GE IC3600QOXA1 Over-Speed Sensor Card for Gas & Steam Turbines
The GE IC3600QOXA1 is a high-performance printed circuit board designed for the Speedtronic Mark I-II series. It acts as an essential component in controlling and regulating gas and steam turbines, ensuring precise operations and safety through its over-speed sensing capabilities.
Brand:General Electric
Model:IC3600QOXA1
Series:Mark I-II
Function:Over-speed Sensor Card
Compatibility:Speedtronic Mark I-II Systems
Dimensions:Varies per application
Weight:Varies per application
Voltage:120V AC / 24V DC
Frequency:50/60 Hz
The IC3600QOXA1 by General Electric (GE) is a robust over-speed sensor card designed specifically for the Speedtronic Mark I-II series, which are essential in the regulation and automation of gas and steam turbines. This board plays a crucial role in preventing turbine overspeed events, thereby enhancing operational safety and reliability.
Featuring a prominent large black transformer located in the power left corner of the circuit board, the IC3600QOXA1 is built to withstand harsh industrial environments. Two large inductors or coils further contribute to its reliable performance under high-stress conditions typically encountered in turbine applications.
This over-speed sensor card is meticulously engineered to integrate seamlessly into existing GE turbine control systems, offering an easy upgrade path for improved performance and longevity of turbine operations. Its compatibility with the Speedtronic Mark I-II series ensures a seamless transition for users looking to enhance their turbine control systems without the need for extensive reconfiguration.
For maintenance and troubleshooting purposes, the IC3600QOXA1 offers clear identification markers and a logical layout, making it easier for technicians to diagnose issues and perform necessary repairs quickly.
By leveraging the advanced design of the IC3600QOXA1, industrial operators can achieve a higher level of control and monitoring precision, leading to more efficient turbine operations and reduced downtime.













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