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Configured for SCR‑based de‑excitation in EX2100e exciter systems, the GE IS200EDEXG1B (IS200EDEXG1B De‑Excitation Control Board) provides controlled removal of generator‑field stored energy during emergency shutdowns, using firing circuits, conduction sensing, and voltage hold‑up paths.
The documentation does not define any suffix variants or sub‑models for IS200EDEXG1B. The board is treated as a single, fixed configuration within the EX2100e de‑excitation module family.
| Parameter | Specification |
|---|---|
| Model | IS200EDEXG1B |
| Brand | GE |
| Origin | USA |
| Weight | Not specified |
| Dimensions | Not specified |
| Operating Temp | Not specified (follow EX2100e cabinet limits) |
| Power Consumption | Not specified |
| Series | EX2100e |
| Product Type | Exciter De‑Excitation Control Board |
| Functional Description | SCR/diode de‑excitation control |
| Firing Inputs | Two firing commands from EXTB (redundant) |
| Voltage Hold‑Up | Retains ±24 VDC for SCR firing during power loss |
| Current Sensing | Hall‑effect sensors with mechanical flux ring |
| LED Indicators | Two red LEDs for current‑flow status |
| Connector Type | Two male vertical pin connectors |
| De‑Excitation Type | Group 1 (SCR) or Group 2 (diode) configuration |
| Manual Reference | EX2100e documentation set |
As a GE protection‑class module, the IS200EDEXG1B aligns with deterministic exciter‑level timing and supports triple modular redundancy across EX2100e shutdown logic. SCR firing commands are voted using a 2oo3 scheme, ensuring that no single failure can inhibit de‑excitation. The board’s conduction‑sense feedback is galvanically isolated through Hall‑effect sensors, supporting galvanic isolation between field circuits and control electronics. During power‑loss events, the voltage hold‑up path ensures fail‑safe state execution by maintaining firing capability until stored field energy is fully removed.
Q: How many male pin connectors are present on the IS200EDEXG1B? A: The board includes two vertical male pin connectors.
Q: Does the board require calibration after installation? A: No calibration parameters are defined. SCR firing and conduction sensing operate as fixed‑function circuits.
Q: How does the board detect field current? A: Hall‑effect sensors coupled through a mechanical flux ring detect bi‑polar or uni‑directional current depending on SCR or diode de‑excitation mode.

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