Product Short Description

Technical Specifications

  • Processor and Storage Parameters
    • It is equipped with dedicated processing components that work with integrated FPGAs to handle complex LAN communication protocol operations and data forwarding tasks, ensuring rapid processing of large-volume industrial control signals.
    • Built-in EEPROMs are used to store system firmware and basic configuration parameters, which support on-site updates to adapt to adjusted system operation requirements.
  • Electrical and Communication Parameters
    • It supports mainstream industrial communication protocols including TCP/IP and Modbus, laying the foundation for seamless connection with multiple types of industrial automation equipment.
    • It is configured with a LAN interface that complies with industrial Ethernet standards, enabling stable data transmission between the Mark V system and upper-level monitoring or control devices.
    • It follows the consistent 24V DC power supply standard of GE similar modules, and the internal circuit has built-in voltage stabilization and overload protection mechanisms to avoid damage from power fluctuations.
  • Physical and Environmental Parameters
    • It has two sets of dimension specifications: one is 21.5cm×23cm×25cm with a weight of 1.5kg, and the other is 20cm×27cm×4.2cm weighing 1.6kg, both conforming to GE standard module sizes for direct installation into matching cabinets.
    • It adopts a rugged structural design and can maintain stable performance in harsh industrial environments, with an operating temperature range that adapts to common high and low-temperature working conditions in industrial sites.

Description

Function Features

  • Dual Circuit Design for Strong Anti-Interference Capability

    The coexistence of isolated and non-isolated communication circuits allows the board to adapt to different on-site electrical environments. The isolated circuit version can effectively block external electrical interference and voltage spikes, protecting the internal components of the board and the connected core control modules of the Mark V system. The non-isolated version is suitable for stable internal workshop environments with low interference, realizing flexible adaptation to diverse application scenarios.

  • Intuitive On-Site Monitoring and Operation

    The alphanumeric LED display on the board can directly show real-time status information such as communication connection status, data transmission rate and fault codes. With the matching attached keypad, technicians can manually input operation commands, query operating parameters and perform fault diagnosis on-site, which significantly reduces the difficulty of on-site maintenance and debugging.

  • Broad Compatibility Across Multiple Devices

    Beyond its dedicated adaptation to the Mark V Speedtronic system, it can also be perfectly matched with various GE drives and exciters. This cross-equipment compatibility allows it to be integrated into different industrial control systems composed of GE equipment, eliminating compatibility issues during equipment matching and reducing the cost of system transformation.

  • Reliable Structural and Performance Stability

    The combination of FPGAs and EEPROMs enhances the board’s data processing speed and data storage security. FPGAs handle high-speed data forwarding and protocol conversion, while EEPROMs stably store critical parameters without data loss due to short-term power outages. The standardized modular design ensures tight connection with the Mark V system slot, preventing poor contact caused by mechanical vibration in industrial sites.

  • Convenient On-Site Upgrade and Maintenance

    The EEPROMs support on-site firmware upgrades. Technicians can complete the upgrade of the board’s operating program through simple operation steps on-site, without disassembling the entire control system. The modular structure also allows for quick replacement of the board, and the plug-and-play design shortens the downtime caused by component failures.

Application Scenarios

  • Gas Turbine Control in Thermal Power Plants

    It is widely used in the Mark V control systems of gas turbines in thermal power plants. It transmits real-time data such as turbine speed, exhaust temperature and fuel flow to the central monitoring room through the LAN, and receives control instructions from the upper system to adjust the turbine’s operating state. It ensures the stable output of the turbine and the efficient operation of the power generation system, while also assisting in the transmission of fault warning signals to realize timely maintenance.

  • Petrochemical Industry Equipment Linkage Control

    In petrochemical refineries and natural gas processing plants, this board is integrated into the control systems of turbines that drive compressors and transfer pumps. It realizes data communication between the turbine control system and the process control system, adjusting the operating parameters of the turbine according to the pressure and flow signals of oil and gas in the pipeline, ensuring the stability of the oil and gas processing and transportation process.

  • Metallurgical and Mining Production Supporting Systems

    In metallurgical plants, it is applied to the Mark V control systems of turbines in blast furnace air supply systems. It transmits air supply pressure and flow signals between the turbine control module and the blast furnace control system, adjusting the turbine’s operation to maintain stable blast furnace pressure. In large mining sites, it is used in the control systems of power generation and water supply turbines, ensuring the reliable operation of supporting equipment through stable data communication.

  • Maintenance of Legacy Industrial Control Systems

    It serves as a key spare part for industries such as energy, manufacturing and chemical engineering that still rely on the Mark V Speedtronic system. When the original communication board of the system malfunctions and leads to interrupted data transmission, replacing it with the DS200SLCCG3AGH can quickly restore the system’s communication function, avoiding the huge cost of replacing the entire control system and extending the service life of the legacy equipment.

  • Automated Production Lines in Light Industry

    In large-scale papermaking and printing plants, this board is integrated into the control systems of motors and transmission turbines on the production lines. It realizes data interaction between the Mark V system and the production line’s speed control and tension control modules. It adjusts the operation of the turbines in real-time according to the production process requirements, ensuring the continuity and stability of the production lines and improving production efficiency and product quality.

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