Description
GE General Electric Technical Specifications: IS200HFPAG1ABB
When two or more baseplates are cabled together in an expansion system, the I/O expansion
bus must be properly terminated. The I/O bus must be terminated at the last baseplate in an
expansion system. Each signal pair is terminated with 120 ohm, 1/4 watt resistors wired
between the appropriate pins, as follows (see the above table, also):
pins 16 – 17; 24 – 25; 20 – 21; 12 – 13; 8 – 9; 2 – 3
The I/O bus termination can be done one of the following ways:
By installing an I/O Bus Terminator Plug, catalog number IS200HFPAG1ABB, on the last
expansion baseplate (local expansion baseplate or remote baseplate) in the system. The
Terminator Plug has a resistor pack physically mounted inside of a connector. The I/O Bus
Terminator Plug is shipped with each baseplate; only the last baseplate in the expansion
chain can have the I/O Bus Terminator Plug installed. Unused I/O Bus Terminator Plugs
can be discarded or saved as spares.
If an expansion system has only one IS200HFPAG1ABB expansion baseplate, the I/O bus can be terminated by
installing as the last cable, the 50 foot (15 meter) I/O Expansion cable, catalog number
IC693CBL302 or IC693CBL314. These cables have the termination resistors installed in
the end that connects to the expansion baseplate connector.
You can also build a custom cable with termination resistors wired to the appropriate pins
for installation at the end of the bus.
brand | Product Name | Product model | Order No |
GE Fanuc | Module card | IS200HFPAG1ABB | nothing |
Place of Origin | Marketable land | Imported or not | defects liability period |
Europe and America | Nationwide and overseas | yes | a year |
Place of shipment | Delivery method | How to use | Applicable industries |
Xiamen | Shunfeng Express | Commissioning and installation | Power Plant Steel Plant Cement Plant Shipboard Papermaking |
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All GE Fanuc factory IS200HFPAG1ABB made cables are made with a continuous, or 100% shield. This means
that the braided cable shield is connected to the metal shell of the connector around the entire
perimeter of the connector. This provides a low impedance path to frame ground for any noise
energy that is coupled onto the cable shield.
For custom length cables made per Figure 10-18, the best noise immunity is achieved when
using a metalized connector cover that makes contact with the cable’s braided and foil shielding
and with the connector shell on the terminating end.
For typical industrial applications, all expansion and remote baseplate cables can be made with
plastic shell covers and should be wired as shown in Figure 10-19. In either case, pin 1 should
be wired into both ends of the custom length cable and the recommendations listed below
should be followed for the Wye cables treatment in the remote (IC693CHS392/399) baseplates.
When using 100% shielded cables all local (CPU and expansion) baseplates in the system must
be solidly referenced to the same ground point or a potential difference between baseplates
could disturb signal transmission.
Alert for Users of Early Remote Baseplate Versions
In early remote baseplates versions, IC693CHS393E (and earlier) and IC693CHS399D (and
earlier), it is necessary to remove pin 1 of the mating cable where the cable plugs into the
baseplate. This means that when using a factory made Wye cable, such as IC693CBL300, you
must break pin 1 out of the male end where it plugs into the remote baseplate before using it
with one of these baseplates. Custom built Wye cables for these baseplates should be built
using Figure 10-20.
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The maximum number of 8-Channel Analog Current/Voltage Output modules that can be installed
in a system are:
4 in a system using CPU Models 311, 313, or 323
8 in a system using CPU Model 331
32 in a system using CPU Models 340 and 341
64 in a system using CPU Models 350 – 364
Other Configuration Considerations
When planning the module configuration for your application you must also consider the load
capacity of the installed power supply and the total load requirements of all modules that are
installed in the baseplate.
Refer to Chapter 1 in this manual for details on power supply, baseplate, and module load
requirements. The following table lists the specifications for this module. Note that test conditions,
unless otherwise noted, are: VUSER = 24 VDC at an ambient temperature of 25 C (77 F)
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