The General Electric IS215WEPAH2BA is a robust WEPA board designed for the Mark VIe turbine control system. It provides essential I/O packaging and signal conditioning functions, ensuring reliable data acquisition and processing in demanding power generation environments.
The General Electric IS200TSVOH1B is a vital servo control card from the Mark VIe series. It precisely manages servo valve and actuator control for gas/steam turbines, ensuring accurate positioning and stable turbine operation.
The General Electric IS200TPR0H1B is a critical turbine control board from the Mark VIe series. It provides reliable protection and monitoring functions for gas or steam turbine management systems, ensuring safe and efficient power generation operations.
The General Electric IS200TBCIH2BBC is a 24-channel contact input terminal board for Mark VIe control systems, offering reliable signal isolation, noise suppression, and compatibility with simplex, dual, and TMR configurations.
The General Electric IS220PSVOH1B is a servo control module designed for precision valve positioning and motion control within Mark VI turbine management systems.
The General Electric IS220PTURH1B is a high-performance turbine control sensor module designed for precision monitoring and protection in gas turbine management systems.
The General Electric IC695CPU315 is a high-performance CPU module for the RX3i PAC System, featuring a 1.1 GHz processor and extensive memory for complex industrial automation applications.
The General Electric IS200SCSAS1AEB is a compact AC drive offering precise motor control, energy efficiency, and reliable performance, suitable for industrial automation, conveyor systems, and various motor-driven applications.
The General Electric IS430SNUAH1A is a high-performance speed input module. It provides critical turbine control and monitoring functions for industrial power generation applications.
The General Electric IS220YPROS1AJ is a PROFINET I/O module for the Mark VIe control system, enabling high-speed, reliable communication and integration between industrial devices and process automation systems.
The General Electric IC660BBA024P1 is an I/O block module from the Genius I/O series, designed for reliable industrial automation, offering efficient data communication and robust control in harsh environments.
The General Electric IS220YDOAS1AJ is a digital output module from GE's Mark VIe series, designed for industrial automation and turbine control systems, providing reliable signal transmission and high-performance operation.
The General Electric DS200SLCCG1ADC is a LAN communications drive board for Mark V turbine control systems, providing reliable DLAN and ARCNET connectivity, onboard diagnostics, and seamless integration with GE drives.
The General Electric IS220PDOAH1BC is a high-performance analog output I/O module for the Mark VIe control system, providing precise signal transmission and reliable integration in industrial automation applications.
The General Electric DS215UCVBG3AJ is a high-performance industrial pressure transmitter, offering accurate and reliable pressure measurement for critical process control applications.
The General Electric IS200WETAH1ADC is a Mark VI turbine control terminal board designed for rugged power generation applications, featuring industrial-grade I/O connectivity and vibration-resistant construction.
The General Electric IS200WETAH1AHC is a Mark VI series terminal board module designed for gas turbine control systems, featuring robust I/O connectivity and industrial-grade reliability.
The General Electric IS200VSVOH1BEF is a high-performance I/O pack module designed for industrial automation, offering reliable signal processing and connectivity in demanding environments.
The General Electric DS200PLIBG2ACA is a Power Line Interface Board, designed to ensure reliable communication and signal processing within GE drive control systems and industrial automation setups.
The General Electric DS200SDCCG1AGD is a drive control card for GE Mark V systems, providing core processing, I/O management, and system coordination in industrial turbine control applications.