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GE IS215UCVEH2AB

The GE IS215UCVEH2AB is a component of the GE Mark VIe control system, designed for use in various industrial applications.

Detailed content

Technical Specifications

  1. Model: IS215UCVEH2AB
  2. Type: Universal Communications and Verification (UCV) card
  3. Functionality:
    • Designed for communications and verification tasks in the GE Mark VIe control system
    • Provides connectivity between the control system and field devices
    • Handles complex communication protocols and data verification processes
  4. Power Requirements:
    • Voltage: Typically operates on 24V DC
    • Power Consumption: Specific details are usually provided in the technical documentation
  5. Physical Specifications:
    • Form Factor: Standard card format for integration into a rack or chassis
    • Dimensions: Specifications for size are provided in technical drawings

Features

  1. High-Speed Communication:
    • Supports high-speed data exchange between control systems and field devices.
    • Provides reliable and efficient communication in industrial environments.
  2. Versatility:
    • Capable of handling a wide range of communication protocols, making it suitable for diverse applications.
    • Offers flexibility in connecting different types of field devices to the control system.
  3. Verification Capabilities:
    • Ensures accurate data transmission and integrity through built-in verification mechanisms.
    • Enhances the reliability of communication within the control system.
  4. Integration:
    • Designed to integrate seamlessly with the GE Mark VIe control system.
    • Facilitates easy connection and communication with other system components.

Applications

  1. Industrial Automation:
    • Used in various industrial automation systems to manage and monitor processes.
    • Essential for communication between the control system and field instrumentation.
  2. Power Generation:
    • Commonly used in power generation plants to manage and control equipment.
    • Ensures reliable communication for monitoring and controlling power generation processes.
  3. Process Control:
    • Applied in process control environments where precise and reliable data communication is crucial.
    • Supports complex process control systems requiring robust communication solutions.
  4. Energy Management:
    • Utilized in energy management systems to facilitate communication and data exchange.
    • Plays a role in managing and optimizing energy production and distribution.

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