IS210AEBIH1BED
April 23, 2026

IS210AEBIH1BED

IS210AEBIH1BED is an AE Bridge Interface Card for GE Mark VI/VIe turbine control systems, enabling high-speed data exchange and signal processing with Ethernet/Modbus support. It features wide temperature range and anti-interference capability, suitable for harsh industrial scenarios like gas turbines and wind turbines.

Description

1. Basic Information

  • Model: IS210AEBIH1BED

  • Brand: GE (General Electric, now Emerson Automation Solutions)

  • Type: AE Bridge Interface Card for Speedtronic Mark VI/Mark VIe Turbine Control Systems

  • Compatible Systems: Gas/steam turbine, combined-cycle power plant & wind turbine control; supports Simplex & TMR (Triple Modular Redundant) architectures

2. Core Functions

Serves as the communication and control bridge in Mark VI/VIe systems, enabling high-speed data exchange between CPU controllers, I/O modules and field devices. It handles signal acquisition, protocol conversion, status monitoring and fault diagnosis, ensuring stable operation of critical functions such as unit start-up, speed regulation, load control and safety protection.
  • Communication: Supports industrial protocols like Ethernet & Modbus for multi-cabinet networking and field device integration

  • Processing: FPGA-based + 32-bit RISC processor, millisecond-level response, configurable signal ranges

  • Protection: Industrial-grade EMC, anti-vibration & ESD protection for harsh environments

  • Diagnostics: LED status indicators & self-diagnostics for on-site rapid maintenance

3. Key Specifications

  • Operating Temp: -40°C to +85°C (wide-temperature industrial grade)

  • Storage Temp: -40°C to +125°C

  • Power: 24V DC (±25%), power consumption ~5W

  • Protection Rating: IP65, compliant with UL, CE & CSA standards

  • Physical: ~29.2cm × 13cm × 2.7cm, weight ~0.32kg

  • PCB Material: FR4, industrial-grade PCB manufacturing process

4. Applications

Core applications include gas/steam turbine control, combined-cycle power plants & wind turbine control systems. It is also used in industrial automation scenarios such as oil & gas, chemical and papermaking, achieving precise acquisition and closed-loop control of process variables (temperature, pressure, flow).


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