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GE IS220UCSAH1A|Universal Control Station|
Core Features
Independent control and real-time processing: The 667MHz PowerPC processor paired with the QNX system ensures fast execution of control logic and adapts to real-time requirements such as turbine speed regulation and combustion control.
Multi redundancy architecture adaptation: Supports triple redundancy configuration, with 3 IONet network ports to ensure stable communication with I/O modules, and 2 UDH network ports for upper level monitoring to avoid single point failures.
Flexible communication and expansion: 5 Ethernet ports+USB interface, supporting engineering debugging and data backup, CF card expandable storage, suitable for complex control programs.
Maintenance free design: No fan for natural heat dissipation, wide temperature range, metal shell resistant to vibration and electromagnetic interference, suitable for harsh industrial environments such as power generation and petrochemicals.
Convenient operation and maintenance: Supports hot plugging (requires redundant configuration), real-time LED display of operating status, and fault information can be uploaded to the upper software for quick troubleshooting.
Application scenarios
Gas/steam turbine: serves as the main controller to execute speed regulation, combustion, and trip logic, suitable for combined cycle power plants and self owned power plants.
Petrochemical industry: used for distributed control of compressors and pump units, supporting balance device (BOP) control and some renovation projects.
Metallurgy and papermaking: Adapt the logic control and status monitoring of equipment such as fans and motors to improve the automation level of production lines.
High redundancy demand scenario: Triple redundancy architecture is suitable for projects with extremely high reliability requirements such as nuclear power plants and large combined cycle power plants.
GE IS220UCSAH1A|Universal Control Station|
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By structuring the information in this manner, the article provides a clear and organized understanding of input channels, transducer supply, and communication implementations in distributed control systems.
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