default Settings
The charts on the following pages list the factory default settings for each of the commands (indicated by an asterisk (*) on the
programming pages).
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Menu Commands
Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Product Default Settings
Setting Custom Defaults
Set Custom Defaults
MNUCDF
DEFALT
DEFALT
Save Custom Defaults
Activate Custom Defaults
Resetting the Custom Defaults
Programming the Interface
Plug and Play Codes
Keyboard Wedge:
PAP_AT
IBM PC AT and Compatibles with CR suffix
IBM PS2 Keyboard
PAPPS2
PAP232
PAPP5B
PAP9B1
PAPP17
PAP9B2
PAPOPS
PAPSPH
PAPSPT
REMIFC1
REMIFC0
PAP124
PAP125
PAP134
PAP131
USBFTO
RS232 Serial Port
Plug and Play Codes:
RS485
IBM Port 5B Interface
IBM Port 9B HHBCR-1 Interface
IBM Port 17 Interface
IBM Port 9B HHBCR-2 Interface
OPOS Mode
OPOS Mode
Plug and Play Codes: IBM SurePos
USB IBM SurePos Handheld
USB IBM SurePos Tabletop
* Enable Secondary Interface
Disable Secondary Interface
USB Keyboard (PC)
IBM Secondary Interface
Plug and Play Codes: USB
USB Keyboard (Mac)
USB Japanese Keyboard (PC)
USB HID
HID Fallback Mode
HID Fallback Mode (Range 0-60 *5
minutes
USB Serial Commands
USB Serial Emulation for Windows XP,
Windows Server 2003, and later
PAP130
USB Serial Emulation for Windows 2000
CTS/RTS Emulation On
CTS/RTS Emulation Off*
ACK/NAK Mode On
REMIFCO;PAP130
USBCTS1
USBCTS0
USBACK1
ACK/NAK Mode Off*
USBACK0
Communication Timeout
232DLK#####
(Range 0-65535) *2000 ms
Timeout Retries
HSTRTY
Communication Timeout Beeper - Off
*Communication Timeout Beeper - On
HSTTOA0
HSTTOA1
HSTRTN###
NAK Retries
(Range 0-255) *0
BEL/CAN Mode On
BEL/CAN Mode Off*
BELCAN1
BELCAN0
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Plug and Play Codes
Verifone Ruby Terminal
Gilbarco Terminal
PAPRBY
PAPGLB
PAPBIO
Honeywell Bioptic Aux Port
Datalogic Magellan Bioptic Aux Port
NCR Bioptic Aux Port
Wincor Nixdorf Terminal
Wincor Nixdorf Beetle
Wincor Nixdorf RS232 Mode A
*U.S.A.
PAPMAG
PAPNCR
PAPWNX
PAPBTL
PAPWMA
KBDCTY0
Program Keyboard
Country
Albania
KBDCTY35
KBDCTY91
KBDCTY81
KBDCTY80
KBDCTY82
KBDCTY1
Arabic
Azeri (Cyrillic)
Azeri (Latin)
Belarus
Belgium
Bosnia
KBDCTY33
KBDCTY16
KBDCTY59
KBDCTY52
KBDCTY53
KBDCTY54
KBDCTY18
KBDCTY55
KBDCTY92
KBDCTY32
KBDCTY15
KBDCTY40
KBDCTY39
KBDCTY38
KBDCTY8
Brazil
Brazil (MS)
Bulgaria (Cyrillic)
Bulgaria (Latin)
Canada (French legacy)
Canada (French)
Canada (Multilingual)
China
Croatia
Czech
Czech (Programmers)
Czech (QWERTY)
Czech (QWERTZ)
Denmark
Dutch (Netherlands)
Estonia
KBDCTY11
KBDCTY41
KBDCTY83
KBDCTY2
Faeroese
Finland
France
KBDCTY3
Gaelic
KBDCTY84
KBDCTY4
Germany
Greek
KBDCTY17
KBDCTY64
KBDCTY61
KBDCTY65
KBDCTY62
Greek (220 Latin)
Greek (220)
Greek (319 Latin)
Greek (319)
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Greek (Latin)
Greek (MS)
Greek (Polytonic)
Hebrew
KBDCTY63
KBDCTY66
KBDCTY60
KBDCTY12
KBDCTY50
KBDCTY19
KBDCTY75
KBDCTY73
KBDCTY56
KBDCTY5
Hungarian (101 key)
Hungary
Iceland
Ireland
Italian (142)
Italy
Japan ASCII
Kazakh
KBDCTY28
KBDCTY78
KBDCTY93
KBDCTY79
KBDCTY14
KBDCTY42
KBDCTY43
KBDCTY44
KBDCTY45
KBDCTY34
KBDCTY74
KBDCTY86
KBDCTY9
Korea
Kyrgyz (Cyrillic)
Latin America
Latvia
Latvia (QWERTY)
Lithuania
Lithuania (IBM)
Macedonia
Malta
Mongolian (Cyrillic)
Norway
Poland
KBDCTY20
KBDCTY57
KBDCTY58
KBDCTY13
KBDCTY25
KBDCTY26
KBDCTY67
KBDCTY68
KBDCTY21
KBDCTY37
KBDCTY36
KBDCTY22
KBDCTY49
KBDCTY48
KBDCTY31
KBDCTY10
KBDCTY51
KBDCTY23
KBDCTY29
KBDCTY6
Polish (214)
Polish (Programmers)
Portugal
Romania
Russia
Russian (MS)
Russian (Typewriter)
SCS
Serbia (Cyrillic)
Serbia (Latin)
Slovakia
Slovakia (QWERTY)
Slovakia (QWERTZ)
Slovenia
Spain
Spanish variation
Sweden
Switzerland (French)
Switzerland (German)
10 - 6
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Tatar
KBDCTY85
KBDCTY94
KBDCTY27
KBDCTY24
KBDCTY76
KBDCTY7
Thailand
Turkey F
Turkey Q
Ukrainian
United Kingdom
United Stated (Dvorak right)
United States (Dvorak left)
United States (Dvorak)
United States (International)
Uzbek (Cyrillic)
Vietnam
KBDCTY89
KBDCTY88
KBDCTY87
KBDCTY30
KBDCTY77
KBDCTY95
Keyboard Wedge Modifiers
ALT Mode
*Off
KBDALT0
KBDALT6
KBDALT7
KBDSTY0
KBDSTY1
KBDSTY2
KBDSTY7
KBDSTY5
3 Characters
4 Characters
*Regular
Keyboard Style
Caps Lock
Shift Lock
Autocaps via NumLock
Emulate External
Keyboard
Keyboard Conversion
Keyboard Modifiers
*Keyboard Conversion Off
Convert all Characters to Upper Case
Convert all Characters to Lower Case
*Control + ASCII Off
KBDCNV0
KBDCNV1
KBDCNV1
KBDCAS0
KBDCAS1
KBDCAS2
KBDCAS3
KBDNPS0
KBDNPS1
KBDDLY##
DOS Mode Control + ASCII
Windows Mode Control + ASCII
Windows Mode Prefix/Suffix Off
*Numeric Keypad Off
Numeric Keypad On
Inter-Scan Code Delay
<F0> Break Character
Inter-Scan Code Delay
*0 (Range 1-30 msecs)
Suppress <F0> Break Character
*Transmit <F0> Break Character
Reset Keyboard Wedge Defaults
KBDF0B0
KBDF0B1
KBDDFT
Keyboard Wedge Defaults
10 - 7
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
RS-232 Modifiers
RS232 Baud Rate
300 BPS
232BAD0
232BAD1
232BAD2
232BAD3
232BAD4
232BAD5
232BAD6
232BAD7
232BAD8
232BAD9
600 BPS
1200 BPS
2400 BPS
4800 BPS
*9600 BPS
19200 BPS
38400 BPS
57600 BPS
115200 BPS
7 Data, 1 Stop, Parity Even
Word Length: Data Bits, Stop Bits, and
Parity
232WRD3
232WRD0
232WRD6
232WRD4
232WRD1
232WRD7
232WRD5
232WRD2
232WRD8
232WRD9
232WRD10
232WRD11
232WRD12
232WRD13
232WRD14
7 Data, 1 Stop, Parity None
7 Data, 1 Stop, Parity Odd
7 Data, 2 Stop, Parity Even
7 Data, 2 Stop, Parity None
7 Data, 2 Stop, Parity Odd
8 Data, 1 Stop, Parity Even
*8 Data, 1 Stop, Parity None
8 Data, 1 Stop, Parity Odd
7 Data, 1 Stop, Parity Space
7 Data, 2 Stop, Parity Space
8 Data, 1 Stop, Parity Space
7 Data, 1 Stop, Parity Mark
7 Data, 2 Stop, Parity Mark
8 Data, 1 Stop, Parity Mark
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
RS232 Handshaking
*RTS/CTS Off
232CTS0
232CTS1
232CTS7
Flow Control, No Timeout
Character-Based Flow Control, No
Timeout
Two-Direction Flow Control
Flow Control with Timeout
232CTS2
232CTS3
232CTS9
Character-Based Flow Control with
Timeout
*RTS/CTS Off, RTS Inactive
232CTS10
RS232 Timeout (Range 1-5100) *1000 ms 232DEL####
*XON/XOFF Off
XON/XOFF On
*ACK/NAK Off
ACK/NAK On
232XON0
232XON1
232ACK0
232ACK1
Communication Timeout
232DLK#####
(Range 1-65535) *2000 ms
Communication Timeout Beeper - Off
*Communication Timeout Beeper - On
BEL/CAN Mode On
HSTTOA0
HSTTOA1
BELCAN1
BELCAN0
232DFT
*BEL/CAN Mode Off
RS232 Defaults
NCR Modifiers
NCR ACK/NAK
Reset RS232 Defaults
*NCR ACK/NAK Off
NCR ACK/NAK On
*Transmit
NCRACK0
NCRACK1
NCRBCC1
NCRBCC0
NCRPR2##
NCRSF2##
NCRBCP1
NCRBCP0
NCRRAZ1
NCRRAZ0
232PKT0
Block Check Character
NCR Prefix/Suffix
Don’t Transmit
NCR Prefix
NCR Suffix
Transmit Prefix/Suffix
*Don’t Transmit Prefix/Suffix
On
NCR NOF (Not-on-File) Error
*Off
Scanner to Bioptic Communication
*Packet Mode Off
Packet Mode On
*ACK/NAK Off
ACK/NAK On
232PKT2
232ACK0
232ACK1
Communication Timeout
232DLK#####
(Range 1-65535) *2000 ms
Cordless System Operation
Note: This section applies only to cordless systems. It does not apply to corded scanners.
Base Power Communication Indicator
*On
:*:BASRED1
:*:BASRED0
RESET_
Off
Reset Scanner
Reset Scanner
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Scanning While in Base Cradle
Scanning in Cradle Off
*Scanning in Cradle On
*On
BT_SIC0
BT_SIC1
Paging Mode
Paging Pitch
BEPPGE1
BEPPGE0
BEPPFQ1000
BEPPFQ3250
BEPPFQ4200
BT_LDA
Off
Low (*1000) (min 100Hz)
Medium (3250)
High (4200) (min 5000Hz)
Scanner Address
Base Address
Scanner Address
Base Address
:*:BASLDA
:*:BASLNK0
:*:BASLNK1
:*:BASCON0
:*:BASCON1
BT_RMV
Scanner Modes
Charge Only Mode
*Charge and Link Mode
Locked Link Mode
*Open Link Mode
Unlink Scanner
Override Locked Scanner
Alarm Off
BT_RPL1
Out-of-Range Alarm
BT_ORW0
BT_ORW1
BT_ORD
*Alarm On
Scanner Alarm Duration (Range 1 - 3000
sec (*1))
Scanner Power Time-Out Timer
Timer Off
BT_LPT0
200 Seconds
BT_LPT200
BT_LPT400
BT_LPT900
BT_LPT3600
BT_LPT7200
BATENA1
BATENA0
BATENA2
BATBEP0
BATBEP1
BATQTY0
BATQTY1
BATNUM0
BATNUM1
BATNUM2
BATNUM3
BATNUM4
BATNUM5
BATNUM6
BATNUM7
BATNUM8
BATNUM9
BATUND
400 Seconds
900 Seconds
3600 Seconds
7200 Seconds
Batch Mode
Automatic Batch Mode
*Batch Mode Off
Inventory Batch Mode
Batch Mode Beep
Batch Mode Quantity
Quantity Codes
*Off
On
*Off
On
0
1
2
3
4
5
6
7
8
9
Delete Last Code
Delete Last Code
10 - 10
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Record Counter
*Record Counter Off
Record Counter On
Total Records
BATENT0
BATENT1
BATNRC
BATLIF0
Total Records
Batch Mode Output Order
*FIFO
LIFO
BATLIF1
Clear All Codes After Transmission
*Don’t Clear All Codes After Transmission
Clear All Codes After Transmission
Clear All Codes
BATCLX0
BATCLX1
BATCLR
Clear All Codes
Transmit Records Automatically
*Don’t Transmit Records Automatically
Transmit Records Automatically
Transmit Inventory Records
*Off
BATATX0
BATATX1
BAT_TX
Transmit Records to Host
Batch Mode Transmit Delay
BATDLY0
BATDLY250
BATDLY500
BATDLY1000
BT_NAM
BT_DNG9
BT_DNG8
BT_PIN
Short (ms)
Medium (ms)
Long (ms)
Scanner Name
Scanner Name
Bluetooth Connection
Non-Base BT Connection
Base BT Connection
Bluetooth PIN Code
Bluetooth PIN
*0000
Auto Reconnect Mode
*Auto Reconnect On
Auto Reconnect Off
BT_ACM1
BT_ACM0
BT_MLA###
Maximum Link Attempts
Relink Time-Out
Reset
Maximum Link Attempts
Range 0-255 (*0)
Relink Time-Out
Range 0-100 (*3)
BT_RLT###
Reset Base
RESET_
Reset Scanner
:*:RESET_
Input/Output Selections
Power Up Beeper
Power Up Beeper Off - Scanner
BEPPWR0
BEPPWR1
BELBEP1
BELBEP0
BEPBEP0
BEPBEP1
BEPLVL0
*Power Up Beeper On - Scanner
Beep on BEL Character
Beeper - Good Read
Beep on BEL On
*Beep on BEL Off
Off
*On
Beeper Volume - Good Read
Off
Low
BEPLVL1
Medium
BEPLVL2
*High
BEPLVL3
Beeper Pitch - Good Read
(Frequency)
Low (1600 Hz)
*Medium (2350 Hz)
High (4200 Hz)
BEPFQ11600
BEPFQ12350
BEPFQ14200
10 - 11
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Beeper - Transmit Order
*Before Transmission
After Transmission
*Razz (100 Hz)
BEPWHN1
BEPWHN2
BEPFQ2100
BEPFQ22000
BEPFQ24200
BEPBIP0
Beeper Pitch - Error (Frequency)
Beeper Duration - Good Read
Medium (2000 Hz)
High (4200 Hz)
*Normal Beep
Short Beep
BEPBIP1
Number of Beeps - Good Read
Number of Beeps - Error
LED Settings
Range 1 - 9 (*1)
BEPRPT#
BEPERR#
LEDFN10
Range 1 - 9 (*1)
Red LED Off
Green LED Off
LEDFN20
Red LED On with Good Scan
*Green LED On with Good Scan
Red LED On with Laser
LEDFN11
LEDFN21
LEDFN12
*Red LED On with Laser/Red LED Blinks
when Battery is Low
LEDFN11026
Green LED On with Laser
Red LED On when CodeGate Disabled
Green LED On when CodeGate Disabled
Red LED On when In-Stand
Green LED On when In-Stand
Red LED On with CTS
Green LED On with CTS
Red LED when Battery is Low
Green LED when Battery is Low
Red Off
LEDFN22
LEDFN14
LEDFN24
LEDFN18
LEDFN28
LEDFN1128
LEDFN2128
LEDFN11024
LEDFN21024
LEDIN10
LED Settings (continued)
LED Brightness
Green Off
LEDIN20
Red Low
LEDIN11
Green Low
LEDIN21
Red Medium
LEDIN12
Green Medium
LEDIN22
*Red High
LEDIN13
*Green High
LEDIN23
10 - 12
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
In-Stand and Out-of-Stand Settings
In-Stand Defaults
AISDFT
AOSDFT
PAPPM1
PAPPM2
Out-of-Stand Defaults
Presentation Mode Out-of-Stand
Presentation Mode with CodeGate Out-of-
Stand
Manual Activation Mode Off In-Stand
*Manual Activation Mode On In-Stand
Manual Activation Mode Off Out-of-Stand
*Manual Activation Mode On Out-of-Stand
AISMEN0
AISMEN1
AOSMEN0
AOSMEN1
AISMGD0
Do Not End Manual Activation After Good
Read In-Stand
*End Manual Activation After Good Read
In-Stand
AISMGD1
Do Not End Manual Activation After Good
Read Out-of-Stand
AOSMGD0
*End Manual Activation After Good Read
Out-of-Stand
AOSMGD1
Laser Timeout - Button Hold In-Stand
(Range 1 - 65525) *5000 ms
AISMPT#####
AISMRT#####
AOSMPT#####
AOSMRT#####
Laser Timeout - Button Release In-Stand
(Range 1 - 65525) *0 ms
Laser Timeout - Button Hold Out-of-Stand
(Range 1 - 65525) *5000 ms
Laser Timeout - Button Release Out-of-
Stand
(Range 1 - 65525) *0 ms
*CodeGate Off In-Stand
AISCGD0
AISCGD1
AOSCGD0
AOSCGD1
BTNFNC0
BTNFNC1
AISOEN0
AOSOEN1
AOSOEN0
AISOEN1
AISOGD0
CodeGate On In-Stand
CodeGate Off Out-of-Stand
*CodeGate On Out-of-Stand
*Button Function Off
Button Function On
Object Detection Mode Off In-Stand
Object Detection Mode On Out-of-Stand
*Object Detection Mode Off Out-of-Stand
*Object Detection Mode On In-Stand
Do Not End Object Detection After Good
Read In-Stand
*End Object Detection After Good Read
In-Stand
AISOGD1
Do Not End Object Detection After Good
Read Out-of-Stand
AOSOGD0
AOSOGD1
AISODT#####
*End Object Detection After Good Read
Out-of-Stand
Object Detection Laser Timeout In-Stand
(Range 1 - 65525) *5000 ms
10 - 13
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Object Detection Laser Timeout Out-of-
Stand
AOSODT#####
(Range 1 - 65525) *5000 ms
*Object Detection Distance - Short In-
Stand
AISRNG2
Object Detection Distance - Long In-Stand AISRNG1
Object Detection Distance - Short Out-of-
Stand
AOSRNG2
AOSRNG1
*Object Detection Distance - Long Out-of-
Stand
Character Activation Mode
*Off
HSTCEN0
HSTCEN1
HSTACH##
HSTCGD0
On
Activation Character
Do Not End Character Activation After
Good Read
*End Character Activation After Good
Read
HSTCGD1
Character Activation Laser Timeout
(Range 1 - 65525) *5000 ms
HSTCDT#####
Character Deactivation Mode
Reread Delay
*Off
HSTDEN0
HSTDEN1
HSTDCH##
DLYRRD500
DLYRRD750
DLYRRD1000
DLYRRD2000
DLYRRD#####
SEQBLK
On
Deactivation Character
Short (500 ms)
*Medium (750 ms)
Long (1000 ms)
Extra Long (2000 ms)
Range 0 - 30,000 ms
Enter Sequence
Default Sequence
(Range 1 - 65535) *5000 ms
*On
User-Specified Reread Delay
Output Sequence Editor
SEQDFT
Sequence Timeout
SEQDLY#####
SEQBEP1
SEQBEP0
SEQTTS1
Sequence Match Beeper
Off
Partial Sequence
Transmit Partial Sequence
*Discard Partial Sequence
Required
SEQTTS0
Require Output Sequence
SEQ_EN2
On/Not Required
*Off
SEQ_EN1
SEQ_EN0
No Read
On
SHWNRD1
SHWNRD0
*Off
Prefix/Suffix Selections
Add CR Suffix to All Symbologies
Prefix
VSUFCR
PREBK2##
PRECL2
PRECA2
Add Prefix
Clear One Prefix
Clear All Prefixes
10 - 14
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Suffix
Add Suffix
SUFBK2##
SUFCL2
Clear One Suffix
Clear All Suffixes
SUFCA2
Transmit Alternate Extended ASCII
Characters
*Transmit Alternate Extended ASCIi
Transmit Normal Extended ASCIi
*Enable
KBDEXT0
KBDEXT1
RMVFNC0
RMVFNC1
HSTXRC0
HSTXRC1
HSTXRC2
HSTXRC3
DLYCHR##
DLYCRX##
Function Code Transmit
Disable
Communication Check Character
*None
LRC Starts on 1st Character
LRC Starts on 2nd Character
CRC
Intercharacter Delay
Range 0 - 1000 (5ms increments)
User Specified
Delay Length
Intercharacter Delay
0 - 1000 (5ms increments)
Character to Trigger Delay
DLY_XX##
DLYFNC##
DLYMSG##
Interfunction Delay
Range 0 - 1000 (5ms increments)
Range 0 - 1000 (5ms increments)
Intermessage Delay
Data Formatter Selections
Data Format Editor
*Default Data Format (None)
Enter Data Format
DFMDF3
DFMBK3##
DFMCL3
Clear One Data Format
Clear All Data Formats
Data Formatter Off
DFMCA3
DFM_EN0
DFM_EN1
Data Formatter
*Data Formatter On,
Not Required,
Keep Prefix/Suffix
Data Format Required,
Keep Prefix/Suffix
DFM_EN2
DFM_EN3
Data Formatter On,
Not Required,
Drop Prefix/Suffix
Data Format Required,
Drop Prefix/Suffix
DFM_EN4
Data Format Non-Match Error Tone
Primary/Alternate Data Formats
*Data Format Non-Match Error Tone On
Data Format Non-Match Error Tone Off
Primary Data Format
DFMDEC0
DFMDEC1
ALTFNM0
ALTFNM1
ALTFNM2
ALTFNM3
VSAF_0
Data Format 1
Data Format 2
Data Format 3
Single Scan Data Format Change
Single Scan-Primary
Data Format
Single Scan-Data Format 1
Single Scan-Data Format 2
Single Scan-Data Format 3
VSAF_1
VSAF_2
VSAF_3
10 - 15
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Symbologies
All Symbologies
All Symbologies Off
All Symbologies On
ALLENA0
ALLENA1
CBRDFT
Codabar
Default All Codabar
Settings
Off
CBRENA0
CBRENA1
CBRSSX0
CBRSSX1
CBRCK20
CBRCK21
CBRCK22
CBRCK23
CBRCK24
CBRCK25
CBRCK26
CBRCCT0
CBRCCT1
CBRCCT2
DLYCCT
*On
Codabar Start/Stop Char.
Codabar Check Char.
*Don’t Transmit
Transmit
*No Check Char.
Validate Modulo 16, But Don’t Transmit
Validate Modulo 16, and Transmit
Validate Modulo 7 CD, But Don’t Transmit
Validate Modulo 7 CD, and Transmit
Validate CLSI, But Don’t Transmit
Validate CLSI, and Transmit
*Off
Codabar Concatenation
On
Require
Concatenation Timeout
Range (0 - 10) *0
Codabar Redundancy
CBRVOT##
CBRMIN##
CBRMAX##
C39DFT
Codabar Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Code 39
Default All Code 39
Settings
Off
C39ENA0
C39ENA1
C39SSX0
C39SSX1
C39CK20
C39CK21
*On
Code 39 Start/Stop Char.
Code 39 Check Char.
*Don’t Transmit
Transmit
*No Check Char.
Validate, But Don’t
Transmit
Validate,
C39CK22
and Transmit
Code 39 Redundancy
Range (0 - 10) *0
C39VOT##
C39MIN##
C39MAX##
C39B320
C39B321
C39ASC0
C39ASC1
Code 39 Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Code 32 Pharmaceutical (PARAF)
Code 39 Full ASCII
*Off
On
*Off
On
10 - 16
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Interleaved 2 of 5
Default All Interleaved
2 of 5 Settings
I25DFT
Off
I25ENA0
I25ENA1
I25NUL0
I25NUL1
I25CK20
I25CK21
*On
NULL Characters
*Off
On
Interleaved 2 of 5 Check Digit
*No Check Char.
Validate, But Don’t
Transmit
Validate, and Transmit
Range (0 - 10) *0
I25CK22
I25VOT##
I25MIN##
I25MAX##
N25DFT
Interleaved 2 of 5 Redundancy
Interleaved 2 of 5 Message Length
Minimum (1 - 80) *6
Maximum (1 - 80) *80
NEC 2 of 5
Default All NEC
2 of 5 Settings
*Off
N25ENA0
N25ENA1
N25CK20
N25CK21
On
NEC 2 of 5 Check Digit
*No Check Char.
Validate, But Don’t
Transmit
Validate, and Transmit
Range (0 - 10) *0
N25CK22
N25VOT##
N25MIN##
N25MAX##
C93DFT
NEC 2 of 5 Redundancy
NEC 2 of 5 Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Code 93
Default All Code 93
Settings
Off
C93ENA0
C93ENA1
C93VOT##
C93MIN##
C93MAX##
R25DFT
*On
Code 93 Redundancy
Range (0 - 10) *0
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Code 93 Message Length
Straight 2 of 5 Industrial
Default All Straight 2 of 5 Industrial
Settings
*Off
R25ENA0
R25ENA1
R25VOT##
R25MIN##
R25MAX##
A25DFT
On
Straight 2 of 5 Industrial Redundancy
Range (0 - 10) *0
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Straight 2 of 5 Industrial Message
Length
Straight 2 of 5 IATA
Default All Straight 2 of 5 IATA
Settings
Straight 2 of 5 IATA
*Off
A25ENA0
A25ENA1
A25VOT##
On
Straight 2 of 5 IATA Redundancy
Range (0 - 10) *0
10 - 17
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Straight 2 of 5 IATA Message Length
Minimum (1 - 80) *13
Maximum (1 - 80) *15
A25MIN##
A25MAX##
X25DFT
Matrix 2 of 5
Default All Matrix 2 of 5
Settings
*Off
X25ENA0
X25ENA1
X25VOT##
X25MIN##
X25MAX##
X25CK20
X25CK21
On
Matrix 2 of 5 Redundancy
Range (0 - 10) *0
Minimum (1 - 80) *3
Maximum (1 - 80) *80
*No Check Char.
Matrix 2 of 5 Message Length
Matrix 2 of 5 Check Char.
Validate, But Don’t
Transmit
Validate and Transmit
X25CK22
C11DFT
Code 11
Default All Code 11
Settings
*Off
C11ENA0
C11ENA1
C11CK20
C11CK21
C11CK22
C11CK23
C11CK24
C11CK25
On
Code 11 Check Digits Required
Check Digit Validation
1 Check Digit Required
*2 Check Digits Required
Auto Select Check Digits Required
Validate and Transmit One Check Digit
Validate and Transmit Two Check Digits
Validate and Transmit Auto Select Check
Digits
Code 11 Redundancy
Range (0 - 10) *0
C11VOT##
C11MIN##
C11MAX##
128DFT
Code 11 Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Code 128
Default All Code 128
Settings
Off
128ENA0
128ENA1
128GSE0
128GSE1
128VOT##
128MIN##
128MAX##
ISBENA0
ISBENA1
DLYCCT
*On
128 Group Separator Output
*Off
On
Code 128 Redundancy
Range (0 - 10) *0
Minimum (1 - 80) *3
Maximum (1 - 80) *80
*Off
Code 128 Message Length
ISBT 128
On
Concatenation Timeout
10 - 18
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
ISBT128 Predefined Concatenation
Sequences
* Donation ID Number (001)
and ABO/RhD Blood Groups (002)
ISBPCS0
ISBPCS1
ISBPCS2
ISBPCS3
ISBPCS4
ISBPCS5
ISBPCS6
Donation ID Number (001) and
Donor ID Number (019)
Donation ID Number (001) and
Confidential Unit Exclusion Status
Product Code (003) and Expiration Date
(Form 1)
Product Code (003) and Expiration Date
(Form 2)
Product Code (003) and Expiration Date
(Form 3)
Product Code (003) and Expiration Date
(Form 4)
ISBT 128 Predefined Concatenation
Sequences On/Off
*Off
ISBPCE0
ISBPCE1
ISBPCE2
ISBUL1##
ISBUL2##
ISBUR1##
ISBUR2##
ISBUCE0
ISBUCE1
ISBUCE2
ISBXM00
ISBXM01
ISBXM10
ISBXM11
ISBXM20
ISBXM21
GS1DFT
Allow Predefined Sequence
Require Predefined Sequence
ISBT 128 User-Defined Concatenation
Sequences
1st Left Identifier (0-255) *0
2nd Left Identifier (0-255) *0
1st Right Identifier (0-255) *0
2nd Right Identifier (0-255) *0
ISBT 128 User-Defined Concatenation
Sequences On/Off
*Off
Allow User-Defined Sequence
Require User-Defined Sequence
Content Verification
Transmit Identifiers
Flag Conversion
GS1-128
*Off
On
Off
*On
*Off
On
Default All GS1-128 Settings
*On
GS1ENA1
GS1ENA0
GS1EMU0
GS1EMU1
GS1EMU2
GS1VOT##
GS1MIN
Off
GS1-128 Application Identifier Parsing
*Off
Transmit Without Identifiers
Transmit With Identifiers
Range (0 - 10) *0
Minimum (1 - 80) *3
Maximum (0 - 80) *80
GS1-128 Redundancy
GS1-128 Message Length
GS1MAX
TELDFT
Telepen
Default All Telepen
Settings
*Off
TELENA0
TELENA1
TELOLD0
TELOLD1
On
Telepen Output
*AIM Telepen Output
Original Telepen Output
10 - 19
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
Telepen Redundancy
Range (0 - 10) *0
TELVOT##
TELMIN##
TELMAX##
UPADFT
Telepen Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
UPC-A
Default All
UPC-A Settings
Off
UPBENA0
UPBENA1
UPANSX0
UPANSX1
UPACKX0
UPACKX1
UPAAD20
UPAAD21
UPAAD50
UPAAD51
UPAARQ0
UPAARQ1
DLYADD#####
UPAADS0
UPAADS1
UPAVOT##
CPNENA0
CPNENA1
CPNENA2
ARQSY40
ARQSY41
ARQSY50
ARQSY51
ARQSY52
ARQSY53
ARQSY54
ARQSY55
ARQSY56
ARQSY57
*On
UPC-A Number System
UPC-A Check Digit
Off
*On
Off
*On
UPC-A 2 Digit Addenda
UPC-A 5 Digit Addenda
UPC-A Addenda Required
Addenda Timeout
*Off
On
*Off
On
*Not Required
Required
Range (0 - 65535) *100
*Off
UPC-A Addenda
Separator
On
UPC-A Redundancy
Range (0 - 10) *0
UPC-A/EAN-13 with Extended Coupon
Code
*Off
Allow Concatenation
Require Concatenation
* Don’t Require Coupon Code
Require Coupon Code
* Don’t Require Coupon Code/Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
Require Coupon Code
Require Coupon Code or 2 Digit Addenda
Require Coupon Code or 5 Digit Addenda
UPC-A Number System 4 Addenda
Required
UPC-A Number System 5 Addenda
Required
Require Coupon Code, 2 Digit Addenda,
or 5 Digit Addenda
Addenda Timeout
UPC-E0
Range (0 - 65535) *100
DLYADD#####
UPEDFT
Default All UPC-E
Settings
Off
UPEEN00
UPEEN01
UPEEXP0
UPEEXP1
*On
*Off
On
UPC-E0 Expand
10 - 20
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
UPC-E0 Number System
*On
UPEEXN1
UPEEXN0
UPECKX0
UPECKX1
UPENSX0
UPENSX1
UPEAD21
UPEAD20
UPEAD51
UPEAD50
UPEARQ1
UPEARQ0
DLYADD#####
UPEADS1
UPEADS0
UPEVOT##
E13DFT
Off
UPC-E0 Check Digit
UPC-E0 Leading Zero
UPC-E0 Addenda
*Off
On
*Off
On
2 Digit Addenda On
*2 Digit Addenda Off
5 Digit Addenda On
*5 Digit Addenda Off
Required
UPC-E0 Addenda Required
*Not Required
Range (0 - 65535) *100
On
Addenda Timeout
UPC-E0 Addenda Separator
*Off
UPC-E0 Redundancy
EAN/JAN-13
Range (0 - 10) *1
Default All EAN/
JAN Settings
Off
E13ENA0
E13ENA1
UPAENA0
UPAENA1
E13CKX0
E13CKX1
E13AD21
E13AD20
E13AD51
E13AD50
E13ARQ0
E13ARQ1
ARQSY20
ARQSY21
ARQ2900
ARQ2901
ARQ3780
ARQ3781
ARQ3782
ARQ3783
ARQ4140
ARQ4141
ARQ4142
ARQ4143
*On
Convert UPC-A to EAN-13
EAN/JAN-13 Check Digit
EAN/JAN-13 2 Digit Addenda
UPC-A Converted to EAN-13
*Do not Convert UPC-A
Off
*On
2 Digit Addenda On
*2 Digit Addenda Off
5 Digit Addenda On
*5 Digit Addenda Off
*Not Required
EAN/JAN-13 Addenda Required
Required
EAN-13 Beginning with 2 Addenda
Required
* Don’t Require 2 Digit Addenda
Require 2 Digit Addenda
* Don’t Require 5 Digit Addenda
Require 5 Digit Addenda
* Don’t Require Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
* Don’t Require Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
EAN-13 Beginning with 290 Addenda
Required
EAN-13 Beginning with 378/379
Addenda Required
EAN-13 Beginning with 414/419
Addenda Required
10 - 21
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
EAN-13 Beginning with 434/439
Addenda Required
* Don’t Require Addenda
Require 2 Digit Addenda
Require 5 Digit Addenda
Require 2 or 5 Digit Addenda
* Don’t Require 2 Digit Addenda
Require 2 Digit Addenda
* Don’t Require 5 Digit Addenda
Require 5 Digit Addenda
* Don’t Require 5 Digit Addenda
Require 5 Digit Addenda
Range (0 - 65535) *100
*Off
ARQ4340
ARQ4341
ARQ4342
ARQ4343
ARQ9770
ARQ9771
ARQ9780
ARQ9781
ARQ9790
ARQ9791
DLYADD#####
E13ADS0
E13ADS1
E13VOT##
E13ISB0
E13ISB1
E13I131
EAN-13 Beginning with 977 Addenda
Required
EAN-13 Beginning with 978 Addenda
Required
EAN-13 Beginning with 979 Addenda
Required
Addenda Timeout
EAN/JAN-13 Addenda
Separator
On
EAN/JAN-13 Redundancy
ISBN Translate
Range (0 - 10) *0
*Off
On
Convert to 13-Digit On
*Convert to 13-Digit Off
Reformat On
E13I130
E13IBR1
E13IBR0
E13ISS0
E13ISS1
E13ISR1
E13ISR0
EA8DFT
*Reformat Off
ISSN Translate
EAN/JAN-8
*Off
On
Reformat On
*Reformat Off
Default All EAN/
JAN 8 Settings
Off
EA8ENA0
EA8ENA1
EA8CKX0
EA8CKX1
EA8AD20
EA8AD21
EA8AD50
EA8AD51
EA8ARQ0
EA8ARQ1
DLYADD#####
EA8ADS0
EA8ADS1
EA8VOT##
MSIDFT
*On
EAN/JAN-8 Check Digit
EAN/JAN-8 Addenda
Off
*On
*2 Digit Addenda Off
2 Digit Addenda On
*5 Digit Addenda Off
5 Digit Addenda On
*Not Required
Required
EAN/JAN-8 Addenda Required
Addenda Timeout
Range (0 - 65535) *100
*Off
EAN/JAN-8 Addenda
Separator
On
EAN/JAN-8 Redundancy
MSI
Range (0 - 10) *0
Default All MSI Settings
*Off
MSIENA0
MSIENA1
On
10 - 22
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
MSI Check Character
*Validate Type 10, but Don’t Transmit
MSICHK0
MSICHK1
Validate Type 10 and
Transmit
Validate 2 Type 10 Chars, but Don’t
Transmit
MSICHK2
Validate 2 Type 10 Chars and Transmit
Disable MSI Check Characters
Range (0 - 10) *0
MSICHK3
MSICHK6
MSIVOT##
MSIMIN##
MSIMAX##
PLSDFT
MSI Redundancy
MSI Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
Plessey Code
Default All
Plessey Code Settings
Off
PLSENA0
PLSENA1
PLSCHK0
PLSCHK1
*On
Plessey Check Char.
*No Check Char.
Validate, But Don’t
Transmit
Validate,
PLSCHK2
and Transmit
Plessey Redundancy
Range (0 - 10) *0
PLSVOT##
PLSMIN##
PLSMAX##
RSSDFT
Plessey Message Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
GS1 DataBar Omnidirectional
Default All
GS1 DataBar Omnidirectional Settings
Off
RSSENA0
RSSENA1
RSSVOT##
*On
GS1 DataBar Omnidirectional
Redundancy
Range (0 - 10) *0
GS1 DataBar Limited
Default All GS1 DataBar Limited Settings
RSLDFT
Off
RSLENA0
RSLENA1
RSLVOT##
RSEDFT
*On
GS1 DataBar Limited Redundancy
GS1 DataBar Expanded
Range (0 - 10) *0
Default All GS1 DataBar
Expanded Settings
Off
RSEENA0
RSEENA1
RSEVOT##
RSEMIN##
RSEMAX##
TRIENA0
*On
GS1 DataBar Expanded Redundancy
GS1 DataBar Expanded Msg. Length
Range (0 - 10) *0
Minimum (1 - 80) *3
Maximum (1 - 80) *80
*Off
Trioptic Code
On
TRIENA1
10 - 23
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Setting
* Indicates default
Serial Command
# Indicates a numeric entry
Selection
Page
GS1 Emulation
GS1-128 Emulation
EANEMU1
EANEMU2
EANEMU3
EANEMU4
EANEMU0
GS1 DataBar Emulation
GS1 Code Expansion Off
EAN8 to EAN13 Conversion
*GS1 Emulation Off
Postal Codes
China Post (Hong Kong 2 of 5)
Default All China Post (Hong Kong 2 of 5)
Settings
CPCDFT
*Off
CPCENA0
CPCENA1
CPCVOT##
On
China Post (Hong Kong 2 of 5)
Redundancy
Range (0 - 10) *0
China Post (Hong Kong 2 of 5) Msg.
Length
Minimum (1 - 80) *3
Maximum (1 - 80) *80
CPCMIN##
CPCMAX##
Utilities
Add Code I.D. Prefix to All Symbologies (Temporary)
Show Software Revision
PRECA2,BK2995C80! 9-1
REVINF
Show Data Format
DFMBK3?
TSTMNU1
TSTMNU0
DEFOVR
DEFALT
Test Menu
On
*Off
Resetting the Factory Defaults
Remove Custom Defaults
Activate Defaults
Serial Trigger Commands
Read Time-Out
0 - 300,000
*30,000 ms
TRGSTO####
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11
Product Specifications
Voyager 1200g Product Specifications
Parameter
Specification
Mechanical
Height
3.8 in. (97mm)
7.1 in. (180mm)
2.6 in. (66mm)
4.41 oz. (125g)
Length
Width
Weight
Electrical
Input Voltage
Operating Power
Standby Power
Environmental
Operating Temperature
Storage Temperature
Humidity
5V + 5%
700mW; 140 mA (typical) @ 5V
350mW; 70 mA (typical) @ 5V
32°F to 122°F (0°C to 50°C)
-4°F to 140°F (-20°C to 60°C)
0 to 95% non-condensing
Operational after 30 drops to concrete from 5 ft. (1.5m)
IP42
Drop
Environmental Sealing
Light Levels
ESD
0 - 70,000 lux (direct sunlight)
16kV, 9kV contact
Scan Performance
Scan Pattern
Scan Angle
Single scan line
Horizontal: 30°
Scan Speed
Print Contrast
Pitch, Skew
100 scan lines per second
10% minimum reflectance difference
60°, 60°
Decode Capabilities
Reads standard 1D and GS1 DataBar symbologies
DOF with 3.5 mil resolution at standard range
Typical Performance
5 mil Code 39
7.5 mil Code 39
10.4 mil Code 39
13 mil UPC-A
27 - 151mm (1.1 - 5.9 in.)
16 - 216mm (.6 - 8.5 in.)
0 - 277mm (0 - 10.9 in.)
0 - 311mm (0 - 12.2 in.)
0 - 367mm (0 - 14.4 in.)
20 mil Code 39
Guaranteed Performance
5 mil Code 39
38 - 132mm (1.5 - 5.2 in.)
26 - 189mm (1 - 7.4 in.)
0 - 229mm (0 - 9 in.)
7.5 mil Code 39
10.4 mil Code 39
13 mil UPC-A
20 mil Code 39
Laser Beam
Wavelength
0 - 253mm (0 - 10 in.)
0 - 293mm (0 - 11.5 in.)
645 - 660 nm
Divergence
< 1.5 mrad. per IEC 60825-1 worst case
11 - 1
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Parameter
Specification
Maximum Power Output
Embedded Laser
Wavelength
< 1 mw
645 - 660 nm
Divergence
< 1.5 mrad. per IEC 60825-1 worst case
10 mw
Maximum Power Output
Voyager 1202g Product Specifications
Parameter
Specification
Mechanical
Height
3.6 in. (92mm)
7.1 in. (180mm)
2.6 in. (66mm)
6.3 oz. (180g)
Length
Width
Weight (includes battery)
Battery
Lithium Ion
1800 mAHr minimum
Up to 45,000 per charge
12
Number of Scans
Expected Hours of Operation
4 hours (external supply)
8 hours (USB power)
Expected Charge Time
Radio
Frequency
2.4 to 2.5 GHz (ISM Band) Frequency Hopping Bluetooth v.2.1
33 ft. (10 m) typical line of sight
Range
Data Rate
Up to 3 MBps
Environmental
Temperature Ranges:
Operating - Charging
Operating - Non-Charging
Storage
41° F to +104° F (5° C to 40° C)
32° F to +122° F (0° C to 50° C)
23°F to +95°F (-5°C to 35°C)
Humidity
0 to 95% relative humidity, non-condensing
Designed to withstand 30 drops from 5 feet (1.5m) to concrete
IP42
Mechanical Drop
Environmental Sealing
16kV air
9kV contact
ESD Sensitivity
Scan Performance
Pitch, Skew
60°, 60°
11 - 2
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Parameter
Specification
Scan Pattern
Scan Angle
Single scan line
Horizontal: 30°
Scan Speed
100 scan lines per second
Print Contrast
Decode Capabilities
10% minimum reflectance difference
Reads standard 1D and GS1 DataBar symbologies
DOF with 3.5 mil resolution at standard range
Typical Performance
5 mil Code 39
7.5 mil Code 39
1.40 mil Code 39
13 mil UPC-A
27 - 151mm (1.1 - 5.9 in.)
16 - 216mm (.6 - 8.5 in.)
0 - 277mm (0 - 10.9 in.)
0 - 311mm (0 - 12.2 in.)
0 - 367mm (0 - 14.4 in.)
20 mil Code 39
Guaranteed Performance
5 mil Code 39
38 - 132mm (1.5 - 5.2 in.)
26 - 189mm (1 - 7.4 in.)
0 - 229mm (0 - 9 in.)
7.5 mil Code 39
10.4 mil Code 39
13 mil UPC-A
0 - 253mm (0 - 10 in.)
0 - 293mm (0 - 11.5 in.)
20 mil Code 39
Laser Beam
Wavelength
645 - 660 nm
Divergence
< 1.5 mrad. per IEC 60825-1 worst case
< 1 mw
Maximum Power Output
Embedded Laser
Wavelength
645 - 660 nm
Divergence
< 1.5 mrad. per IEC 60825-1 worst case
10 mw
Maximum Power Output
CCB00-010BT Product Specifications
Parameter
Specification
Mechanical
Dimensions (Typical):
Height
3.8 inches (97mm)
7.9 inches (200mm)
2.6 inches (67mm)
6.5 oz (185g)
Length
Width
Weight
Electrical
Input Voltage
5 volts +5%
5W (1A@5V) (external supply)
2.5W (0.5A@5V) (USB power)
Operating Power - Charging
Non-Charging Power
0.625W (0.125A@5V)
4 hours (external supply)
8 hours (USB power)
Expected Charge Time
Radio
Frequency
Range
2.4 to 2.5 GHz (ISM Band) Frequency Hopping Bluetooth v.2.1
33 ft. (10 m) typical (line of sight)
Data Rate
Up to 3 MBps
11 - 3
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Temperature Ranges:
Operating - Charging
Operating - Non-Charging
Storage*
41° F to +104° F (5° C to 40° C)
32° F to +122° F (0° C to 50° C)
23°F to +95°F (-5°C to 35°C)
Humidity
0 to 95% relative humidity, non-condensing
Environmental
Operational after 30 drops from 3.28 feet
(1m) to concrete
Mechanical Drop
ESD Sensitivity
16kV air
9kV contact
CCB00-010BT Mounting
Use 2 M3x15mm PHP, self-tapping wood screws
3.07 in (78mm)
11 - 4
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Standard Cable Pinouts
Keyboard Wedge
10 Pin RJ41 Modular Plug
connects to the scanner or the base
1
2
3
4
5
6
7
8
9
10
Cable shield
Cable select
Supply ground
Terminal data
Terminal clock
Keyboard clock
Supply power input +5V power
Keyboard data
Note: Pin assignments are not compatible with Honeywell legacy products.
Use of a cable with improper pin assignments may lead to damage to the unit. Use of any cables not provided by the
manufacturer may result in damage not covered by your warranty.
Serial Output
10 Pin RJ41 Modular Plug
connects to the scanner or the base
1
2
Cable shield
Cable select
3
4
Supply ground
Transmit data
5
6
Receive data - serial data to scanner
CTS
7
8
+5V power
RTS
9
10
Note: Pin assignments are not compatible with Honeywell legacy products.
Use of a cable with improper pin assignments may lead to damage to the unit. Use of any cables not provided by the
manufacturer may result in damage not covered by your warranty.
11 - 5
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Standard Cable Pinouts
RS485 Output
10 Pin RJ41 Modular Plug
connects to the scanner or the base
1
2
3
4
5
6
7
8
9
10
Cable shield
Cable select
Supply ground
Transmit data
Receive data - serial data to scanner
+5V power
Transmit Enable
Note: RS485 signal conversion is performed in the cable.
Pin assignments are not compatible with Honeywell legacy products.
Use of a cable with improper pin assignments may lead to damage to the unit. Use of any cables not provided by the
manufacturer may result in damage not covered by your warranty.
USB
1
2
3
4
5
6
7
8
9
Cable shield
Cable select
Supply ground
10 Pin Modular Plug
connects to the scanner or the base
+5V power
Data +
10 Data -
Note: Pin assignments are not compatible with Honeywell legacy products.
Use of a cable with improper pin assignments may lead to damage to the unit. Use of any cables not provided by the
manufacturer may result in damage not covered by your warranty.
11 - 6
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12
Maintenance
Repairs
Repairs and/or upgrades are not to be performed on this product. These services are to be performed only by an authorized
Maintenance
Your device provides reliable and efficient operation with a minimum of care. Although specific maintenance is not required, the
following periodic checks ensure dependable operation:
Cleaning the Device
Reading performance may degrade if the scanner’s window is not clean. If the window is visibly dirty, or if the scanner isn’t
operating well, clean the window with a soft cloth or lens tissue dampened with water (or a mild detergent- water solution).
If a detergent solution is used, rinse with a clean lens tissue dampened with water only.
The scanner and base’s housing may also be cleaned the same way.
Caution:
!
Do not submerge the scanner in water. The scanner’s
housing is not watertight.
Do not use abrasive wipes or tissues on the scanner’s
window – abrasive wipes may scratch the window. Never
use solvents (e.g., alcohol or acetone) on the housing or
window – solvents may damage the finish or the window.
Inspecting Cords and Connectors
Inspect the interface cable and connector for wear or other signs of damage. A badly worn cable or damaged connector
may interfere with scanner operation. Contact your distributor for information about cable replacement. Cable replacement
Replacing Cables in Corded Scanners
The standard interface cable is attached to the scanner with an 10-pin modular connector. When properly seated, the connec-
tor is held in the scanner’s handle by a flexible retention tab. The interface cable is designed to be field replaceable.
•
•
Order replacement cables from Honeywell or from an authorized distributor.
When ordering a replacement cable, specify the cable part number of the original interface cable.
12 - 1
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Replacing an Interface Cable in a Corded Scanner
1. Turn the power to the host system OFF.
2. Disconnect the scanner’s cable from the terminal or computer.
3. Locate the small hole on the underside of the scanner’s handle. This is the cable release.
4. Straighten one end of a paper clip.
5. Insert the end of the paper clip into the small hole and press in. This depresses the retention
tab, releasing the connector. Pull the connector out while maintaining pressure on the paper
clip, then remove the paper clip.
6. Replace with the new cable.
Insert the connector into the opening and press firmly. The connector is keyed to go in only
one way, and will click into place.
Cable
Release
Replacing Cables in Cordless Systems
Replacing an Interface Cable in a Base
1. Turn the power to the host system OFF.
2. Disconnect the base’s cable from the terminal or computer.
3. Turn the base upside down.
4. Locate the pinhole for the cable release and insert a straightened paper clip.
5. Pull the connector out while maintaining pressure on the connector release clip.
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6. Replace with the new cable.
Insert the connector into the opening and press firmly. The connector is keyed to go in only one way, and will click into
place.
Troubleshooting a Voyager Scanner
The scanner automatically performs self-tests whenever you turn it on. If your scanner is not functioning properly, review
the following Troubleshooting Guide to try to isolate the problem.
Is the power on? Is the laser aimer on?
If the laser aimer isn’t illuminated, check that:
•
•
•
The cable is connected properly.
The host system power is on (if external power isn’t used).
The button works.
Is the scanner having trouble reading your symbols?
If the scanner isn’t reading symbols well, check that the scanner window is clean and that the symbols:
•
•
•
Aren’t smeared, rough, scratched, or exhibiting voids.
Aren’t coated with frost or water droplets on the surface.
Are enabled in the scanner or in the decoder to which the scanner connects.
Is the bar code displayed but not entered?
The bar code is displayed on the host device correctly, but you still have to press a key to enter it (the Enter/Return key or
the Tab key, for example).
•
You need to program a suffix. Programming a suffix enables the scanner to output the bar code data plus the key you
need (such as “CR”) to enter the data into your application. Refer to Prefix/Suffix Overview on page 5-1 for further
information.
Does the scanner read the bar code incorrectly?
If the scanner reads a bar code, but the data is not displayed correctly on the host screen:
•
The scanner may not be programmed for the appropriate terminal interface.
For example, you scan “12345” and the host displays “@es%.”
Reprogram the scanner with the correct Plug and Play bar code. See Programming the Interface beginning on page 2-1.
•
The scanner may not be programmed to output your bar code data properly.
For example, you scan “12345” and the host displays “A12345B.”
12 - 3
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The scanner won’t read your bar code at all.
1. Scan the sample bar codes in the back of this manual. If the scanner reads the sample bar codes, check that your bar
code is readable.
The cordless scanner won’t scan bar codes while it is in the base.
1. Scanning While in Cradle Off may be programmed.
2. Scan the * Scanning in Cradle On (page 3-6) bar code so the scanner will also scan bar codes while in the base.
If you aren’t sure what programming options have been set in the scanner, or if you want the factory default settings
Troubleshooting a Cordless System
Troubleshooting a Base
Note: Visit the Services and Support section of our website (www.honeywellaidc.com) to check for the latest software for
both the scanner and the base.
If your base is not functioning properly, review the following troubleshooting guidelines to try to isolate the problem.
Is the red LED on?
If the red LED isn’t illuminated, check that:
•
•
The power cable is connected properly and there is power at the power source.
The host system power is on (if external power isn’t used).
Is the green LED on?
If the green LED isn’t illuminated, check that:
•
•
•
•
The scanner is correctly placed in the base.
There is external power or 12 volt host power.
The battery is not bad or deeply discharged. In some cases, the scanner’s battery may trickle charge to bring it into an
acceptable level and then transition to a normal charge cycle.
Troubleshooting a Cordless Scanner
Note: Make sure that your scanner’s battery is charged.
Visit the Services and Support section of our website (www.honeywellaidc.com) to check for the latest software for
both the scanner and the base or Access Point.
Is the scanner having trouble reading your symbols?
If the scanner isn’t reading symbols well, check that the symbols:
•
•
•
Aren’t smeared, rough, scratched, or exhibiting voids.
Aren’t coated with frost or water droplets on the surface.
Are enabled in the base or Access Point to which the scanner connects.
Is the bar code displayed but not entered into the application?
The bar code is displayed on the host device correctly, but you still have to press a key to enter it (the Enter/Return key or
the Tab key, for example).
•
You need to program a suffix. Programming a suffix enables the scanner to output the bar code data plus the key you
need (such as “CR”) to enter the data into your application. Refer to Prefix/Suffix Overview on page 5-1 for further
information.
Does the scanner read the bar code incorrectly?
If the scanner reads a bar code, but the data is not displayed correctly on the host screen:
•
The base or Access Point may not be programmed for the appropriate terminal interface. For example, you scan “12345”
and the host displays “@es%.”
12 - 4
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Reprogram the base/Access Point with the correct Plug and Play bar code. See Programming the Interface beginning on
•
The bas or Access Pointe may not be programmed to output your bar code data properly. For example, you scan “12345”
and the host displays “A12345B.”
The scanner won’t read your bar code at all.
•
Scan the sample bar codes in the back of this manual. If the scanner reads the sample bar codes, check that your bar
code is readable.
12 - 5
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13
Customer Support
Technical Assistance
If you need assistance installing or troubleshooting your device, please contact us by using one of the methods below:
Knowledge Base: www.hsmknowledgebase.com
Our Knowledge Base provides thousands of immediate solutions. If the Knowledge Base cannot help, our Technical Support
Portal (see below) provides an easy way to report your problem or ask your question.
Technical Support Portal: www.hsmsupportportal.com
The Technical Support Portal not only allows you to report your problem, but it also provides immediate solutions to your techni-
cal issues by searching our Knowledge Base. With the Portal, you can submit and track your questions online and send and
receive attachments.
Web form: www.hsmcontactsupport.com
You can contact our technical support team directly by filling out our online support form. Enter your contact details and the
description of the question/problem.
Telephone: www.honeywellaidc.com/locations
For our latest contact information, please check our website at the link above.
Product Service and Repair
Honeywell International Inc. provides service for all of its products through service centers throughout the world. To obtain war-
ranty or non-warranty service, please visit www.honeywellaidc.com and select Support > Contact Service and Repair to see
your region's instructions on how to obtain a Return Material Authorization number (RMA #). You should do this prior to return-
ing the product.
Limited Warranty
Honeywell International Inc. (“HII”) warrants its products to be free from defects in materials and workmanship and to conform to
HII’s published specifications applicable to the products purchased at the time of shipment. This warranty does not cover any
HII product which is (i) improperly installed or used; (ii) damaged by accident or negligence, including failure to follow the proper
maintenance, service, and cleaning schedule; or (iii) damaged as a result of (A) modification or alteration by the purchaser or
other party, (B) excessive voltage or current supplied to or drawn from the interface connections, (C) static electricity or electro-
static discharge, (D) operation under conditions beyond the specified operating parameters, or (E) repair or service of the prod-
uct by anyone other than HII or its authorized representatives.
This warranty shall extend from the time of shipment for the duration published by HII for the product at the time of purchase
(“Warranty Period”). Any defective product must be returned (at purchaser’s expense) during the Warranty Period to HII factory
or authorized service center for inspection. No product will be accepted by HII without a Return Materials Authorization, which
may be obtained by contacting HII. In the event that the product is returned to HII or its authorized service center within the
Warranty Period and HII determines to its satisfaction that the product is defective due to defects in materials or workmanship,
HII, at its sole option, will either repair or replace the product without charge, except for return shipping to HII.
EXCEPT AS MAY BE OTHERWISE PROVIDED BY APPLICABLE LAW, THE FOREGOING WARRANTY IS IN LIEU OF ALL
OTHER COVENANTS OR WARRANTIES, EITHER EXPRESSED OR IMPLIED, ORAL OR WRITTEN, INCLUDING, WITHOUT
LIMITATION, ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, OR
NON-INFRINGEMENT.
HII’S RESPONSIBILITY AND PURCHASER’S EXCLUSIVE REMEDY UNDER THIS WARRANTY IS LIMITED TO THE
REPAIR OR REPLACEMENT OF THE DEFECTIVE PRODUCT WITH NEW OR REFURBISHED PARTS. IN NO EVENT
SHALL HII BE LIABLE FOR INDIRECT, INCIDENTAL, OR CONSEQUENTIAL DAMAGES, AND, IN NO EVENT, SHALL ANY
LIABILITY OF HII ARISING IN CONNECTION WITH ANY PRODUCT SOLD HEREUNDER (WHETHER SUCH LIABILITY
ARISES FROM A CLAIM BASED ON CONTRACT, WARRANTY, TORT, OR OTHERWISE) EXCEED THE ACTUAL AMOUNT
PAID TO HII FOR THE PRODUCT. THESE LIMITATIONS ON LIABILITY SHALL REMAIN IN FULL FORCE AND EFFECT
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EVEN WHEN HII MAY HAVE BEEN ADVISED OF THE POSSIBILITY OF SUCH INJURIES, LOSSES, OR DAMAGES. SOME
STATES, PROVINCES, OR COUNTRIES DO NOT ALLOW THE EXCLUSION OR LIMITATIONS OF INCIDENTAL OR CONSE-
QUENTIAL DAMAGES, SO THE ABOVE LIMITATION OR EXCLUSION MAY NOT APPLY TO YOU.
All provisions of this Limited Warranty are separate and severable, which means that if any provision is held invalid and unen-
forceable, such determination shall not affect the validity of enforceability of the other provisions hereof. Use of any peripherals
not provided by the manufacturer may result in damage not covered by this warranty. This includes but is not limited to: cables,
power supplies, bases, and docking stations. HII extends these warranties only to the first end-users of the products. These
warranties are non-transferable.
The duration of the limited warranty for the Voyager 1200g scanner is five (5) years.
The duration of the limited warranty for the Voyager 1202g scanner and CCB00-010BT Charge Base is three (3) years.
The duration of the limited warranty for the Voyager battery is one (1) year.
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A
Reference Charts
Symbology Charts
Note: “m” represents the AIM modifier character. Refer to International Technical Specification, Symbology Identifiers, for AIM
modifier character details.
Prefix/Suffix entries for specific symbologies override the universal (All Symbologies, 99) entry.
Refer to Data Editing beginning on page 5-1 and Data Formatting beginning on page 6-1 for information about using Code ID
and AIM ID.
Linear Symbologies
AIM
Honeywell
Hex
Possible modifiers
(m)
Symbology
ID
ID
All Symbologies
99
61
68
6A
3C
62
54
69
Codabar
]Fm
]H3
]Cm
]X0
0-1
a
h
j
Code 11
Code 128
0, 1, 2, 4
0, 1, 3, 4, 5, 7
Code 32 Pharmaceutical (PARAF)
Code 39 (supports Full ASCII mode)
TCIF Linked Code 39 (TLC39)
Code 93 and 93i
<
b
T
i
]Am
]L2
]Gm
0-9, A-Z,
a-m
EAN
]Em
]E0
]E3
]E3
]E4
]E3
0, 1, 3, 4
d
d
d
d
D
D
64
64
64
64
44
44
EAN-13 (including Bookland EAN)
EAN-13 with Add-On
EAN-13 with Extended Coupon Code
EAN-8
EAN-8 with Add-On
GS1
GS1 DataBar
]em
]em
]em
]C1
0
y
{
}
I
79
7B
7D
49
GS1 DataBar Limited
GS1 DataBar Expanded
GS1-128
2 of 5
China Post (Hong Kong 2 of 5)
Interleaved 2 of 5
Matrix 2 of 5
]X0
]Im
Q
e
m
Y
f
51
65
6D
59
66
66
67
74
0, 1, 3
]X0
]X0
]Rm
]S0
]Mm
]Bm
NEC 2 of 5
Straight 2 of 5 IATA
Straight 2 of 5 Industrial
MSI
0, 1, 3
f
0, 1
g
t
Telepen
UPC
0, 1, 2, 3, 8, 9, A, B, C
A - 1
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AIM
Honeywell
Hex
Possible modifiers
(m)
Symbology
ID
ID
UPC-A
]E0
]E3
]E3
]E0
]E3
]X0
c
63
63
63
45
45
45
UPC-A with Add-On
c
UPC-A with Extended Coupon Code
c
UPC-E
E
E
E
UPC-E with Add-On
UPC-E1
Add Honeywell Code ID
Add AIM Code ID
Add Backslash
5C80
5C81
5C5C
35
Batch mode quantity
5
Postal Symbologies
AIM
Honeywell
Hex
Possible modifiers
(m)
Symbology
ID
ID
All Symbologies
Australian Post
British Post
99
41
42
43
51
2c
]X0
]X0
]X0
]X0
]X0
]X0
]X0
]X0
]X0
]X0
]X0
]X0
A
B
C
Q
,
Canadian Post
China Post
InfoMail
Intelligent Mail Bar Code
Japanese Post
KIX (Netherlands) Post
Korea Post
M
J
4D
4A
4B
3F
4C
4E
50
K
?
Planet Code
L
Postal-4i
N
P
Postnet
ASCII Conversion Chart (Code Page 1252)
In keyboard applications, ASCII Control Characters can be represented in 3 different ways, as shown below. The CTRL+X func-
tion is OS and application dependent. The following table lists some commonly used Microsoft functionality. This table applies
to U.S. style keyboards. Certain characters may differ depending on your Country Code/PC regional settings.
Non-printable
characters
ASCII control
Keyboard Control + ASCII (CTRL+X) Mode
Windows Mode Control + X Mode On (KBDCAS2)
DEC
HEX
00
Char
Control + X Mode Off (KBDCAS0) CTRL + X
Reserved CTRL+ @
CTRL + X function
0
NUL
A - 2
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Non-printable
characters
ASCII control
Keyboard Control + ASCII (CTRL+X) Mode
Windows Mode Control + X Mode On (KBDCAS2)
DEC
1
HEX
Char
SOH
STX
ETX
EOT
ENQ
ACK
BEL
BS
Control + X Mode Off (KBDCAS0) CTRL + X
CTRL + X function
Select all
Bold
01
02
03
04
05
06
07
08
09
0A
0B
NP Enter
Caps Lock
ALT Make
ALT Break
CTRL Make
CTRL Break
Enter / Ret
(Apple Make)
Tab
CTRL+ A
CTRL+ B
CTRL+ C
CTRL+ D
CTRL+ E
CTRL+ F
CTRL+ G
CTRL+ H
CTRL+ I
CTRL+ J
CTRL+ K
2
3
Copy
4
Bookmark
Center
5
6
Find
7
8
History
Italic
9
HT
10
11
LF
(Apple Break)
Tab
Justify
hyperlink
VT
list,
left align
12
0C
FF
Delete
CTRL+ L
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
127
0D
0E
0F
10
11
12
13
14
15
16
17
18
19
1A
1B
1C
1D
1E
1F
7F
CR
Enter / Ret
Insert
ESC
F11
CTRL+ M
CTRL+ N
CTRL+ O
CTRL+ P
CTRL+ Q
CTRL+ R
CTRL+ S
CTRL+ T
CTRL+ U
CTRL+ V
CTRL+ W
CTRL+ X
CTRL+ Y
CTRL+ Z
CTRL+ [
CTRL+ \
CTRL+ ]
CTRL+ ^
CTRL+ -
SO
New
Open
Print
Quit
SI
DLE
DC1
DC2
DC3
DC4
NAK
SYN
ETB
CAN
EM
Home
PrtScn
Backspace
Back Tab
F12
Save
F1
Paste
F2
F3
F4
SUB
ESC
FS
F5
F6
F7
GS
F8
RS
F9
US
F10
NP Enter
⌂
Lower ASCII Reference Table
Note: Windows Code page 1252 and lower ASCII use the same characters.
Printable Characters
DEC
HEX
Character
DEC
HEX
Character
DEC
HEX
Character
32
33
34
35
36
37
38
20
21
22
23
24
25
26
<SPACE>
!
"
#
$
%
&
64
65
66
67
68
69
70
40
41
42
43
44
45
46
@
A
B
C
D
E
F
96
97
98
99
100
101
102
60
61
62
63
64
65
66
`
a
b
c
d
e
f
A - 3
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Printable Characters (Continued)
DEC
HEX
Character
DEC
HEX
Character
DEC
HEX
Character
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
27
28
29
2A
2B
2C
2D
2E
2F
30
31
32
33
34
35
36
37
38
39
3A
3B
3C
3D
3E
3F
'
(
)
*
+
,
-
.
/
0
1
2
3
4
5
6
7
8
9
:
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
47
48
49
4A
4B
4C
4D
4E
4F
50
51
52
53
54
55
56
57
58
59
5A
5B
5C
5D
5E
5F
G
H
I
J
K
L
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
67
68
69
6A
6B
6C
6D
6E
6F
70
71
72
73
74
75
76
77
78
79
7A
7B
7C
7D
7E
7F
g
h
i
j
k
l
m
n
o
p
q
r
M
N
O
P
Q
R
S
T
U
V
W
X
Y
Z
[
s
t
u
v
w
x
y
z
{
|
}
~
⌂
;
<
=
>
?
\
]
^
_
Extended ASCII Characters
Alternate Extended
DEC
HEX
CP 1252
ASCII
PS2 Scan Code
128
80
Ç
0x48
up arrow
down arrow
right arrow
↑
129
130
131
81
82
83
ü
é
â
0x50
0x4B
0x4D
↓
→
‚
ƒ
left arrow
←
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
84
85
86
87
88
89
8A
8B
8C
8D
8E
8F
90
91
92
93
94
95
„
…
†
‡
ˆ
‰
Š
‹
ä
à
å
ç
ê
ë
è
ï
Insert
Delete
Home
End
0x52
0x53
0x47
0x4F
0x49
0x51
0x38
0x1D
n/a
Page Up
Page Down
Right ALT
Right CTRL
Reserved
Reserved
Numeric Keypad Enter
Numeric Keypad /
F1
F2
F3
F4
F5
F6
Œ
î
ì
n/a
Ž
Ä
Å
É
æ
Æ
ô
ö
ò
0x1C
0x35
0x3B
0x3C
0x3D
0x3E
0x3F
0x40
‘
’
“
”
•
A - 4
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Extended ASCII Characters (Continued)
DEC
HEX
CP 1252
ASCII
Alternate Extended
PS2 Scan Code
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
96
97
98
99
–
—
˜
™
š
›
û
ù
ÿ
Ö
Ü
¢
£
¥
₧
ƒ
á
í
ó
ú
ñ
Ñ
ª
º
F7
F8
F9
F10
F11
F12
0x41
0x42
0x43
0x44
0x57
0x58
0x4E
0x4A
0x37
0x3A
0x45
0x38
0x1D
0x2A
0x36
n/a
0x0F
0x8F
0x1C
0x01
0x36
0xB6
0x1D
0x9D
0x36
0x1D
9A
9B
9C
9D
9E
9F
A0
A1
A2
A3
A4
A5
A6
A7
A8
A9
AA
AB
AC
AD
AE
AF
B0
B1
B2
B3
B4
B5
B6
B7
B8
B9
BA
BB
BC
BD
BE
BF
C0
C1
C2
C3
C4
C5
C6
C7
C8
C9
œ
Numeric Keypad +
Numeric Keypad -
Numeric Keypad *
Caps Lock
Num Lock
Left Alt
Left Ctrl
Left Shift
Right Shift
Print Screen
Tab
ž
Ÿ
¡
¢
£
¤
¥
¦
§
¨
©
ª
Shift Tab
Enter
Esc
Alt Make
¿
⌐
¬
½
¼
¡
«
¬
Alt Break
Control Make
Control Break
Alt Sequence with 1 Character
Ctrl Sequence with 1 Character
®
¯
°
«
»
░
▒
▓
│
┤
╡
╢
╖
╕
╣
║
╗
╝
╜
╛
┐
└
┴
┬
├
─
í
²
³
´
µ
¶
·
¸
¹
º
»
¼
½
¾
¿
À
Á
Â
Ã
Ä
Å
Æ
Ç
È
É
╞
╟
╚
╔
A - 5
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Extended ASCII Characters (Continued)
DEC
HEX
CP 1252
ASCII
Alternate Extended
PS2 Scan Code
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
CA
CB
CC
CD
CE
CF
D0
D1
D2
D3
D4
D5
D6
D7
D8
D9
DA
DB
DC
DD
DE
DF
E0
E1
E2
E3
E4
E5
E6
E7
E8
E9
EA
EB
EC
ED
EE
EF
F0
F1
F2
F3
F4
F5
F6
F7
F8
F9
FA
FB
FC
FD
Ê
Ë
Ì
Í
Î
╩
╦
╠
═
╬
╧
╨
╤
╥
╙
╘
╒
╓
╫
╪
┘
┌
█
▄
▌
▐
▀
α
Ï
Ð
Ñ
Ò
Ó
Ô
Õ
Ö
×
Ø
Ù
Ú
Û
Ü
Ý
Þ
ß
à
á
â
ã
ä
å
æ
ç
è
é
ê
ë
ì
í
î
ï
ð
ñ
ò
ó
ô
õ
ö
÷
ø
ù
ú
û
ü
ý
ß
Γ
π
Σ
σ
µ
τ
Φ
Θ
Ω
δ
∞
φ
ε
∩
≡
≥
≤
⌠
⌡
÷
≈
°
·
·
√
ⁿ
²
A - 6
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Extended ASCII Characters (Continued)
DEC
HEX
CP 1252
ASCII
Alternate Extended
PS2 Scan Code
254
255
FE
FF
þ
ÿ
■
ISO 2022/ISO 646 Character Replacements
Code pages define the mapping of character codes to characters. If the data received does not display with the proper charac-
ters, it may be because the bar code being scanned was created using a code page that is different from the one the host pro-
gram is expecting. If this is the case, select the code page with which the bar codes were created. The data characters should
then appear properly.
Code Page Selection Method/Country
Standard
Keyboard Country
Honeywell Code Page
Option
United States
(standard ASCII)
ISO/IEC 646-IRV
ISO/IEC 2022
n/a
n/a
n/a
n/a
1
Automatic National Character
Replacement
2 (default)
3
Binary Code page
Default “Automatic National Character replacement” will select the below Honeywell Code Page options for Code128, Code
39 and Code 93.
United States
ISO/IEC 646-06
ISO /IEC 646-121
ISO /IEC 646-122
ISO/IEC 646-14
ISO/IEC 646-57
ISO /IEC 646-04
ISO /IEC 646-69
ISO/IEC646-21
ISO /IEC 646-CH
ISO/IEC 646-11
ISO /IEC 646-207
ISO/IEC 646-08
ISO/IEC 646-60
ISO/IEC 646-15
ISO/IEC 646-16
ISO/IEC 646-17
ISO/IEC 646-85
0
1
Canada
54
18
28
92
7
95
96
98
99
87
83
84
86
82
97
88
94
85
92
90
91
Canada
Japan
China
Great Britain (UK)
France
3
Germany
4
Switzerland
6
Sweden / Finland (extended Annex C)
2
Ireland
Denmark
Norway
Italy
73
8
9
5
Portugal
Spain
13
10
51
Spain
A - 7
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Dec
Hex
35
23
36
24
64
40
91
5B
92
5C
93
94
5E
96
60
123
7B
124
7C
125
7D
126
7E
5D
US
0
54
18
28
92
7
1
#
#
#
#
#
£
£
#
ù
#
#
#
£
£
#
#
#
$
$
$
$
¥
$
$
$
$
¤
$
$
$
$
$
$
$
@
à
[
â
â
[
\
ç
]
ê
ê
]
^
î
`
ô
ô
`
{
é
é
{
|
ù
ù
|
|
|
ù
ö
ö
ö
ø
ø
í
}
è
è
}
~
û
û
⎯
CA
95
96
98
99
87
83
84
86
82
88
94
97
85
92
90
91
à
ç
É
^
^
^
^
^
î
CA
JP
@
@
@
à
¥
\
[
]
`
{
}
CN
GB
FR
⎯
[
\
]
`
{
}
˜
¨
°
ç
§
Ü
ê
Å
Å
Å
Ú
é
Õ
¿
Ç
µ
`
é
ä
ä
ä
æ
æ
é
à
ã
°
è
ü
ü
å
å
å
ú
è
õ
ç
ç
3
§
Ä
é
Ä
Æ
Æ
É
°
Ö
ç
ß
û
ü
˜
¨
DE
CH
SE/FI
DK
NO
IE
4
à
ô
é
`
6
É
Ö
Ø
Ø
Í
Ü
^
^
Á
^
^
^
¿
2
@
@
Ó
§
8
`
9
ó
ù
`
á
ì
73
5
ç
ò
ç
IT
§
Ã
¡
Ç
Ñ
Ñ
°
PT
13
10
51
§
`
ñ
ñ
˜
¨
ES
·
¡
`
´
ES
ISO / IEC 646 National Character Replacements
A - 8
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Unicode Key Maps
6E
70 71 72 73
74 75 76 77
78 79 7A 7B 7C 7D 7E
01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0F
10 11 12 13 14 15 16 17 18 19 1A 1B 1C 1D
1E 1F 20 21 22 23 24 25 26 27 28 29 2B
4B 50 55
4C 51 56
5A 5F 64 69
5B 60 65
6A
5C 61 66
2C 2E 2F 30 31 32 33 34 35 36 37
39
5D 62 67
6C
4F 54 59
63 68
3D
3A 3B 3C
3E 3F 38 40
104 Key U.S. Style Keyboard
6E
70 71 72 73
74 75 76 77
78 79 7A 7B 7C 7D 7E
01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0F
10 11 12 13 14 15 16 17 18 19 1A 1B 1C
1E 1F 20 21 22 23 24 25 26 27 28 29 2A
4B 50 55
4C 51 56
5A 5F 64 69
5B 60 65
2B
6A
5C 61 66
2C 2D 2E 2F 30 31 32 33 34 35 36 37
39
5D 62 67
6C
4F 54 59
63 68
3D
3A 3B 3C
3E 3F 38 40
105 Key European Style Keyboard
A - 9
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A - 10
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Matrix 2 of 5
6543210
GS1 DataBar
(01)00123456789012
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Honeywell Scanning & Mobility
9680 Old Bailes Road
Fort Mill, SC 29707
VG1200-UG Rev E
9/13
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|