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GE IS200BICIH1ACA – Mark VI Bridge Interface Controller Board Module

GE IS200BICIH1ACA – Mark VI Bridge Interface Controller Board Module

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Brand:GE Fanuc PLC
Item No.: IS200BICIH1ACA
Product Origin:USA
Product Dimensions:160 × 160 × 120 mm
Product Weight:1.0 kg
Payment:T/T, Western Union, Credit Card
Goods_stock:15
Shipping Port:Xiamen, China
Lead Time:1-3 Days
Condition:Brand New And Original
Warranty:1 Year
Certificate:COO

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GE IS200BICIH1ACA (4)GE IS200BICIH1ACA (2)IS200BICIH1ACAGE IS200BICIH1ACA (3)

The GE IS200BICIH1ACA is a Bridge Interface Controller (BICI) board module used in the GE Speedtronic Mark VI turbine control system. It functions as a high-level interface between turbine control logic and power bridge subsystems, enabling coordinated control of IGCT/IGBT-based switching devices in industrial drive and turbine applications.

This module is part of GE’s Innovation Series Mark VI architecture, where it plays a central role in bridge control, signal processing, and power electronics coordination, ensuring stable operation of gas turbine, steam turbine, and heavy industrial drive systems.


Technical Specifications

The IS200BICIH1ACA is a complex control interface board designed for high-speed industrial turbine applications.

ParameterSpecification
Module TypeBridge Interface Controller Board (BICI)
SeriesGE Speedtronic Mark VI
FunctionBridge control + power electronics interface
System RoleIGCT/IGBT bridge control and signal processing
ArchitectureInnovation Series rack-mounted module
ConnectorsPFBK1, PFBK2, PSRC signal connectors
Input/OutputAnalog + digital control signals
Signal ProcessingPWM control + timing logic
Control ElementsFPGA + DSP-based processing architecture
DaughterboardsMultiple analog comparator + VCO modules
CommunicationInternal Mark VI control system bus
Backplane InterfaceCABP rack integration (P1/P2 connectors)
ProtectionIndustrial conformal coating + EMI shielding
Design ComplexityHigh-density multi-layer PCB architecture

This module is engineered for precision bridge control and high-speed switching coordination in turbine drive systems, enabling stable power conversion and fault-managed operation.


Physical Dimensions & Weight

ItemValue
Dimensions (H × W × D)~160 × 160 × 120 mm
Weight~0.8–1.0 kg

Recommended Related Models

  • IS200BICIH1A / ADB / ADC – other BICI revisions
  • IS200BPIAG1AEB – bridge personality interface board
  • IS200BPIBG1AEB – IGBT drive interface module
  • IS200DSPXH1 – Mark VI control processor module
  • IS200CABPG1BAA – Mark VI control backplane

Popular GE & Industrial Models

  • GE Speedtronic Mark VI turbine control system
  • GE Mark VIe distributed control platform
  • Siemens SPPA-T3000 turbine control systems
  • ABB industrial drive systems
  • Emerson Ovation power automation systems 


Applications

The IS200BICIH1ACA is used in high-power industrial environments requiring precise bridge and switching control:

  • Gas turbine control systems
  • Steam turbine excitation systems
  • IGCT/IGBT power bridge control systems
  • Industrial motor drive systems
  • Power generation plants
  • High-voltage inverter control systems
  • Oil & gas automation systems


Advantages

  • Enables precise control of IGCT/IGBT power bridge systems
  • High-speed signal processing using FPGA/DSP architecture
  • Supports complex multi-channel analog and digital control
  • Strong electrical isolation for industrial safety
  • High reliability in continuous turbine operation
  • Modular design improves maintainability and upgrades
  • Designed for harsh EMI and high-voltage environments
  • Critical component in GE Mark VI bridge control architecture 


Technical FAQs

1. What is the GE IS200BICIH1ACA used for?
It is a bridge interface controller board used to manage power bridge systems in GE Mark VI turbine controls.

2. What systems is it compatible with?
GE Speedtronic Mark VI turbine control systems.

3. What is its main function?
To control and coordinate IGCT/IGBT power bridge switching.

4. What hardware does it use internally?
FPGA, DSP, comparator circuits, and VCO-based daughterboards.

5. What connectors does it have?
PFBK1, PFBK2, and PSRC connectors.

6. Is it a processor board?
No, it is a specialized bridge interface and control board.

7. What type of signals does it handle?
Both analog and digital control and feedback signals.

8. Is it suitable for high-power systems?
Yes, it is designed for industrial turbine and drive applications.

9. Is it still manufactured?
It is a legacy industrial module used for replacement and maintenance.

10. What is its key advantage?
High-precision, high-speed bridge control with robust industrial reliability.


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