China Gas-insulated Circuit Breaker Manufacturer, Supplier, Factory

In China, Kexunan supplier specializes in Gas-insulated Circuit Breaker. As one of the leading manufacturer and supplier in China, we provide a price list if you want. You can purchase our high quality and customized Gas-insulated Circuit Breaker from our factory. We sincerely look forward to becoming your reliable long-term business partner!

Hot Products

  • 3.6KV 630A Medium Voltage Electrical Switchgear

    3.6KV 630A Medium Voltage Electrical Switchgear

    The KYN28-12(Z) 3.6KV 630A Medium Voltage Electrical Switchgear is designed for 12kV rated voltage and 50Hz rated frequency in three-phase AC power systems. It functions to handle electric energy reception and distribution, as well as to control, protect, and monitor circuits.
  • Photovoltaic prefabricated cabin for new energy primary and secondary equipment

    Photovoltaic prefabricated cabin for new energy primary and secondary equipment

    KXAYZC-12 Photovoltaic prefabricated cabin for new energy primary and secondary equipment is a product specially designed by our company for the box change equipment used in the northwest and northeast cold desert and harsh environment. In view of the temperature difference in the region (low cold or high temperature), more dust and other special features, the product uses a fully sealed double-layer temperature insulation split box, and the equipment is fully automatic heating and cooling equipment.
  • 72.5KV Outdoor high-voltage SF6 ceramic column circuit breaker

    72.5KV Outdoor high-voltage SF6 ceramic column circuit breaker

    The 72.5KV Outdoor high-voltage SF6 ceramic column circuit breaker is designed for controlling and protecting 72.5KV transmission and transformation systems. It operates on a three-phase AC 50HZ outdoor high-voltage switchgear and can function and opener group. By utilizing the intelligent arc extinguishing principle of "thermal expansion+auxiliary blowing" and equipped with a CTB-1 operating mechanism, this circuit breaker meets the standards of GB1984-2003 and International Electrotechnical Commission standard IEC62271-100:2001 for High Voltage AC Circuit Breakers.
  • Medium voltage automatic reactive power compensation complete device

    Medium voltage automatic reactive power compensation complete device

    The Medium voltage automatic reactive power compensation complete device Designed for use in 50Hz AC power systems with a voltage of up to 35kV, substations installed on the 6-35kV side feature a power factor, improving voltage quality and reducing network losses. There are two types of structures available for the high voltage automatic reactive power compensation equipment. One type is cabinet-based, offering features such as electromagnetic locking and a live display function, with the option to include reactive automatic controllers and automatic switching based on specific needs. These cabinets are highly integrated and tightly structured for indoor use. The other type is frame-based, cost-effective, and requires users to provide electromagnetic closure.
  • Medium voltage AC metal ring main unit switchgear

    Medium voltage AC metal ring main unit switchgear

    The HXGN-12 switchgear Medium voltage AC metal ring main unit switchgear is a comprehensive set of high-voltage AC devices designed for use in three-phase AC ring networks, terminal distribution networks, and industrial electrical systems. Rated for 3.6-12kV and 50Hz, it serves as a reliable and protective solution for receiving, distributing, and regulating electricity. This product adheres to national standards GB3906 and IEC60298, as well as DL/T402 and DL/T404 standards, and meets the "five prevention" locking requirements, ensuring maximum safety and efficiency in its operation.
  • Arc extinction and harmonic elimination cabinet

    Arc extinction and harmonic elimination cabinet

    Arc extinction and harmonic elimination cabinet During regular functioning, the microcomputer controller constantly monitors the voltage signal received from PT. Suppose the system experiences PT disconnection, single-phase metal grounding, or single-phase arc grounding. In that case, the auxiliary secondary open triangle voltage will promptly shift from a low to a high level. The microcomputer controller will then activate. It will determine the type and phase discrepancy based on the alteration in the PT secondary voltage

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