Rikaline GPS-6017
GPS Receiver
SiRF Star III
User’s Guide
Dec. 13, 2005
Rikaline International Corp.
14F, 171, ChenGong Rd., Sanchong City, Taipei 241, Taiwan, R.O.C
Phone: +886-2-8973-1899 Fax: +886-2-8973-1896
All Right Reserved
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GPS-6017 Operating Manual
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0. Quick Use
0.1 Check GPS Package
0.1.1 Standard Package
GPS-6017 (GPS Receiver) + Documents CD + Warranty Card + quick installation reference.
0.1.2 Optional Package
The shop may bundle different accessories for you as follows:
1. PC Cable
2. PDA Cable
3. PDA Holder
4. Software (Navigation Software + Digital Map)
5. Others
0.2 Check connector
1. A-6011 RS-232 Serial Port Connector
2. A-6031 USB Connector, Please install USB driver first.
Note: The USB driver is a new one and different from Rikaline GPS-6010 series cable GPS.
3. When you connect your PDA to GPS-6017, you need an optional cable. Check the e mark (FCC) for
safety and ensure the cigarette adapter with correct model number to avoid damaging your PDA.
4. Various cables are ready for your devices.
0.3 Basic Specification
1. Size: 62.0(W) x 46.1(D) x 18.0(H) (mm)
2.44"(W) x 1.81"(D) x 0.71"(H).
2. Weight: 80g
3. Operating temperature: -40oC to +85oC(internal temperature).
4. Input voltage: +3.0 ~ 6.0 VDC without accessories.
5. Backup power: 3V Rechargeable Lithium cell battery, up to 230 hours (9.6 days) discharge.
0.4 Manufacturing Default
1. Sentence: GGA, GSA(5), GSV(5), RMC, VTG
2. Baud Rate: 9600
3. Datum: WGS84
4. WAAS: OFF. (ON is optional for the area of NA and Western Europe)
0.5 Important features
1. Fast acquisition: 20 parallel satellites acquisition
2. Advanced GPS chip: SiRF Star III Single chip
3. Fast TTFF: 200,000 effective correlators for fast TTFF at low signal levels
4. Built-in WAAS/EGNOS (Optional for WAAS/EGNOS covered area) for accurate positioning result.
5. Quick Host start: Built-in rechargeable Lithium battery for backup ephemeris for quick hot start.
6. Support NMEA 0183V2.2 data protocol.
7. Enhanced algorithms provide superior navigation performance in urban, canyon and foliage
environments。
8. User initialization is not required.
9. A rechargeable battery sustains internal clock and memory.
10. LED display status: The LED provides users visible positioning status. LED “BLINKING” when power
connected and stays “ON” when GPS-6017 position identified. No more extra device needed.
11. Built-in Magnets for using on top of the car.
12. Water proof (1 meter) design for all weather.
0.6 Different Models
1. GPS-6017: with PS-2 connector, with RS-232 and TTL dual levels.
2. GPS-6017-U: with A type USB connector.
USB Driver is new and different from other Rikaline cable GPS GPS-6010 / 6010-X5 series.
3. GPS-510 series: Bundled with Destinator software and Navteq map data.
3
Rikaline International Corp. 14F, 171, Chen-Gong Road, SanChong City, Taipei 241, Taiwan
Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
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GPS-6017 Operating Manual
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1. Introduction
1.1 Overview
The Rikaline GPS-6017 Smart Antenna is a total solution GPS receiver, designed based on SiRF Star III
SOC single chip architecture. This positioning application meets strict needs such as car navigation, mapping,
surveying, security, agriculture and so on. Only clear view of sky and certain power supply are necessary to the
unit. It communicates with other electronic utilities via compatible dual-channel through RS-232 or TTL and
saves critical satellite data by built–in backup memory. With low power consumption, the GPS-6017 tracks up
to 12 satellites at a time, re-acquires satellite signals in 100 ms and updates position data every second.
Trickle-Power (optional function) allows the unit operates a fraction of the time and Push-to-Fix (optional
function) permits user to have a quick position fix even though the receiver usually stays off.
1.2 Features
The GPS-6017 provides a host of features that make it easy for integration and use.
1) Fast acquisition: 20 parallel satellites acquisition
2) Advanced GPS chip: SiRF Star III SOC
3) Fast TTFF: 200,000 effective correlators for fast TTFF at low signal levels
4) Built-in WAAS/EGNOS (Optional model for WAAS/EGNOS covered area) and DGPS for accurate
positioning result.
5) Quick Host start: Built-in rechargeable Lithium battery for backup ephemeris for quick hot start.
6) Support MNEA 0183V2.2 data protocol.
7) Enhanced algorithms provide superior navigation performance in urban, canyon and foliage
Environments.
8) User initialization is not required.
9) LED display status: The LED provides users visible positioning status. LED “BLINKING” when power
connected and stays “ON” when GPS-6017 position identified. No more extra device needed.
10) Built-in Magnets for using on top of the car.
11) Water proof (1 meter) design for all weather.
1.3 Technology specifications
1.3.1 Physical Dimension
Single construction integrated antenna/receiver.
Size: 62.0(W) x 46.1(D) x 18.0(H) (mm)
2.44"(W) x 1.81"(D) x 0.71"(H).
Weight: 95g
1.3.2 Environmental Characteristics
6. Operating temperature: -40oC to +85oC(internal temperature).
7. Storage temperature: -55oC to +100oC.
1.3.3 Electrical Characteristics
1) Input voltage: +3.0 ~ 6.0 VDC
+6 ~ 30VDC with accessory A-6014.
2) Backup power: 3V Rechargeable Lithium cell battery, up to 230 hours (9.5 days) discharge.
1.3.4 Performance
1) Acquisition: 20 channel parallel
2) Tracking: up to 12 satellites.
3) Update rate: 1 second.
4) Acquisition time
Reacquisition 0.1 sec., averaged
Snap Start
3 sec, averaged
4
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Hot start
Warm start
Cold start
6 sec, averaged
38 sec., averaged
42 sec., averaged
4) Position accuracy:
A) Non DGPS (Differential GPS)
Position
Velocity
Time
<10 M at 2D RMS
0.1 meters/second, with SA off
1
microsecond synchronized GPS time
B) DGPS (Differential GPS) or WAAS / EGNOS ON (Built by demand)
Position
Velocity
1 ~ 5 meter, typical
0.05 meters/second, typical
5) Dynamic Conditions:
Altitude
18,000 meters (60,000 feet) max
Velocity
Acceleration
Jerk
515
4 G,
20
meters / second (1000 knots) max
max
meters/second, max
1.3.5 Interfaces
1) Dual channel RS-232 or TTL compatible level, with user selectable baud rate (4800, 9600-Default, 19200,
38400).
2) NMEA 0183 Version 2.2 ASCII output (GPGGA, GPGLL, GPGSA, GPGSV, GPRMC, GPVTG).
3) Real-time Differential Correction input (RTCM SC-104 message types 1, 5 and 9).
4) SiRF protocol.
5
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Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
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2. Operational characteristics
2.1 Initialization
As soon as the initial self-test is complete, the GPS-6017 begins the process of satellite acquisition and
tracking automatically. Under normal circumstances, it takes approximately 45 seconds to achieve a position fix,
38 seconds if ephemeris data is known. After a position fix has been calculated, information about valid position,
velocity and time is transmitted over the output channel.
The GPS-6017 utilizes initial data, such as last stored position, date, time and satellite orbital data, to
achieve maximum acquisition performance. If significant inaccuracy exists in the initial data, or the orbital data
is obsolete, it may take more time to achieve a navigation solution. The GPS-6017 Auto-locate feature is
capable of automatically determining a navigation solution without intervention from the host system. However,
acquisition performance can be improved when the host system initializes the GPS-6017 in the following
situation:
1) Moving further than 1,500 kilometers.
2) Failure of data storage due to the inactive internal memory battery.
2.2 Navigation
After the acquisition process is complete, the GPS-6017 sends valid navigation information over output
channels. These data include:
1) Latitude/longitude/altitude
2) Velocity
3) Date/time
4) Error estimates
5) Satellite and receiver status
The GPS-6017 sets the default of auto-searching for real-time differential corrections in RTCM SC-104
standard format, with the message types 1, 5, or 9. It accomplishes the satellite data to generate a differential
(DGPS) solution. The host system, at its option, may also command the GPS-6017 to output a position
whenever a differential solution is available.
6
Rikaline International Corp. 14F, 171, Chen-Gong Road, SanChong City, Taipei 241, Taiwan
Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
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3. Hardware interface
3.1 Dimension
Size: 62.0(W) x 46.1(D) x 18.0(H) (mm)
2.44"(W) x 1.81"(D) x 0.71"(H).
3.2 Hardware
The GPS-6017 includes an antenna in a unique style waterproof gadget. Simply connect PS-2 female
connector to one of the optional accessories and link to either your notebook PC, PDA or other devices. The
one-piece cigarette adapter allows you to connect GPS-6017 to your PDAs. Optional color, input voltage and
output connector are listed and described below:
3.3 Connector
Standard cable: 2 meters with female PS-2 connector.
The GPS-6017 is also equipped with optional customized connectors.
3.3.1 Function definition of standard female PS-2 composite connector
Pin
Signal
Signal
Signal
(Standard)
(DGPS)
(1PPC)
1
Tx
Tx
Tx
(RS-232)
(RS-232)
(RS-232)
2
3
+(3~6) VDC +(3~6) VDC +(3~6) VDC
Tx
NC
NC
(TTL)
4
5
6
Ground
Rx (TTL)
Rx
Ground
DGPS IN
Rx
Ground
1 PPS
Rx
(RS-232)
(RS-232)
(RS-232)
3.4 Accessories
For various applications, we provide different connectors.
7
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3.4.1 A-6011 Mini Din Female and PS-2 male connector:
Cable Length: To GPS-6017: 1 meter
RS-232 to PS-2: 45 cm
Note: PS-2 with long cable (1 meter) is for GPS
PS-2 with short cable (45mm) is for power
3.4.1.1 Mini Din Female connector function definition:
Pin
Signal Name
1
N.C
2
3
4
5
6
7
8
9
Tx
Rx
N.C
Ground
N.C
N.C
N.C
DGPS in
N.C = No connection
3.4.1.2 PS-2 male connector function definition (to PC):
Pin
1
2
Signal Name
+3 ~ +6V
N.C
3
N.C
4
5
Ground
N.C
6
N.C
N.C = No connection
Remarks: A-6011-S is for COM+PS-2 converting to PS-2 female. If you have an old GPS receiver with
standard COM + PS-2 male connector, you may choose an A-6011-S. Then you can use your old
GPS receiver with PDA or USB version PC. PDAs with TTL output are not excluded.
3.4.2 A-6011-E Mini Din Female w/Pin-9 power:
Cable Length: 0.5 meter
3.4.2.1 Mini Din Female connector function definition:
Pin
1
Signal Name
N.C
2
3
4
5
6
7
8
9
Tx
Rx
N.C
Ground
N.C
N.C
N.C
+(3~6)VDC
N.C = No connection
8
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3.4.3 A-6031 USB Cable
The function definition of the A Type USB connector is as follows:
Pin
1
Signal Name
+5V
2
D +
3
D -
4
Ground
3.4.4 A-6014 High power connector
Color
Black
Red
Green
White
Orange
Signal
Ground
+6~30 VDC
Tx(RS-232)
Rx(RS-232)
DGPS IN
VCC (Red)
Tx (Green)
Rx (White)
DGPS (Orange)
(Build on Demand)
Ground (Black)
3.4.5 A-6016 Optional Cigarette Adapter
The optional cigarette adapter with 2-meter core cable is for using in a car or boat. It must be used
together with an A-6011 or an old standard COM + PS-2 GPS receiver. Input voltage: DC12V – 26V
3.4.6 A-6017 Cigarette adapter and PDA connector:
Part No.
Application
ASUA
ACER S series
BESTA I-WINNA
Casio
Dell Axim
Eten
GSL Xplore
HP Jornada
Siemens LOOX
Part No.
Application
Lenovo
Mitac Mio
NEC
Palm
A-6017-A
A-6017-AR
A-6017-B
A-6017-C
A-6017-D
A-6017-E
A-6012-G
A-6017-H
A-6017-L
A-6017-LS
A-6017-M
A-6017-N
A-6017-P
A-6017-Q
A-6017-S
A-6017-SM
A-6017-T
A-6017-X
I-Paq
Sony Series
Siemens SX-45
Toshiba Series
O2-XDA / T-Mobile – MDA
Please find details in page 16
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4. USB Driver
4.1 System Requirements
IBM, Pentium or above and other compatible PC; 16 MB and above memory; Windows 98/Me/2000; VGA
Graphic Adapter.
4.2 Installation
4.2.1 Virtual COM Port Driver Installation Windows XP
Follow these steps to install the Windows XP VCOM driver:
1. Connect the USB cable between the host computer and the cable target device.
2. Windows will open a “Found New Hardware Wizard” window.
3. Select "Install from a list or specific location (Advanced)" and press Next.
4. Select "Include this location in the search".
5. Press Browse to locate the "C:\Rikaline\WIN" directory. Once this directory is selected press OK.
6. Verify that the correct path and filename are shown and press Next.
7. Press Finish to finish installing the "CP210x USB Composite Device".
8. Windows will open a second “Found New Hardware Wizard” window.
9. Select "Install from a list or specific location (Advanced)" and press Next.
10. Select "Include this location in the search".
11. Press Browse to locate the "C:\Rikaline\USB_Cable\WIN" directory. Once this directory is selected press
OK.
12. Verify that the correct path and filename are shown and press Next.
13. Press Finish to finish installing the "CP210x USB to UART Bridge Controller".
4.2.2 Virtual COM Port Driver Installation Windows 98 SE
Follow these steps to install the Windows 98 VCOM driver:
1. Connect the USB cable between the host computer and the cable target device.
2. Windows will open a “Found New Hardware Wizard” window. Press Next to continue.
3. Select "Search for the best driver for your device (Recommended)" and press Next.
4. Select "Specify a location".
5. Press Browse to locate the "C:\Rikaline\USB_Cable\WIN" directory. Once this directory is selected press
Next.
6. Verify that the correct path and filename are shown and press Next.
7. Press Finish to finish installing the "CP210x USB Composite Device".
8. Windows will open a second “Found New Hardware Wizard” window. Press Next to continue.
9. Select "Search for the best driver for your device (Recommended)" and press Next.
10. Select "Specify a location".
11. Press Browse to locate the "C:\Rikaline\USB_Cable\WIN" directory. Once this directory is selected press
Next.
12. Verify that the correct path and filename are shown and press Next.
13. Press Finish to finish installing the "CP210x USB to UART Bridge Controller".
4.2.3 Virtual COM Port Driver Installation Macintosh
To install the Macintosh OS-X virtual COM port driver, extract the cardinal-osx-V1_00c-release.zip file located
in the MACX directory created in "C:\Rikaline\USB_Cable" Next, run the extracted file SLAB_USBtoUART
Installer. To uninstall the driver, run the extracted file SLAB_USBtoUART Uninstaller.
Macintosh OS-9 virtual COM port drivers are currently available by request only.
4.2.4 Virtual COM Port Driver Installation Linux 2.40
The Linux virtual COM port driver included with the CP2102EK evaluation kit support Linux versions 2.40 and
later.
To install the driver, extract the cardinal-redhat9-V0_81a.tar file located in the LINUX directory created in
"C:\Rikaline\USB_Cable" Next, run the extracted file load_mcci_usb. To uninstall the driver, run the extracted
file
unload_mcci_usb.
10
Rikaline International Corp. 14F, 171, Chen-Gong Road, SanChong City, Taipei 241, Taiwan
Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
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GPS-6017 Operating Manual
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5. Warranty
The GPS-6017 is warranted to be free from defects in material and functions for one year from the date of
purchase. Any failure of this product within this period under normal conditions will be replaced at no charge to
the customers.
11
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Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
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Appendix A
Software Interface
The GPS-6017 interface protocol is based on the National Marine Electronics Association's NMEA 0183
ASC Ⅱ interface specification, which is defined in NMEA 0183, Version 2.2 and the Radio Technical
Commission for Maritime Services (RTCM Recommended Standards For Differential Navstar GPS Service,
Version 2.1, RTCM Special Committee No.104).
A.1 NMEA Transmitted Messages
The GPS-6017 supported by SiRF Technology Inc. also outputs data in NMEA-0183 format as defined by
the National Marine Electronics Association (NMEA), Standard.
The default communication parameters for NMEA output are 9600 baud, 8 data bits, stop bit, and no parity.
Table A-1 NMEA-0183 Output Messages
NMEA Sentence
GPGGA
Description
Global positioning system fixed data
Geographic position latitude \ longitude
GNSS DOP and active satellites
GPGLL
GPGSA
GPGSV
GNSS satellites in view.
GPRMC
GPVTG
Recommended minimum specific GNSS data
Course over ground and ground speed
A.1.1 Global Positioning System Fix Data (GGA)
Table A-2 contains the values for the following example:
$GPGGA,161229.487,3723.2475,N,12158.3416,W,1,07,1.0,9.0,M, , , ,0000*18
Table A-2 GGA Data Format
Name
Message ID
Example
$GPGGA
Units
Description
GGA protocol header
UTC Time
161229.487
Hhmmss.sss
Latitude
3723.2475
ddmm.mmmm
N/S Indicator
Longitude
N
N=north or S=south
dddmm.mmmm
12158.3416
E/W Indicator
Position Fix Indicator
Satellites Used
HDOP
MSL Altitude
Units
Geoid Separation
Units
Age of Diff. Corr.
Diff. Ref. Station ID
Checksum
W
1
07
1.0
9.0
M
E=east or W=west
See Table 5-3
Range 0 to 12
Horizontal Dilution of Precision
Meters
Meters
Meters
Meters
second
M
Null fields when DGPS is not used
End of message termination
Description
0000
*18
<CR> <LF>
Table A-3 Position Fix Indicator
Value
0
1
2
3
0 Fix not available or invalid
GPS SPS Mode, fix valid
Differential GPS, SPS Mode, fix valid
GPS PPS Mode, fix valid
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A.1.2 Geographic Position with Latitude/Longitude (GLL)
Table A-4 contains the values for the following example:
$GPGLL,3723.2475,N,12158.3416,W,161229.487,A*2C
Table A-4 GLL Data Format
Name
Message ID
Latitude
N/S Indicator
Longitude
E/W Indicator
UTC Position
Status
Example
$GPGLL
3723.2475
N
12158.3416
W
Units
Description
GLL protocol header
ddmm.mmmm
N=north or S=south
dddmm.mmmm
E=east or W=west
hhmmss.sss
161229.487
A
A=data valid or V=data not valid
Checksum
<CR> <LF>
*2C
End of message termination
A.1.3 GNSS DOP and Active Satellites (GSA)
Table A-5 contains the values for the following example:
$GPGSA,A,3,07,02,26,27,09,04,15, , , , , ,1.8,1.0,1.5*33
Table A-5 GSA Data Format
Name
Message ID
Mode 1
Example
$GPGSA
Units
Description
GSA protocol header
A
3
See Table 5-6
See Table 5-7
Mode 2
Satellite Used (1)
Satellite Used (1)
……
07
02
Sv on Channel 1
Sv on Channel 2
….
Satellite Used
PDOP
HDOP
VDOP
Checksum
<CR> <LF>
Sv on Channel 12
Position Dilution of Precision
Horizontal Dilution of Precision
Vertical Dilution of Precision
1.8
1.0
1.5
*33
End of message termination
(1) Satellite used in solution.
Table A-6 Mode 1
Value
Description
M
A
Manual—forced to operate in 2D or 3D mode
2D Automatic—allowed to automatically switch 2D/3D
Table A-7 Mode 2
Value
Description
1
2
3
Fix Not Available
2D
3D
A.1.4 GNSS Satellites in View (GSV)
Table A-8 contains the values for the following example:
$GPGSV,2,1,07,07,79,048,42,02,51,062,43,26,36,256,42,27,27,138,42*71
$GPGSV,2,2,07,09,23,313,42,04,19,159,41,15,12,041,42*41
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Table A-8 GSV Data Format
Name Example
Message ID
Units
Description
GSV protocol header
Range 1 to 3
$GPGSV
2
Number of Messages
Message Number
Satellites in View
Satellite ID
Elevation
1
07
07
79
Range 1 to 3
Range 1 to 12
Channel 1 (Range 1 to 32)
degrees Channel 1 (Maximum 90)
Azimuth
SNR (C/No)
....
048
42
....
degrees Channel 1 (True, Range 0 to 359)
dBHz Range 0 to 99, null when not tracking
Satellite ID
Elevation
27
27
Channel 4 (Range 1 to 32)
degrees Channel 4 (Maximum 90)
Azimuth
138
42
*71
degrees Channel 4 (True, Range 0 to 359)
dBHz Range 0 to 99, null when not tracking
SNR (C/No)
Checksum
<CR> <LF>
End of message termination
NOTE: Items <4>,<5>,<6> and <7> repeat for each satellite in view to a maximum of four (4) satellites per
sentence. Additional satellites in view information must be sent in subsequent sentences. These fields will be
null if unused.
A.1.5 Recommended Minimum Specific GNSS Data (RMC)
Table A-9 contains the values for the following example:
$GPRMC,161229.487,A,3723.2475,N,12158.3416,W,0.13,309.62,120598, ,*10
Table A-9 RMC Data Format
Name
Message ID
UTC Time
Example
$GPRMC
161229.487
A
3723.2475
N
12158.3416
W
0.13
309.62
120598
Units
Description
RMC protocol header
hhmmss.sss
Status
Latitude
A=data valid or V=data not valid
ddmm.mmmm
N=north or S=south
dddmm.mmmm
N/S Indicator
Longitude
E/W Indicator
Speed Over Ground
Course Over Ground
Date
E=east or W=west
Knots
Degrees True
ddmmyy
Degrees E=east or W=west
Magnetic Variation (1)
Checksum
*10
<CR> <LF>
End of message termination
(1) SiRF Technology Inc. does not support magnetic declination. All “course over ground” data are
geodetic WGS84 directions.
A.1.6 Course Over Ground and Ground Speed
Table A-10 contains the values for the following example:
$GPVTG,309.62,T, ,M,0.13,N,0.2,K*6E
Table A-10 VTG Data Format
Name
Message ID
Course
Reference
Course
Example
$GPVTG
309.62
T
Units
Description
VTG protocol header
Degrees Measured heading
True
Degrees Measured heading
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Reference
Speed
Units
Speed
M
0.13
N
0.2
K
Magnetic (1)
Knots
Km/hr
Measured horizontal speed
Knots
Measured horizontal speed
Kilometers per hour
Units
Checksum
<CR> <LF>
*6E
End of message termination
(1) SiRF Technology Inc. does not support magnetic declination. All “course over ground” data are
geodetic WGS84 directions.
A.2 RTCM Received Data
The default communication parameters for DGPS Input are 9600 baud, 8 data bits, stop bit, and no parity.
Position accuracy of less than 5 meters can be achieved with the GPS-6017 by using Differential GPS (DGPS)
real-time pseudo-range correction data in RTCM SC-104 format, with message types 1, 5, or 9. As using
DGPS receiver with different communication parameters, GPS-6017 may decode the data correctly to generate
accurate messages and save them in battery-back SRAM for later computing.
15
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Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
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GPS-6017 Operating Manual
Rikaline
Appendix B Earth Datums & Output Setting
B.1 Earth Datums
The GPS-6017 is built in earth datum with WGS84.
B.2 Setting
B.2.1 Manufacturing Default
Datum: WGS84.
Baud Rate: 9600.
Output: GGA, GSA, GSV, RMC, VTG.
WAAS/EGNOS: OFF (Optional ON is for the area covered by WAAS/EGNOS)
B.2.2 Baud Rate and Output Sentences Setting
B.2.2.1 By SiRFdemo Program
1// Connect your GPS-6017 to PC (either COM or USB)
2// Execute SiRFdemo.exe (Program is in the CD)
3// When “Data Source Setup” shows, select the port (COM 1, 2 or 3….) you used, click “OK”.
4// Click “Action”, select “Open Data Source”, Then you will see lots of sentences shows. All the sentences
start with $GPxxxx. This is NMEA protocol. If you do not see these sentences, please click “View”,
“Select Message”, then click “Development”. The message will appear. If it still shows nothing, then
continue below steps.
5// There is a screen “Selection of Target Receiver Software” might appear, please select “SiRFstar II”.
6// Click “Action”, Select “Switch to SiRF Protocol”. Then you will see SiRF binary and the sentences start
with #Time, shows every 4 lines and you can not see the sentences start with $GP. These sentences
are for setting or viewing the GPS receiver’s performance. If your software is using standard NMEA
protocol, please do the following:
7// Click “Action”, Select “Switch to NMEA Protocol”. You will see GGA, GSV, GSA and RMC in black and
the Baud Rate is 4800. These are the default we put inside the receiver. Please click “OK”. Then you
can use it as a standard GPS receiver. If your software uses different sentence, please choose the
sentences you need.
After above actions, the new setting will be kept in SRAM. If no power supplied to GPS-6017 for more than
than 10 days, user must re-set again when power on.
B.2.2.2 By other SiRF based demo program
There are a few companies or private website providing some very good demo software.
16
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GPS-6017 Operating Manual
Rikaline
Appendix C Ordering Information
C.1 Product Options
C.1.1 OutPut Level (or Data)
GPS-6017: RS-232 & TTL (Standard) With 2-meter Cable and PS-2 Female Connector.
C.1.2 Color Option
BK Black (Standard)
Other Color: by demand
C.2 Accessories
C.2.1 Cables
A-6011
Com Port connector (For use with standard RS-232 port)
A-6011-S Standard COM+PS-2 converting to PS-2 connector (Enable standard old GPS receiver to use
with PDA or PC)
A-6011-E Mini Din connector with pin 9 POWER
A-6012
A-6014
A-6015
A-6016
A-6031
A-6017
PDA connector with Cigarette Adapter (850mA)
High power adapter, 6-30VDC
Magnetic pad (for GPS-6017 only)
Cigarette adapter, must be used with A-6011 or standard COM + PS-2 GPS.
USB connector (Use with standard GPS-6017)
PDA connector with Cigarette Adapter (2A)
Seq.
1
2
3
4
Part No.
A-6017-A
A-6017-A1
A-6017-AR
A-6017-AR2
A-6017-B
Appl. Model
ASUS A-600
ASUS A-620
ACER S60 / N20 series
ACER N30
5
BESTA I-WINNA
6
7
8
9
A-6017-C
A-6017-C1
A-6017-C2
A-6017-D
A-6017-D1
A-6017-E
A-6012-G
A-6012-G1
A-6017-H
A-6017-HS
A-6017-HS1
A-6017-HS2
A-6017-L
A-6017-LS
A-6017-M
A-6017-N
A-6017-P
A-6017-P1
A-6012-P3
A-6017-Q
A-6017-Q1
A-6017-S
Casio E-115
Casio E-125
Casio E-200
Dell Axim X-5
Dell Axim X-3
Eten P603
GSL Xplore G18
GSL Xplore G88
HP Jornada 52xx / 54xx / 56xx
HandSpring Treo
HandSpring Visor\Prism
HandSpring Edge
Siemens LOOX
Lenovo SP-230
Mitac Mio 528 / 338 / Yakumo Alpha+Delta
NEC 300E
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
Palm Vx
Palm / IBM WorkPad 500/505/
Palm Zire 71/72, Tungsten T\T2\T3
I-Paq 36xx / 37xx
I-Paq 38xx / 39xx / 54xx
Sony N-7xx / S-xx
Sony T-6xx / NR-xx / SL-xx / SJ-xx
Siemens SX-45
A-6017-S1
A-6017-SM
A-6017-T1
Toshiba E-570
17
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GPS-6017 Operating Manual
Rikaline
Seq.
31
32
Part No.
A-6017-T2
A-6017-X
Appl. Model
Toshiba E-330/740
O 2 – XDA / T-Mobiles – MDA
MDA II
33
A-6017-X1
Remarks: All A-6017 series Cigarette Adapters are up to 2A and with certificate of
CE, FCC and e mark no. 021433.
All A-6012 series Cigarette Adapters are up to 850mA with certificate of
CE, FCC and e mark too.
C.2.2 PDA Holders
1
A-2002-B PDA Holder, Suction Cup, 150mm, Short Arm, Magnetic Pad
A-2002-BL PDA Holder, Suction Cup, 320mm, Long Arm, Magnetic Pad
A-2011 Talk Holder, w/main unit, suction cup, cig. power & 4.0mmGPS power cable
A-2501-xx PDA connector and earphone cable, xx means different PDA
A-2011 PDA holder
2
3
4
5
C.3 Products Combination
C.3.1 Standard package
GPS-6017 (GPS Receiver) + Documents CD + Warranty Card + quick installation reference.
C.3.2 Other Combination for GPS Application
C.3.2.1 Navigation
GPS-6017 + A-6011 Laptop PC Navigation (COM version)
GPS-6017 + A-6012 PDA Navigation (850mA power)
GPS-6017 + A-6031 Laptop PC Navigation (USB version)
GPS-6017 + A-6017 PDA Navigation (2A power)
C.3.2.2 Other Popular GPS Application
GPS-6017 + GPS system for Tracking, Security, Fleet Management
18
Rikaline International Corp. 14F, 171, Chen-Gong Road, SanChong City, Taipei 241, Taiwan
Tel: ++886 2 8973 1899
Fax: ++886 2 8973 1896
E-Mail: [email protected]
Download from Www.Somanuals.com. All Manuals Search And Download.
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