GE DS3800HFPB1F1E Processor Board

Technical Specifications

  • Brand: GE (General Electric)
  • Model: DS3800HFPB1F1E
  • System Affiliation: Compatible with GE Mark series turbine control systems
  • Processor: High-performance processor capable of executing complex control algorithms
  • Memory: Sufficient memory capacity to store control programs and data
Category:
Description
  • Connectors:
    • A black forty-pin male connector port for connecting the board to other electrical components.
    • Multiple connectors for interfacing with various I/O modules and communication networks.
  • Integrated Circuits: Contains several integrated circuits with miniature capacitors, resistors, diodes, and other components.
  • Indicators: Eight red LED indicators on one edge of the board for status monitoring.
  • Jumpers: Four blue jumper pins on the right side for modifying circuit board settings.

Key Features

  • High Reliability: Built to operate reliably in harsh industrial settings, minimizing downtime and maintenance requirements.
  • Precision Control: Capable of executing complex control algorithms with high precision, ensuring optimal turbine performance.
  • Modular Design: Modular architecture allows for easy installation, maintenance, and upgrades, facilitating system flexibility and scalability.
  • Status Monitoring: LED indicators provide visual feedback on the board’s status, aiding in troubleshooting and maintenance.
  • Configuration Flexibility: Jumpers enable on-site configuration adjustments to meet specific application requirements.

Functional Characteristics

  • Iavg/Vavg Display: Shows the average of three-phase currents and three voltages. This line is not visible if the VT WIRING setpoint is set to SINGLE PHASE DIRECT. L-N is displayed when VT WIRING is set to 4 WIRE WYE (3 VTs), 4 WIRE WYE DIRECT, 4 WIRE WYE (2 VTs), or 3 WIRE DIRECT. L-L is displayed when VT WIRING is set to 3 WIRE DELTA (2 VTs).
  • Neutral Current Determination: Neutral current can be determined by two methods. One method measures the current via the neutral CT input. The second calculates the neutral current based on the three-phase currents using instantaneous samples (Ia + Ib + Ic = In). If the sum of the phase currents does not equal 0, the result is the neutral current. When using the CT input, the neutral current reading will be correct only if the CT is wired correctly and the correct neutral CT primary value is entered.

Application Scenarios

  • Power Generation: Widely used in power plants to control gas and steam turbines, ensuring efficient and reliable power generation.
  • Oil and Gas Industry: Applied in oil and gas production facilities to monitor and control various equipment, such as compressors and pumps, enhancing operational efficiency and safety.
  • Industrial Automation: Utilized in various industrial automation applications to control rotating equipment, such as motors, fans, and conveyors, improving production processes and product quality.
  • Other Fields: Suitable for any application requiring high-reliability control of complex industrial processes, including marine propulsion, mechanical contracting, and mining.
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