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GE IS200TVIBH2BBB Turbine control system vibration terminal board

GE IS200TVIBH2BBB is a key component in the Mark VI system used for processing vibration data, primarily for controlling and containing vibration data in industrial steam and gas turbine systems. There are multiple integrated circuits installed on the surface, with two large terminal blocks occupying the edge of a long board, as well as sixteen jumper switches, female D-shell connectors, inductors and other components, and fourteen plug connectors on one side. It can accurately measure and analyze equipment vibration, effectively monitor and record equipment vibration, and help detect potential problems in advance. Capable of high-speed sampling, real-time monitoring, fast and accurate A/D conversion, and signal transmission through VME bus.

GE IS200TVIBH2BBB Turbine control system vibration terminal board

Specific parameters
Size: Height 23.8 centimeters, width 8.6 centimeters.
Temperature rating: The operating temperature range is -30 ℃ to+65 ℃.
Number of I/O channels: 16.
Input/output type: Analog input/output.
Input/output range: The input/output range is from 0 to 10V.
Accuracy: 0.1%.
Resolution: 12 bits.
Sampling rate: 100kHz.
MTBF: Exceeding 100000 hours.
Power supply: the VVIB board supplies power in simplex or the third mock examination redundancy (TMR) mode. The TMR mode has the function of -28V DC power supply and diode high selection.
Probe compatibility: Supports up to 14 Bentley Nevada vibration probes, including various types such as proximity, velocity, acceleration, seismic, and phase.

Product Performance
Accurate measurement analysis: It can accurately measure and analyze equipment vibration, effectively monitor and record equipment vibration, and help detect potential problems in advance.
Efficient signal processing: With high-speed sampling capability, it can perform real-time monitoring, quickly and accurately perform A/D conversion, and transmit signals through the VME bus.
Reliable and Stable Operation: Designed to be sturdy and reliable, the components can withstand harsh industrial environments and work stably in the Mark VI system. Whether in simplex or TMR mode, it ensures the accuracy of data processing and system stability, providing a guarantee for the safe operation of the turbine system.
Flexible configuration: The sixteen jumper switches on the surface can be modified according to user needs to adapt to different application scenarios and configuration requirements.




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