Manufacturing Company:General Electric
Model Number:IS200STAIH2ABA
Category:Boards & Turbine Control
Series:Mark VIe & Mark VIeS Control Systems
Dimensions:Compact DIN-rail mountable design
Electrical Rating:Up to 100VDC/24VDC
Current Handling Capacity:Up to 2A
Signal Processing:Analog input with up to 3 significant product revisions
Interface Compatibility:Standard interface for seamless integration
Environmental Rating:Industrial-grade durability for harsh environments
Integrating state-of-the-art technology, the GE IS200STAIH2ABA is a high-performance DIN rail mounting module specifically designed for seamless integration into industrial gas and steam turbine control systems. This cutting-edge module leverages the robust capabilities of the Mark VIe series, offering unparalleled reliability and efficiency.
Crafted from high-quality materials for durability and resistance to harsh industrial environments, this module ensures longevity and minimal maintenance requirements. Its compact design, combined with efficient power consumption, makes it ideal for space-constrained installations without compromising on performance.
Featuring advanced diagnostics and monitoring functionalities, the IS200STAIH2ABA enables real-time system health assessments, predictive maintenance scheduling, and proactive troubleshooting. This not only enhances operational efficiency but also minimizes downtime, contributing significantly to overall productivity and cost savings.
Ease of installation and compatibility with existing GE turbine control systems make the IS200STAIH2ABA a preferred choice for both new installations and retrofit projects. It seamlessly integrates with the latest software updates and maintenance protocols, ensuring compatibility with evolving industry standards and practices.
Equipped with a comprehensive set of interfaces, including RS-485, the module facilitates seamless communication with various control systems and devices, enabling seamless data exchange and enhanced automation capabilities. This results in improved system coordination, better performance monitoring, and enhanced control over turbine operations.
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