ASM-10/8
Short Range Modem
Installation and Operation Manual
Notice
This manual contains information that is proprietary to RAD Data Communications. No part of this
publication may be reproduced in any form whatsoever without prior written approval by RAD Data
Communications.
No representation or warranties for fitness for any purpose other than what is specifically mentioned in
this manual is made either by RAD Data Communications or its agents.
For further information contact RAD Data Communications at the address below or contact your local
distributor.
International Headquarters
U.S. Headquarters
RAD Data Communications Ltd.
RAD Data Communications Inc.
24 Raoul Wallenberg St.
Tel Aviv 69719 Israel
Tel: 972-3-6458181
Fax: 972-3-6498250
E-mail: [email protected]
900 Corporate Drive
Mahwah, NJ 07430 USA
Tel: (201) 529-1100
Toll free: 1-800-444-7234
Fax: (201) 529-5777
E-mail: [email protected]
© 2000 RAD Data Communications
Publication No. 600-200-09/00
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Warranty
This RAD product is warranted against defects in material and workmanship for a period of one year
from date of shipment. During the warranty period, RAD will, at its option, either repair or replace
products which prove to be defective. For warranty service or repair, this product must be returned to
a service facility designated by RAD. Buyer shall prepay shipping charges to RAD and RAD shall pay
shipping charges to return the product to Buyer. However, Buyer shall pay all shipping charges, duties
and taxes for products returned to RAD from another country.
Limitation of Warranty
The foregoing warranty shall not apply to defects resulting from improper or inadequate maintenance
by Buyer, Buyer-supplied firmware or interfacing, unauthorized modification or misuse, operation
outside of the environmental specifications for the product, or improper site preparation or
maintenance.
Exclusive Remedies
The remedies provided herein are the Buyer's sole and exclusive remedies. RAD shall not be liable for
any direct, indirect special, incidental, or consequential damages, whether based on contract, tort, or
any legal theory.
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Safety Warnings
The exclamation point within a triangle is intended to warn the operator or
service personnel of operation and maintenance factors relating to the
product and its operating environment which could pose a safety hazard.
Always observe standard safety precautions during installation, operation and maintenance of this
product. Only a qualified and authorized service personnel should carry out adjustment, maintenance
or repairs to this instrument. No adjustment, maintenance or repairs should be performed by either the
operator or the user.
Telecommunication Safety
The safety status of each of the ports on ASM-10/8 is declared according to EN 41003 and is detailed
in the table below:
Safety Status
Ports
DTE
Line
SELV*
TNV* operating within the limits of SELV*
SELV = Safety Extra-Low Voltage
TNV = Telecommunications Network Voltage
Regulatory Information
FCC-15 User Information
This equipment has been tested and found to comply with the limits of the Class A digital device,
pursuant to Part 15 of the FCC rules. These limits are designed to provide reasonable protection against
harmful interference when the equipment is operated in a commercial environment. This equipment
generates, uses and can radiate radio frequency energy and, if not installed and used in accordance
with the instruction manual, may cause harmful interference to the radio communications. Operation
of this equipment in a residential area is likely to cause harmful interference in which case the user will
be required to correct the interference at his own expense.
Warning per EN 55022
This is a Class A product. In a domestic environment, this product may cause radio interference, in
which case the user may be required to take adequate measures.
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Declaration of Conformity
Manufacturer’s Name:
RAD Data Communications Ltd.
Manufacturer’s Address:
24 Raoul Wallenberg St.
Tel Aviv 69719
Israel
declares that the product:
Product Name:
ASM-10/8
Conforms to the following standard(s) or other normative document(s):
EMC:
EN 55022 (1994)
Limits and methods of measurement of radio disturbance
characteristics of information technology equipment.
EN 50082-1 (1992)
Electromagnetic compatibility – Generic immunity standards
for residential, commercial and light industry.
Safety:
EN 60950 (1992/93) Safety of information technology equipment, including
electrical business equipment.
Supplementary Information:
The product herewith complies with the requirements of the EMC Directive 89/336/EEC and the Low
Voltage Directive 73/23/EEC. The product was tested in a typical configuration.
Tel Aviv, October 23rd, 1996
Haim Karshen
VP Quality
European Contact: RAD Data Communications GmbH, Berner Strasse 77, 60437 Frankfurt am Main, Germany
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Quick Start Guide
Installation of ASM-10/8 should be carried out only by an experienced
technician. If you are familiar with ASM-10/8, use this quick start guide to
set it up for operation.
Perform the following steps for both the local and the remote units:
QS.1 Installing ASM-10/8
Set the ASM-10/8 internal jumpers and switches correctly for the chosen
operating mode. Refer to the table below for the possible settings.
Switch and
Jumper Settings
Make sure that the power cord is disconnected before removing the
unit's cover.
Warning
Jumper
Possible Settings
Default Setting
SWITCH
EN
EN
DIS
2W/4W
AGC
4W
4W
2W
ON
CTRL
ON
CTRL
ON
CARRIER
XMT LEVEL
ON
0 dbm
-3 dbm
-6 dbm
-9 dbm
0 dbm
XMT IMPD
600
300
150
LOW
150
Installing ASM-10/8
1
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Quick Start Guide
ASM-10/8 Installation and Operation Manual
Jumper
Possible Settings
Default Setting
RPF
ON
OFF
EN
ON
PIN 18
EN
DIS
PIN 21
EN
EN
DIS
CHAS GND
RCV IMPD
CONN
DIS
CONN
150
150
300
600
HIGH
CTS-DLY
Data Rate
0 msec
8 msec
64 msec
8 msec
9.6
0 – 19.2
1 – 14.4
2 – 9.6
3 – 7.2
4 – 4.8
5 – 3.6
6 – 2.4
7 – 1.2
XMT TIMING
INT CK
EXT CK
RCV CK
ASYNC
INT CK
OFF
V.54 DLY
ON
OFF
S1
DIP Switch
For future use
OFF
S2
S3
ON (10 BIT)
OFF (10 BIT)
S4
2
Installing ASM-10/8
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ASM-10/8 Installation and Operation Manual
Quick Start Guide
Connecting the Line
Connecting the
Interfaces
➤ To connect the line:
1. Connect the transmit pair to the terminals marked XMT.
2. Connect the receive pair to the terminals marked RCV.
3. Connect the ground wire to the terminal designated GND (optional).
Connecting the DTE
➤ To connect the DTE:
• Connect the DTE to the DTE connector on the rear panel of ASM-10/8.
Connecting the
Power
➤ To connect the power:
1. Connect the power cable to the connector on the ASM-10/8 rear panel.
2. Connect the power cable to the mains outlet.
The unit will be turned on automatically upon connection to the
mains.
QS.2 Operating ASM-10/8
When data is being transferred, observe that the following front panel LEDs
light or blink:
Verifying
Performance
• PWR – On
• TD – Blinks or On
• RD – Blinks or On
• RTS – On
• DCD – On
• TEST – Off.
Operating ASM-10/8
3
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Quick Start Guide
ASM-10/8 Installation and Operation Manual
4
Operating ASM-10/8
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Chapter 1
Introduction
This chapter describes the basic physical and functional features of the
ASM-10/8 short-range modem, as well as some typical applications. It
discusses the following topics:
• An overview of the modem
• Physical description
• Functional description
• Technical specifications.
1.1 Overview
ASM-10/8 is a short-range modem, which operates over unconditioned
lines. It can function in full or half-duplex mode with synchronous or
asynchronous transmission format. ASM-10/8 has an extended range of up
to 28 km (17.4 miles) on 24 AWG wire, and more depending on wire gauge
and data rate (see Table 1-1). It operates at eight selectable rates ranging
from 1.2 kbps to 19.2 kbps.
General
Versions
The following versions of the modem available:
• ASM-10/8 standalone unit
• ASM-10/8/R: a plug-in card for installation in the ASM-MN-214
19" hub, holding up to 14 cards.
Power Supply Versions
The power supply options are:
• For the standalone power supply: 100 VAC, 115 VAC; or 230 VAC.
• For the rack main power supply: 100 VAC, 115 VAC; or 230 VAC; or
-48 VDC, or 24 VDC.
09/10/00 16:26
Overview
1-1
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Chapter 1. Introduction
ASM-10/8 Installation and Operation Manual
The following diagrams illustrate the ASM-10/8 in a variety of configurations:
• Point-to-point applications
Applications
• Multipoint applications
• Tail-end for DDS service applications
• Star applications.
4-wire
up to 55 km
ASM-10/8
ASM-10/8
1.2 - 38.4 kbps
Figure 1-1 ASM-10/8 Point-to-Point Application
XMT Pair
Slave 1
XMT Impedance – 150
RCV Impedance – High
Ω
RCV Pair
ASM-10/8
ASM-10/8
ASM-10/8
Master
XMT Impedance – LOW
RCV Impedance – 150
Ω
Slave 2
XMT Impedance – 150
Ω
RCV Impedance – High
Slave 3
XMT Impedance – 150
Ω
RCV Impedance – High
ASM-10/8
Slave N
XMT Impedance – 150
Ω
RCV Impedance – High
ASM-10/8
Figure 1-2 ASM-10/8 Multipoint Application
1-2
Overview
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ASM-10/8 Installation and Operation Manual
Chapter 1. Introduction
Digital
Service
Network
ASM-10/8
ASM-10/8
EXT CLK
EXT CLK
V.54 DLY-ON
V.54 DLY-ON
ASM-10/8
ASM-10/8
RCV CLK
V.54 DLY-OFF
RCV CLK
V.54 DLY-OFF
Figure 1-3 ASM-10/8 Tail-End for DDS Service Application
ASM-10/8
Slave
ASM-10/8
Slave
ASM-10/8
Master
ASM-10/8
Slave
Figure 1-4 ASM-10/8 Star Application
In the star application, set the XMT and RCV impedance of all the modems to
150W.
Note
The ASM-10/8 modem uses conditioned differential diphase modulation
(EUROCOM Std. D1) to provide protection from background noise,
eliminate normal line distortion and permit efficient transmission and
reception of serial data over twisted pair cable. ASM-10/8 is connected to
the telephone line through isolation transformers which, in conjunction with
electronic circuitry, protect the device against AC or DC voltage fluctuations.
The protection circuitry permits operation of ASM-10/8 even when DC is
connected to the line.
Features
The modem's transmit level and transmit and receive impedances are
independently selectable. The transmit timing is either provided internally,
or it is derived externally from the data terminal or regenerated from the
receive signal. The modem's receive timing is regenerated from the receive
signal.
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Overview
1-3
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Chapter 1. Introduction
ASM-10/8 Installation and Operation Manual
ASM-10/8 communicates over lines in synchronous mode only. When set to
the asynchronous mode, ASM-10/8 performs an asynchronous to
synchronous conversion in compliance with ITU V.14 bis standard.
The unit has line protection circuits against lightning and power surges.
ASM-10/8 V.54 diagnostic capabilities include:
• Local digital loopback (DIG), activated by the front-panel push button
• Remote digital loopback (REM), activated by the front-panel push button
or DTE interface signal, pin 21
• Local analog loopback (ANA), activated by the front-panel push button or
DTE interface signal, pin 18.
ASM-10/8 also operates in conjunction with the MCS-10 dual modem card
of the MCS-12 Monitoring and Control System.
The ASM-10/8/R card is capable of sensing and indicating power failure on
the remote ASM-10/8 standalone unit. When this feature is enabled, the
RPF LED lights in case of a remote power failure.
Transmission Range
Table 1-1 lists the ASM-10/8 approximate transmit ranges over 19, 24 or
26 gauge wires.
Table 1-1 ASM-10/8 Transmission Ranges
Speed
19 AWG
24 AWG
26 AWG
(0.9 mm)
(0.5 mm)
(0.4 mm)
(kbps)
19.2
14.4
9.6
km
miles
14.0
15.3
18.1
20.5
22.5
25.0
29.3
34.3
km
miles km
miles
22.5
24.5
29.0
33.0
36.0
40.0
47.0
55.0
10.0
11.0
13.0
15.0
16.0
18.0
21.0
28.0
6.2
7.5
4.7
5.1
5.9
6.9
7.5
8.4
9.8
13.1
6.9
8.2
8.1
9.5
7.2
9.4
11.0
12.0
13.5
15.7
21.0
4.8
10.0
11.2
13.1
17.5
3.6
2.4
1.2
1-4
Overview
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ASM-10/8 Installation and Operation Manual
Chapter 1. Introduction
1.2 Physical Description
ASM-10/8 is available as a standalone desktop unit or as a card for the
ASM-MN-214 hub. Figure 1-5 shows the 3D view of the ASM-10/8
standalone unit.
Figure 1-5 ASM-10/8 Standalone Unit
The front panel includes six LEDs, which display the status of power, data
flow, control signals and diagnostics. Three front-panel switches control the
three loopback modes. For detailed description of the front panel, see
Chapter 3, Operation.
The back panel includes an AC cord connector with fuse, an interface
connector, and a terminal block with a ground connection for connecting
the telephone lines. The ASM-10/8 rear panel is described in greater detail,
in Chapter 2, Installation and Setup.
The internal switches and jumpers can be configured to support a variety of
modes for operating the modem. Refer to Setting the Internal Jumpers in
Chapter 2 for details on jumper location and setting.
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Physical Description
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Chapter 1. Introduction
ASM-10/8 Installation and Operation Manual
1.3 Functional Description
This section contains functional descriptions of the circuit blocks of
ASM-10/8, primarily those circuits which are required for setting the desired
modem configuration (see Figure 1-6).
General
Encoder
The encoder modulates the input data from the DTE using the conditional
diphase modulation technique.
The encoder can be configured to operate in one of the following different
modes:
• 4-wire full duplex
• 4-wire half duplex
• 2-wire half duplex
• 4-wire multipoint
• 2-wire multipoint.
This circuit supplies the transmit clock signal to the encoder.
The following clock sources are available:
Modulation
Timing
• INT.CK (internal clock) – from the modem's internal crystal oscillator)
• EXT.CK (external clock) – from DTE, pin 24
• RCV.CK (receive clock) – recovered from the received signal
• ASYNC – asynchronous timing for working with the async to sync
converter in asynchronous applications.
Timing options are selected using the XMT TIMING jumpers.
ASM-10/8 has an internal asynchronous to synchronous converter (used for
asynchronous data).
Async to Sync
Converter
Asynchronous transmission is provided by internal conversion from
asynchronous to synchronous mode in compliance with ITU V.22 bis. In this
standard, the modem compensates for frequency deviation between the
modem and the DTE by adjusting the length of the stop bit of the async
character. If the modem's frequency is higher than the DTE, the local
converter extends the stop bit. If the modem's frequency is lower than the
DTE, the local converter deletes one stop bit in every four (25%) or eight
(12.5%) characters. The remote converter will add a shorter stop bit (shorter
by 12.5% or 25%) before sending the data to the remote DTE.
Shortening the stop bits by 12.5% is suitable for frequency deviations up to
1.1% and shortening the stop bits by 25% is suitable for frequency
deviations up to 2.3%.
Four options are available for the XMT level (signal level): 0, -3, -6, -9 dBm.
XMT Level and
XMT Filter
(optional)
An optional output filter for the line is available. This filter complies with
Bell 43401 standard and meets British Telecom requirements.
1-6
Functional Description
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ASM-10/8 Installation and Operation Manual
Chapter 1. Introduction
The receiver comprises several circuits, as shown in the block diagram,
Figure 1-6.
Receiver
• The receive filter removes all the out-of-band frequencies.
• The automatic equalizer comprises several equalizers which are activated
according to baud rate.
• The digital AGC automatically compensates for the attenuation of the
line.
The Remote Power Failure feature notifies the user at a central location of
a power failure in a remote modem.
Remote Power
Failure (RPF)
Indication
The remote power failure feature can be configured only when the
ASM-10/8 standalone unit (remote) operates in conjunction with the
rack-mounted card ASM-10/8/R (central). When a power failure occurs,
ASM-10/8 standalone unit transmits a special tone, which is detected by
the ASM-10/8/R and causes the RPF LED to turn on. A special push button
– RPF – located on the front panel of ASM-10/8/R, allows the user to reset
the RPF LED. The RPF jumper in the standalone unit enables or disables
the feature. RPF should be disabled for multipoint applications.
ASM-10/8 features V.54 diagnostic capabilities for performing local analog
loopback and local and remote digital loopback. When the modem is set
to the digital loopback mode, the operator at either end of the line can test
both modems and the line. The loopback is controlled either with
front-panel push buttons or via pin 18 and pin 21 of the V.24/RS-232
interface.
V.54 Diagnostics
A selectable option allows insertion of a delay into the data stream so that
the V.54 loops are not carried across the network.
A selectable option allows insertion of a delay into the data stream so that
the V.54 loops are not carried across the network. The delay prevents the
last modem from receiving the complete V.54 data sequence and, in turn,
being induced into the loop. V.54 delay is required only when operating in
synchronous mode.
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Functional Description
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Chapter 1. Introduction
ASM-10/8 Installation and Operation Manual
ASM-10/8 Block Diagram
Figure 1-6 shows the ASM-10/8 internal circuitry.
ENCODER
CONTROL
RTS
CTS
TXC
EXT.
CLK
MODULATOR
TIMING
POWER
SUPPLY
RV CLK
REM
LOOP 2
RLB
RPF
COMMAND
GENERATOR
(ASM-10-SA
ONLY)
GENERATOR
SELECTABLE
XMT AMPLIFIER
SYNC
ENCODER
MODULATOR
TXD
ASYNC TO
SYNC CONV
ASYNC
XMT
DIG LPBK
LOOP 3
ANA LOOP
RCV RLB
ANALPBK
RLB
COMMAND
DECODER
2W
4W
104 (BB) RXD
115 (BB) RXC
RCV
FILTER
DECODER
AUTOMATIC
EQUALIZER
RCV
TIMING
RECOVERY
AGC
109 (CF) DCD
CARRIER
DETECT
DATA RATE
RPF LED
PIN 22
PIN 11
RPF
DECODER
(ASM-10-R
ONLY)
RPF RESET
Figure 1-6 ASM-10/8 Block Diagram
1-8
Functional Description
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ASM-10/8 Installation and Operation Manual
Chapter 1. Introduction
1.4 Technical Specifications
Transmission
Line
Type
Unloaded twisted pair 19 to 26 AWG;
2-wire for half duplex; 4-wire for full
duplex
Connector
Range
5-screw connector or RJ-45
See Table 1-1
Level
0 dBm, -3 dBm, -6 dBm, -9 dBm
150, 300, 600Ω, LOW, jumper-selectable
150, 300, 600Ω, HIGH, jumper-selectable
Greater than 15 dB
Transmit Impedance
Receive Impedance
Return Loss
Carrier
Controlled by RTS or constantly ON
Differential diphase (Eurocom Std. D1)
RS-232/V.24
Modulation
Type
Digital Interface
Baud Rates (Sync and Async)
Selectable to:
1.2, 2.4, 3.6, 4.8, 7.2, 9.6, 14.4, 19.2 kbps
RTS/CTS Delay
Connector
Jumper-selectable to: 0, 8 or 64 msec
25-pin D-type female
V.54 Diagnostics Digital Loopback
• Local (DIG), activated by a push button
• Remote (REM), activated by a push
button or by the DTE interface signal,
pin 21
Analog Loopback
Local (ANA), activated by a push button or
by the DTE interface signal, pin 18.
Timing Elements Receive Clock
Derived from CDP Receive signal
Transmit Clock
Derived from the following alternative
sources:
• Internal
• External from the terminal, via pin 24
• Loop clock derived from the receive
signal looped back as a transmit clock
Indicators
TD (yellow)
Transmit Data
RD (yellow)
RTS (yellow)
DCD (yellow)
TEST (red)
Receive Data
Request to Send
Data Carrier Detect
Test
PWR (green)
RPF (red)
Power
Remote Power Fail (ASM-10/8/R only)
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Technical Specifications
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Chapter 1. Introduction
ASM-10/8 Installation and Operation Manual
Physical
ASM-10/8/SA Modem
Height
43 mm / 1.7 in
215 mm / 8.5 in
243 mm / 9.5 in
Width
Depth
Weight
956g
/ 2.1 lb
ASM-10/8/R Card
Fits one slot of the ASM-MN-214 hub
Power
110, 115 or 230 VAC ( 10%);
47 to 63 Hz
Power Consumption
Fuses
3W
• 0.25A/250V (115 VAC)
• 0.125A/250V (230 VAC)
Protection
AC/DC overvoltage protection circuits are connected via transformers to
transmit and receive lines.
Environment
Temperature
Humidity
0–50°C / 32–122°F
0 to 90%, non-condensing
1-10
Technical Specifications
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Chapter 2
Installation and Setup
This chapter provides the following information for the ASM-10/8
standalone model:
• Site requirements and prerequisites
• Package contents
• Instructions for mechanical installation
• Instructions for electrical installation.
After installing the unit, refer to Chapter 3 to assure normal operation.
In case a problem encountered, refer to Chapter 4 for test and diagnostic
instructions.
2.1 Site Requirements and Prerequisites
ASM-10/8 should be installed within 1.5m (5 ft) of an easily accessible
grounded AC outlet. The outlet should furnish 100-115 VAC or 230 VAC.
Power
• Allow at least 90 cm (36 in) of clearance at the front for operating and
maintenance accessibility.
• Allow at least 10 cm (4 in) clearance at the rear of the unit for signal lines
and interface cables.
The ambient operating temperature of ASM-10/8 is 0 to 50°C (32 to 122°F)
at relative humidity of 90%, non-condensing.
Ambient
Requirements
2.2 Package Contents
The ASM-10/8 includes the following items:
• One ASM 10/8 unit (protected by adequate cushioning)
• AC power cord
• ASM 10/8 Installation and Operation Manual.
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Chapter 2. Installation and Setup
ASM-10/8 Installation and Operation Manual
2.3 Installation and Setup
ASM-10/8 is a standalone device intended for tabletop or bench installation.
It is delivered completely assembled. No provisions are made for bolting the
ASM-10/8 to the tabletop. For installation of the unit in a 19" rack, refer to
Appendix B.
➤ To complete the installation of ASM 10/8:
1. Determine the required configuration of the modem according to your
application, and set the internal jumpers and switches accordingly (see
Figure 2-1 and Table 2-1.
2. Connect the line (see Connecting the Line below).
3. Connect the DTE interface (see Connecting the DTE below).
4. Connect power to the unit (see Connecting the Power below).
This section provides information on the functions of the internal jumpers
and switches, to help you in the selection of the correct settings for
particular application, and gives you step-by-step instructions for
performing the internal settings. The default settings are also listed.
Setting the
Internal Jumpers
➤ To set the ASM-10/8 internal jumpers:
1. Open the ASM-10/8 case.
2. Set the ASM-10/8 internal jumpers and switches, referring to Figure 2-1.
3. Reinstall the ASM-10/8 cover.
Access to the inside of the equipment is permitted only to the
authorized and qualified personnel.
Warning
To avoid accidental electric shock, always disconnect the interface
cables and the power cord before removing the unit from its casing.
Line voltages are present inside ASM-10/8 when it is connected to
power and/or the lines. Moreover, under certain fault conditions,
dangerous voltages may appear on the lines connected to the unit.
Any adjustment, maintenance and repair of the opened instrument
under voltage must be avoided as much as possible and, when
inevitable, should be carried out only by a skilled technician who is
aware of the hazard involved. Capacitors inside the unit may still be
charged even after the unit has been disconnected from its source of
power.
ASM-10/8 contains components sensitive to electrostatic discharge (ESD).
To prevent ESD damage, avoid touching the internal components, and
before moving jumpers, touch the ASM-10/8 frame.
Caution
2-2
Installation and Setup
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ASM-10/8 Installation and Operation Manual
Chapter 2. Installation and Setup
Opening the ASM-10/8 Case
To reach the internal jumpers and switches of ASM-10/8, it is necessary to
open its case.
➤ To open the ASM-10/8 case:
1. Disconnect all the cables connected to ASM-10/8.
2. Turn the unit over (bottom facing up).
3. Unscrew the four cover screws.
4. Turn the unit over (bottom facing down).
5. After the four screws released, remove the ASM-10/8 top cover by
pulling it straight up.
Setting the Internal Jumpers and Switches
The internal jumpers and switches located on the ASM-10/8 printed circuit
board (PCB) are identified in Figure 2-1. Their numbers under heading
"Item" in Table 2-1 correspond to the identification numbers shown in
Figure 2-1.
16
15
14 13
12
11
10
S3 S4 LEN
S2(%)
CHAS GND
V.54-DLY
ON OFF
OFF OFF 8 BIT ON=25%
OFF ON 9 BIT
ON OFF 10 BIT
0
7
RCV IMPD
CTS-DLY
1
GND
RCV
6
2
5
3
4
ON ON 11 BIT OFF=12.5%
XMT
S1
S2
S3
S4
XMT IMPD
XMT LEVEL
PIN 18
XMT TIMING
EN DIS
DTE
PIN 21
EN DIS
RPF
SWITCH
EN DIS
2W/4W
CARRIER
CTRL ON
ON OFF
2W 4W
GND
Fuse
AGC
CTRL ON
1
2
3
4
5
6
8
9
7
Figure 2-1 ASM-10/8 PCB Layout
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Installation and Setup
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Chapter 2. Installation and Setup
ASM-10/8 Installation and Operation Manual
Table 2-1 ASM-10/8 Internal Jumpers and Switches
Item Jumper
Description
Values
Default Setting
1
2
SWITCH
Enables activation of DIG, ANA and
REM loopbacks via the front-panel
push buttons
EN – The loopbacks can be EN
activated via the front panel
DIS – The loopbacks cannot
be activated via the front
panel
2W/4W
Selects 4-wire or 2-wire operation
4W – 4-wire operation
4W
2W – 2-wire operation
Note: When using 2-wire operation, connect both wires to the XMT screws of the terminal.
AGC Controls the AGC operation. ON – AGC is always active ON
Refer to Configuration Considerations CTRL – ACG is active only
3
below for detailed explanation of the
AGC settings.
when DCD turns on
Note: When set to CTRL, ACG remains at its last level of amplification if DCD goes off.
4
CARRIER
Selects the transmit carrier mode.
ON – Transmit carrier is
ON
constantly On
CTRL – Transmit carrier is
On only if RTS is high
Note: Set CARRIER to CTRL when using ASM-10/8 in multipoint applications.
5
XMT LEVEL
Selects the transmit output level to the 0 dbm
0 dbm
line
-3 dbm
-6 dbm
-9 dbm
6
XMT IMPD
Selects transmit line impedance
600
300
150
LOW
150
ON
Note: Set XMT IMPD to LOW when using ASM-10/8 in multipoint applications.
7
RPF
Enables the Remote Power Failure
notification (ASM-10/8/R only)
ON – RPF notification
enabled
OFF – RPF notification
disabled
Note: Set RPF to OFF when using ASM-10/8 in multipoint applications.
8
PIN 18
Controls the local analog loopback
activation via the DTE pin 18
EN – The analog loopback
activation from the DTE
enabled
EN
DIS – The analog loopback
activation from the DTE
disabled
2-4
Installation and Setup
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ASM-10/8 Installation and Operation Manual
Chapter 2. Installation and Setup
Table 2-1 ASM-10/8 Internal Jumpers and Switches (Cont.)
Item Jumper
Description
Values
Default Setting
9
PIN 21
Controls the remote digital loopback
activation via the DTE pin 21
EN – The remote
loopback activation from
the DTE enabled
EN
DIS – The remote
loopback activation from
the DTE disabled
10
CHAS GND Controls the connection between the
CONN – Signal ground CONN
ASM-10/8 signal ground and the frame is connected to the
(chassis) ground
frame ground
DIS – Signal ground is
disconnected from the
frame ground
Note: Disconnecting the signal ground from the frame ground may render the unit unsafe for connection to
unprotected telecommunication networks in some locations.
11
RCV IMPD
Selects receive line impedance
150
150
300
600
HIGH
Note: Set RCV IMPD to 150Ω for the master modem and the last modem in the line, and all others to HIGH,
when using ASM-10/8 in multipoint applications.
12
CTS-DLY
Selects delay between RTS and CTS.
0 msec
Refer to Configuration Considerations 8 msec
8 msec
below for detailed explanation of the
CTS delay settings.
64 msec
13
Data Rate
Selects the data rate
0 – 19.2
1 – 14.4
2 – 9.6
3 – 7.2
4 – 4.8
5 – 3.6
6 – 2.4
7 – 1.2
9.6
14
XMT TIMING Selects the transmit timing signal clock INT CK – Internal clock INT CK
source
EXT CK – External clock
RCV CK – Receive clock
ASYNC – Async mode
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Chapter 2. Installation and Setup
ASM-10/8 Installation and Operation Manual
Table 2-1 ASM-10/8 Internal Jumpers and Switches (Cont.)
Item Jumper
Description
Values
Default Setting
15
DIP Switch
S2
The DIP switch consists of four sections. The S1 section is reserved for future use.
Selects the amount of stop bit
shortening to be used in async mode.
ON – 25%
OFF
OFF – 12.5%
S3, S4
Selects character length in async mode S3
S4
No of bits
Refer to Configuration Considerations OFF OFF 8 BIT
below for detailed explanation.
OFF ON 9 BIT
ON OFF 10 BIT
ON ON 11 BIT
10 BIT
OFF
16
V.54-DLY
Controls the V.54 delay to prevent
multiple loopbacks.
ON – V.54 delay
enabled
Refer to Configuration Considerations
below for detailed explanation of the
V-54 delay settings.
OFF – V.54 delay
disabled
Setting AGC and CTS Delay
Configuration
Considerations
The ASM-10/8 receiver consists of the following components:
• The receiver filter, which removes all the out-of-band frequencies.
• The automatic equalizer, which comprises several equalizers activated
according to baud rate.
• The digital AGC, which automatically compensates for the attenuation of
the line.
The following are general recommendations for the setup position of the
AGC and CTS delay:
• For point-to-point applications, set AGC to ON and CTS delay to 8 msec.
• In multipoint or star applications, the AGC and CTS delay settings
depend on the distances between the modems (see Table 2-2 and Table
2-3).
Table 2-2 AGC and CTS Delay Settings for Short-Range Applications
Range
Rate
AGC Setting
CTS Delay Setting
Less than 4.5 km
6 km
9.6 to 19.2 kbps
3.6 to 7.2 kbps
CTRL (master and slave)
0 msec (master)
4.8 kbps
8 msec (slave)
2.4 to 4.8 kbps
8 msec or 64 msec
(slave)
2.4 kbps and below
64 msec (slave)
Note: The selection between delays depends on the polling environment behavior. Therefore, it is different
from application to application
2-6
Installation and Setup
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ASM-10/8 Installation and Operation Manual
Chapter 2. Installation and Setup
Table 2-3 AGC and CTS Delay Settings for Long-Range Applications
Range
Rate
AGC Setting
CTS Delay Setting
Long or uneven distances
between master and
slave modems
ON (master and slave)
0 msec (master)
Above 9.6 kbps
Below 9.6 kbps
8 msec (slave)
64 msec (slave)
Setting the Async Character Length
Table 2-4 lists the character length values in the asynchronous mode.
Table 2-4 Async Character Length Setting
Start Bit
Data Bits
Parity
None
None
Stop Bit
2
No of Bits
1
1
5
6
8
1, 1.5, 2
8
9
1
1
1
1
1
6
7
7
8
8
Odd, Even 1, 1.5, 2
None 1, 1.5, 2
Odd, Even 1, 1.5, 2
None 1, 1.5, 2
Odd, Even 1, 1.5, 2
9
10
9
10
10
11
10
11
11
Setting the V.54 Delay
When using ASM-10/8 as a tail-end to a DDS network, set the V.54 DLY
jumper in the modems located close to the DDS network to ON in order to
prevent multiple loopbacks.
Figure 2-2 illustrates the rear panel of a standard ASM-10/8 unit.
Connecting the
Interfaces
LINE
XMT RCV GND
DTE
Figure 2-2 ASM-10/8 Rear Panel
Connecting the Line
The line connector is a five-screw terminal block, located on the ASM-10/8
rear panel as shown in Figure 2-2. The terminal block provides four screws
for connecting the transmit and receive telephone lines and one screw for
the ground connection. The transmit and receive pairs are polarity
insensitive.
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Installation and Setup
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Chapter 2. Installation and Setup
ASM-10/8 Installation and Operation Manual
➤ To connect the line:
1. Connect the ground wire to the terminal designated GND (optional).
2. Connect the transmit pair to the terminals marked XMT.
3. Connect the receive pair to the terminals marked RCV.
Use only XMT pair for 2-wire operation.
Note
Connecting the DTE
The rear-panel DTE connector provides interface for data input/output,
clock reference and control signal exchange between ASM-10/8 and the
DTE. The DTE connector is V.24/RS-232, D-type 25-pin female connector.
Connector pin allocations appear in Appendix A.
Connecting the Power
The power is supplied to the ASM-10/8 unit through the 1.5m (5 ft) standard
power cable terminated in a standard 3-prong plug. The cable is provided
with the unit.
The integral fuse holder, located above the AC socket, contains two fuses
(0.125A/250V or 0.25A/250V, slow-blow). The upper fuse is spare and can
be used for blown fuse replacement.
The unit has no power switch. Operation starts when the power is
applied to the rear-panel POWER connector.
Warning
Before switching on this instrument, the protective earth terminals of
this instrument must be connected to the protective ground conductor
of the power cord. The power plug shall only be inserted in a power
outlet provided with a protective earth contact. The protective action
must not be negated by use of an extension cord (power cable) without
a protective conductor (grounding).
Make sure that only fuses with the required rated current, as marked on
the ASM-10/8 rear panel, are used for replacement. The use of repaired
fuses and the short-circuiting of the fuse holders is forbidden.
Whenever it is likely that the protection offered by fuses has been
impaired, the instrument must be made inoperative and be secured
against any unintended operation.
➤ To connect power to ASM-10/8:
1. Connect the power cable to the connector on the ASM-10/8 rear panel.
2. Connect the power cable to the mains outlet.
The unit will be turned on automatically upon connection to the
mains.
2-8
Installation and Setup
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