ABB SYN5201A-Z,V271

  • Technical Specifications1
    • Operating Voltage: 24V DC.
    • Input Voltage: 85 - 277V AC or 120 - 390V DC (can withstand 350V DC for 2 hours).
    • Auxiliary Voltage Range: 24V DC to 250V DC.
    • Permissible Voltage Range: 180V DC to 360V DC.
    • Current Range: 100 - 400A.
    • Operating Frequency: 50Hz, 60Hz, 16/2Hz.
    • Communication Interface: Supports various communication protocols such as Modbus, Profibus, and Ethernet.
    • Weight: Approximately 2kg.
    • Dimensions: 443mm x 155mm (hat - type installation).
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  • Function Features
    • High – reliability Design3: It adopts a dual – channel configuration, in which one channel monitors the operation of the other channel, and complies with the IEC 61508 SIL2 safety standard, which can operate stably in harsh industrial environments.
    • Accurate Measurement3: It can accurately measure the voltage (amplitude) ΔU, slip (frequency difference) “s” and phase difference, providing accurate data support for parallel switching.
    • Intelligent Regulation3: By transmitting control pulses to the voltage regulator or turbine controller, it can reduce the voltage difference ΔU and slip “s”, ensuring the stable operation of the generator in parallel.
    • Multiple Protection Functions4: It has functions such as over – voltage protection, over – current protection, and temperature monitoring, which can effectively protect the equipment and the power system.
    • Modular Design4: The modular design is convenient for expansion and maintenance. It supports a variety of I/O modules and communication modules, and can be integrated with other automation components such as PLC and HMI.
    • Multi – parameter Set Configuration4: It supports multi – parameter set configuration. Users can preset and select parameter sets for different grid – connection conditions, enhancing the flexibility and adaptability of the system.
  • Application Scenarios1
    • Power Industry: It is used for the grid – connection operation of generators and lines, and is widely used in power distribution, wind power, solar power generation and other scenarios to realize the monitoring, control and optimization of the power system.
    • Industrial Automation: In the industrial field, it is used to control the parallel connection of generator sets and the public power grid, and can also be used in multi – axis synchronous control to ensure the coordinated work of various equipment.
    • Transportation: It is used for the synchronous control of multiple equipment in the transportation system.
    • Building Automation: It can be used in building air – conditioning systems, lighting systems, security systems, etc., to achieve efficient energy use and system automation control.
    • Other Fields: It is also applicable to industrial fields such as petroleum, chemical industry, and metallurgy, as well as occasions that require high – precision synchronization and control.
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