Brand: GE Description:Emergency Terminal Board Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty:3 Payment Term: T/T Shipping Port: Shenzhen GE IS200TREGH1BDC is a Emergency Terminal Board that implements equipment status monitoring and signal processing through digital input/output channels. It is especially suitable for industrial scenarios with high reliability requirements such as gas turbines and steam turbines.
Manufacture |
GE |
Model Number |
IS200TREGH1BDC |
Series |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8543709090 |
Dimension |
33*18*5cm |
Packing Dimension |
35*21*7cm |
Weight |
2kg |
Core parameters
Number of channels: 16 digital inputs, compatible with dry contact/wet contact signals
Voltage range: 24V DC, input current ≤7mA
Response time: 1ms
Number of channels: 16 transistor outputs
Output frequency: 10kHz, response time 0.2ms
Protocol support: ProfiBus-DP, DeviceNet, EtherNet/IP
Rate: 12Mbps, compatible with Mark VI series master modules
Operating temperature: -20℃ to 60℃
Protection level: IP20, humidity tolerance 5%-95%
Power supply: 24V DC power supply, power consumption <100mA
Features
1. High anti-interference ability
GE IS200TREGH1BDC adopts photoelectric isolation + metal oxide varistor technology, suppressing electromagnetic interference in industrial sites, with an isolation voltage of 2500V.
2. Redundant protection mechanism
GE IS200TREGH1BDC supports working with VPRO protection board and TRPG terminal board to build triple redundant voting logic, which is suitable for high-risk scenarios such as gas turbine overspeed protection.
3. Real-time control performance
Input response 1ms, output response 0.2ms, meeting the millisecond response requirements of Mark VI system for turbine emergency tripping
4. Expansion and compatibility
GE IS200TREGH1BDC can expand analog modules and high-speed counting modules, and realize multi-rack synchronous control through I/O NET network
Application scenarios
1. Overspeed emergency trip protection in power plants (such as millisecond-level cut-off system in case of mechanical failure or overload);
2. In the field of petrochemicals, real-time monitoring of valve status and pump start-stop logic can be used to trigger emergency shutdown to avoid production accidents;
3. Applied to rail transit signal systems to ensure the safety interlocking control of train door control and traction systems.