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IS200TRPGH1B

Primary Trip Terminal Board
In Stock

Product Information:

Primary Trip Terminal Board

part of the Mark VI Turbine Control Series

GE Boards & Turbine Control

Series: Mark VI IS200

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Technical specifications for IS200TRPGH1B

  • Manufacturer:
    General Electric
  • Product Category:
    PLC System
  • Estimated shipping dimensions:
    33x17.7x6.5cm
  • Weight:
    1.55 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Product Type:
    Primary Trip Terminal Board
  • Category Series:
    Mark VI IS200
  • Current:
    4-20 mA
  • Voltage Supply:
    120 V DC to 230 V DC
  • Frequency Range (-3 dB):
    50...60 Hz - 5...5 %
  • Stock:
    30

Information

Overview Manuals Principle Functionality & Integration

Features:

  • GE Gas Exciter ISBus Board EX2100 Excitation Control
  • Mark VIe & Mark VIeS Control Systems
  • Mark VI IS200 Series produced by General Electric
High-performance control processor module designed specifically for the Mark VIe distributed control system platform. Its primary functions are executing control logic, sequential management, and real-time data processing, making it suitable for industrial automation and power generation applications. As the central processing unit in the control architecture, the module coordinates communication between I/O modules, field devices, and monitoring systems to ensure stable and deterministic system operation.

It can handle critical tasks such as signal processing, alarm management, system diagnostics, and fault handling, while maintaining synchronized operation among distributed controllers. Its industrial-grade design allows it to be deployed in demanding environments such as turbines, power plants, and process control facilities where real-time performance and system integrity requirements are extremely high.

The IS200TRPGH1B GENERAL ELECTRIC Primary Trip Terminal Board may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
GENERAL ELECTRIC IS200TRPGH1B Primary Trip Terminal Board info(manual), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
This module receives analog and/or digital input signals from connected sensors or subsystems, performs signal isolation, filtering, and level conversion via onboard circuitry, and then transmits the processed data to the central controller via a high-speed backplane or internal communication bus. Simultaneously, it parses control commands from the main processor and distributes corresponding output signals to relevant field devices or subordinate modules. All of this is achieved through coordinated data exchange, electrical isolation, and embedded firmware logic.
1. Triple Modular Redundancy (TMR) and Simplex: The H1B version is designed for Triple Modular Redundancy (TMR) applications, using three voting relays per trip solenoid valve. (The H2B version is for simplex operation).
2. System Collaboration: This board works in conjunction with the TREG (Turbine Emergency Terminal Board) to form the primary and emergency sides of the trip interface.
3. Controller Interface: In Mark VI systems, controlled by the VTUR controller; in Mark VIe systems, controlled by the PTUR controller group.
4. Diagnostics: Includes integrated checks for fuse integrity and cable connections on the 125 V DC feeder.

Ask our team:

  • What fundamental protection and signal routing responsibilities does the IS200TRPGH1B undertake within the GE EX2100 excitation control framework?
    The IS200TRPGH1B functions as a turbine regulation and protection interface board designed to manage signal routing, monitoring, and protective coordination between excitation control modules and generator field equipment within the EX2100 system.
  • How does the electrical architecture of the IS200TRPGH1B facilitate reliable interaction between excitation control hardware and turbine monitoring subsystems?
    The IS200TRPGH1B incorporates specialized circuitry and structured signal pathways that enable precise transmission of status, feedback, and protective signals between the generator excitation controller and the associated turbine protection logic.
  • In what manner does the IS200TRPGH1B contribute to the operational integrity of generator excitation regulation processes?
    The IS200TRPGH1B assists in maintaining excitation system stability by coordinating signal exchanges related to voltage regulation, field control monitoring, and system diagnostics within the EX2100 architecture.
  • Why is the IS200TRPGH1B considered a critical interface module in high-availability excitation control environments?
    The IS200TRPGH1B ensures dependable signal interfacing and protective supervision, which are essential for maintaining continuous generator excitation control and preventing abnormal operating conditions in power generation facilities.
  • How does the signal conditioning capability embedded within the IS200TRPGH1B enhance data reliability in demanding industrial environments?
    The IS200TRPGH1B utilizes filtering circuits, protective components, and optimized electrical routing to minimize electromagnetic interference and signal distortion, thereby preserving the accuracy of critical excitation control signals.
  • What categories of operational data and control signals are typically processed through the IS200TRPGH1B within the EX2100 system?
    The IS200TRPGH1B manages discrete status signals, monitoring inputs, and protective feedback signals that support the coordination of generator excitation control, turbine supervision, and plant protection mechanisms.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.