Configured for optical data transmission and internal backplane signal conversion in GE EX2100 control systems, the GE IS200EISBH1AAC (IS200EISB Exciter ISBus Board) provides direct physical/electrical execution. It serves as an integrated communication interface, receiving and routing high-speed fiber-optic feedback signals across the control backplane directly to the DSPX controller. Manufactured with surface-mount technology, the board manages deterministic real-time data loops while maintaining operational stability across ambient temperatures from -30 to 65 deg C.
| Parameter | Specification |
|---|---|
| Model | IS200EISBH1AAC |
| Brand | General Electric (GE) |
| Origin | United States |
| Operating Temp | -30 to 65 deg C |
| Power Consumption | Backplane powered |
| Series | EX2100 |
| Product Type | Exciter ISBus Board (EISB) |
| Circuit Assembly | Surface-mount technology |
| Communication Medium | Fiber-optic interface / ISBus backplane |
| Target Interface Controller | DSPX controller |
The IS200EISBH1AAC coordinates high-speed optical signals with internal bus protocols, maintaining full firmware flash compatibility for system synchronizations managed via ControlST or EX2100 system tools. The board executes conversion of incoming fiber-optic streams into backplane bus signals, ensuring minimal transmission latency to the DSPX processor. This deterministic data pathway enables continuous parameter tracking and loop adjustments without degrading backplane communication velocity.
Q: What primary signal type does the IS200EISBH1AAC handle within the EX2100 control system?
A: The board acts as a hardware interface for high-speed fiber-optic feedback signals, converting optical inputs into backplane electrical signals for the DSPX controller.
Q: What operating temperature range is specified for the IS200EISBH1AAC board?
A: The board is rated for operation across ambient temperatures from -30 to 65 deg C.
Q: How is power provided to the IS200EISBH1AAC circuit board?
A: Power is drawn directly from the EX2100 rack backplane power distribution rails upon insertion into the rack assembly.
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