Description
GE IS200TREGH1BDB Emergency Trip Board β Precision Turbine Protection
Engineered for critical turbine applications, the IS200TREGH1BDB serves as the backbone of emergency shutdown systems in power generation facilities. This compact board monitors real-time operational parameters and triggers immediate turbine shutdown when unsafe conditions arise, preventing catastrophic failures in gas and steam turbine systems.

Commonly deployed in power plants and oil & gas facilities, this module protects turbines operating under extreme loads. Engineers appreciate its compatibility with GE’s Mark VI control systems while maintaining interoperability with legacy turbine protection architectures. For instance, a Midwest power station recently retrofitted their steam turbines using this board alongside IS220PPDAH1B modules, achieving 99.98% system uptime over 18 months.
Our inventory includes complementary components like VMIVME-7807 interface cards for system integration, SR469-P5-HI-A20 protection relays for auxiliary systems, and IS215UCVEH2A communication modules to ensure seamless data exchange across turbine control networks.

What sets this module apart is its dual-channel redundancy design that prevents single-point failures β a critical feature for offshore platforms where maintenance access remains limited. The yellow capacitors aren’t just for show; their ceramic construction provides stable capacitance values across temperature extremes (-40Β°C to +85Β°C). Field technicians report that the board’s vibration-resistant connectors maintain signal integrity even in seismic zones, unlike standard PCB-mounted interfaces that loosen over time.
Unlike generic trip systems, this GE board features programmable trip thresholds that adapt to specific turbine profiles. One wind power client configured custom vibration trip curves for their 2MW turbines, reducing false alarms by 70% compared to their previous fixed-threshold system. The modular jack connectors also allow hot-swapping during turbine maintenance windows, minimizing downtime.




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