Description
GE General Electric Technical Specifications: IS200HSLAH2A
A basic rule for Series 90 power supplies is that they are 66% efficient. Another way of stating
this is that the power supply dissipates 1 Watt of IS200HSLAH2A power in the form of heat for every 2 Watts of
power it delivers to the PLC. Therefore, you can calculate the total power requirement for all
of the modules in the rack served by a particular power supply using the method in Step 1
above, then divide that figure by 2 to arrive at the power supply dissipation value. You cannot
IS200HSLAH2A simply use the rating of the power supply (such as 30 Watts) for this calculation because the
application may not require the full capacity of the power supply. If you are using the +24VDC
output on the power supply’s terminal strip, you should calculate the power drawn, divide the
value by 2, and add it to the total for the power supply. Since each Series 90–30 rack has its
own power supply, each rack should be calculated on an individual basis.
brand | Product Name | Product model | Order No |
GE Fanuc | Module card | IS200HSLAH2A | nothing |
Place of Origin | Marketable land | Imported or not | defects liability period |
Europe and America | Nationwide and overseas | yes | a year |
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Discrete solid state Output modules and output circuits of Combination I/O modules require
two calculations, one for the module’s signal–level circuits, which was already done in Step 1,
IS200HSLAH2A and one for the output circuits. (This output circuit calculation is not required for the Relay
Output modules.) Since the solid state output switching devices in these modules will drop a
measurable amount of voltage, their power dissipation can be calculated. Note that the power
dissipated by the output circuits comes from a separate power source, so it is not included in the
figure used to calculate PLC power supply dissipation in Step 2.
To calculate output circuit power dissipation:
In the Chapters 7 or 8, find the value for the Output Voltage Drop for your particular
Output or Combination I/O module.
Obtain the required current IS200HSLAH2A value for each device (such as a relay, pilot light, solenoid, etc.)
connected to an output point on the module and estimate its percent of “on–time.” To
obtain the current values, check the device manufacturer’s documentation or an electronics
catalog. The percent of on–time can be estimated by someone familiar with how the
equipment operates or will operate.
Multiply the Output Voltage Drop times the current value times the estimated percent of
on–time to arrive at average power dissipation for that output.
Repeat for all outputs on the module. To save time, you could determine if several outputs
were similar in current draw and on–time so that you would only have to make their
calculation once.
Repeat these calculations for all Discrete Output modules in the rack.
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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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