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IS200TBCBH2A

TBCB REPAIR
Product DESCRIPTION
Part Number
IS200TBCBH2A
Manufacturer
General Electric
Country of Manufacture
As Per GE Manufacturing Policy
Series
Mark VI/VIe
Function
Module
Availability
In Stock
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TECHNICAL SPECIFICATIONS FOR GE - IS200TBCBH2A

IS200TBCBH2A is a Terminal Board developed by GE. It is a part of Mark VI control system. The terminal board is designed to handle both RTD (Resistance Temperature Detector) and mA (milliampere) input signals. This flexibility allows it to support various types of sensors and transducers.

FEATURES

  • RTD signals are typically used for precise temperature measurements, essential for monitoring and controlling processes in industrial systems. Input Signal Configuration
  • The terminal board can accommodate eight 4-20 mA input signals. These signals are standard in industrial control systems for transmitting analog data over long distances with minimal signal loss.
  • Eight input signals can be configured using hardware jumpers to support 0-1 mA input signals. This feature provides added versatility, enabling the board to interface with a broader range of sensors and devices.
  • DESIGN CONSIDERATIONS

  • Given that the fan-out circuit can be a potential single point of failure, the design of the terminal board incorporates minimal active circuitry. This design choice is deliberate to enhance reliability and reduce the risk of failure.
  • The active circuitry present on the board is primarily limited to filters and protective devices. These components ensure that the input signals are clean and protected from electrical The terminal board typically receives power for its outputs from the Input/Output (I/O) board. This centralized power supply approach simplifies the system architecture and ensures consistent power delivery to the terminal board.
  • Separate Power Plugs for Specific Outputs: For certain types of outputs, such as relay and solenoid outputs, the terminal board features separate power plugs. These dedicated power connections ensure that these high-demand outputs receive adequate and stable power, which is crucial for their reliable operation.
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