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GE IS400TBCIS2C Contact I/O Terminal Board for Mark VIe

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xName | GE IS400TBCIS2C Contact I/O Terminal Board | Product ID | IS400TBCIS2C |
---|---|---|---|
Series | Turbine Specific Primary Trip Board | Function | Mark VIe Gateway Controller |
Product Net Depth/Length | 330mm | Product Net Height | 200mm |
Product Net Width | 100mm | Product Net Weight | 2kg |
Warranty | 1year | ||
Highlight | GE Mark VIe I/O terminal board,turbine control contact terminal,GE IS400TBCIS2C terminal board |
Attribute | Value |
---|---|
Name | GE IS400TBCIS2C Contact I/O Terminal Board |
Product ID | IS400TBCIS2C |
Series | Turbine Specific Primary Trip Board |
Function | Mark VIe Gateway Controller |
Product Net Depth/Length | 330mm |
Product Net Height | 200mm |
Product Net Width | 100mm |
Product Net Weight | 2kg |
Warranty | 1 year |
The GE IS400TBCIS2C is a Contact I/O Terminal Board part of the Mark VIeS Series, designed for GE Distributed Turbine Control Systems. As a centralized interface, it connects field devices to control system I/O modules, simplifying wiring, maintenance, and troubleshooting in industrial automation.
- I/O Capabilities: Offers 12 channels supporting diverse signal types, including digital inputs/outputs and analog outputs. Each channel uses labeled screw or spring-clamp terminals for easy field device connection.
- Industrial Durability: Operates in -30 to 65°C with 5-95% humidity, enduring extreme environmental conditions. Surface-mount technology enhances reliability, while a maximum 15Ω lead resistance ensures signal integrity.
- Design & Mounting: Compact with modular design, suitable for control cabinet installation. Compatible with standard mounting setups, facilitating seamless integration into turbine control architectures.
- Compatibility: Integrates with Mark VIeS systems, supporting 50/60 Hz frequency. Works with control system software for easy configuration, ensuring cohesive communication between field devices and controllers.
- Practical Functionality: Centralizes wiring to streamline installation and diagnostics, reducing downtime during maintenance. Ideal for industrial settings requiring robust signal management in turbine and automation applications.
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