Description
Type:Contact Terminal Board
Series:Mark VI
Brand:General Electric (GE)
Model Number:IS200TBCIH2BBC
Module Type:Board
Power Supply Voltage:DC 24V
Operating Temperature Range:-10°C to +55°C
Dimensions (WxHxD):180mm x 95mm x 50mm
Weight:0.5kg
Material:Ruggedized Industrial Grade PCB Material
Number of Terminal Blocks:2 Large Terminal Blocks
Terminal Connections:48 Terminal Connections
Capacitor Configuration:30 Small Black Capacitors in 15 Pairs
Electrical Connections:Supports Various Electrical Interfaces
Integrating cutting-edge technology, the GE IS200TBCIH2BBC Control Systems is specifically engineered to enhance the operational efficiency of industrial turbines. This high-performance contact terminal board ensures reliable and consistent power delivery, crucial for the smooth functioning of gas and steam turbines in demanding industrial environments.
Featuring robust design and advanced materials, this board withstands extreme conditions, guaranteeing durability and longevity. Its dual large terminal blocks provide ample connection points, accommodating diverse electrical configurations and ensuring flexibility in system integration.
With its precise capacitors and efficient electrical connections, the IS200TBCIH2BBC Control Systems offers unparalleled performance, facilitating precise control over turbine operations. This not only optimizes energy usage but also enhances safety and operational reliability.
Ease of Installation and Maintenance: The modular design of the IS200TBCIH2BBC Control Systems simplifies the process of installation and maintenance, reducing downtime and enhancing operational efficiency. It adheres to strict industry standards for quality and safety, making it a preferred choice for professionals in the field of industrial automation.
Experience the future of industrial turbine control with the GE IS200TBCIH2BBC Control Systems. Designed to deliver exceptional performance and reliability, it is an indispensable component in modern industrial machinery, driving innovation and efficiency in turbine management.
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