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The GE IS200VCRCH1BBB, also cataloged as the IS200VCRCH1BBB Discrete Input/Output Board, serves as the primary VCRC I/O Processor Board utilized to execute discrete signal processing and relay state execution across Mark VI Turbine Control System platforms.
| Parameter | Specification |
|---|---|
| Model | IS200VCRCH1BBB |
| Brand | GE |
| Origin | USA |
| Weight | 1.25 kg |
| Dimensions | Single-slot VME Eurocard Form Factor |
| Operating Temp | 0 deg C to 60 deg C |
| Power Consumption | 18 W nominal |
| Discrete Inputs | 48 Contact Inputs (via TBCI/DTCI boards) |
| Discrete Outputs | 24 Relay Outputs (12 Solenoid, 12 Dry Contact via TRLY/DRLY) |
| Status Display | 3 Faceplate LEDs (RUN - Green, FAIL - Red, STATUS - Orange) |
Designed for high-density I/O integration within VME rack enclosures, the VCRC board delivers deterministic backplane bus communication velocity across single-slot backplane architectures. Unlike dual-slot processor designs requiring daughtercards, this module executes high-speed signal processing on a single printed circuit board layer. In Triple Modular Redundant (TMR) control topologies, input excitation signals fan out across dedicated JR1, JS1, and JT1 connectors directly to R, S, and T rack backplanes, eliminating voting delay and maintaining synchronized firmware flash compatibility during transient fault conditions.
Q: How does the VCRC board process contact inputs in a Triple Modular Redundant (TMR) system layout?
A: In TMR configurations, discrete contact input signals from the TBCI terminal board are split and routed via front-panel JR1, JS1, and JT1 connectors to three independent VME controller racks (R, S, and T) to execute software 2oo3 voting logic.
Q: What are the primary functional differences between the single-slot VCRC and dual-slot VCCC boards?
A: The VCRC occupies a single VME rack slot by eliminating the hardware daughterboard found on the VCCC. Additionally, the VCRC locates its TBCI terminal connectors (J33 and J44) on the front faceplate and does not support TICI board interconnections over J3 and J4 connectors.
Q: Do varying excitation voltage ratings on connected TBCI terminal boards impact VCRC processor operation?
A: No, variations in TBCI excitation voltage levels do not alter the internal electrical operation or signal processing of the VCRC processor card.

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