Ningbo Richge Technology Co., Ltd.
Ningbo Richge Technology Co., Ltd.
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China IEC indoor SF6 gas circuit breaker HD4 Manufacturer, Supplier, Factory

Responsible excellent and fantastic credit rating standing are our principles, which will help us at a top-ranking position. Adhering towards the tenet of "quality initial, buyer supreme" for IEC indoor SF6 gas circuit breaker HD4, 35kv Vacuum Sf6 Circuit Breaker 40.5kv Main Switch, MV SF6 Gas Switchgear Breaker, 35kV Gas Insulated Breaker, 35kV Indoor Gas CB, Our tenet is evident each of the time: to provide good quality solution at competitive rate to clients throughout the planet. We welcome potential purchasers to call us for OEM and ODM orders.
IEC indoor SF6 gas circuit breaker HD4, Our technical expertise, customer-friendly service, and specialized products and solutions make us/company name the first choice of customers and vendors. We have been looking for your inquiry. Let's set up the cooperation right now!

Hot Products

  • 36kV Embedded Poles with Upper Outlet Side Mounted Type Indoor Vacuum Circuit Breaker

    36kV Embedded Poles with Upper Outlet Side Mounted Type Indoor Vacuum Circuit Breaker

    VSG/C-40.5 Series Side Mounted Vacuum Circuit Breaker is a new type of three phase 50Hz according to the unique design concept and combined with the market demand and development, the rated voltage of indoor switchgear 40.5kV, it can be provided to industrial and mining enterprises, power plant and substation as the control and protection of electrical equipment, and is suitable for frequent operation.
  • Switchgear Drawer Bottom Board

    Switchgear Drawer Bottom Board

    The Switchgear Drawer Bottom Board is a critical component designed to provide structural stability and support to the entire switchgear assembly. Made from high-grade, corrosion-resistant materials, such as galvanized steel or stainless steel, the bottom plate ensures durability and long service life even in demanding industrial environments. Its precision-engineered construction allows for secure mounting and alignment of internal components, facilitating ease of installation and maintenance.
  • Indoor HV Air Load Break Switch And Fuse Combination Apparatus

    Indoor HV Air Load Break Switch And Fuse Combination Apparatus

    FKN12-12D series air-blast Ioad break switch and FKRN12-12D series air-blast load break switch-fuse combination apparatus are new series switchgear applies to three-phase electric distribution system of rated 12kV, acting as protecting and control apparatus for transformers, cable and overhead wiring. These series are especially applicable in rural, urban terminal substation and prefabricated substations, as well as ring network power supply. FKN12-12D can break and make Ioad current and over-current. FKRN12-12D can break and make over-current load current and short-circuit current(Iimited current fuse). This product is featured with impact structure aesthetic appearance. reliable interlock and high insulating level. In the spring storage operation mechanism, ON/OFF speed is free from the influence of the manpower. For the arc-extinguish, electric arc-extinguish inside the insulating cover, the free gas occurs at sparking do not cause descend of insulating level between phases and phase to earth. The insulation cover clapboard separates electrified part thus boost protection grade of ring main unit. The copper-tungsten contact and main contact brings along reliable conductivity and long life. This product achieves sound fame due to easy maintenance and operation as well as reliable performance. It is in compliance with IEC62271-105.
  • Switchgear Outgoing Block

    Switchgear Outgoing Block

    The Switchgear Outgoing Block is a crucial component designed for reliable and efficient power distribution in electrical switchgear systems. Constructed from high-quality materials, such as impact-resistant plastics and robust metals, the Outgoing Block ensures durability and longevity even under demanding conditions.
  • switchgear test systems

    switchgear test systems

    Our company specializes in advanced Switchgear Test Systems, providing innovative solutions for the testing and maintenance of electrical power distribution equipment. Our systems are designed to ensure the reliability and safety of switchgear by simulating real-world conditions and identifying potential issues before they impact operations. Built with state-of-the-art technology and high-quality components, our test systems offer accurate, efficient performance and meet international standards. We are committed to supporting the seamless operation of electrical networks across various industrial and commercial applications.
  • Ground Switch Mechanism for Switchgear

    Ground Switch Mechanism for Switchgear

    The Ground Switch Mechanism for Switchgear is a safety mechanism designed to prevent the accidental operation of a ground switch in electrical systems, such as switchgear, transformers, and circuit breakers. It ensures that the ground switch can only be operated under safe conditions, typically when other switches, such as circuit breakers or isolators, are in the correct position. This interlock device is crucial for preventing the grounding of equipment while it is still energized, thereby reducing the risk of electrical accidents and ensuring the safety of maintenance personnel. The device typically works by physically preventing the operation of the ground switch unless certain conditions are met, such as ensuring that the disconnecting switch is open or that the equipment has been properly isolated from the power supply. In some designs, the interlock may also include status indicators or alarms to signal whether the conditions for grounding are safe. The Ground Switch Interlock Device is commonly used in substations, power plants, and industrial electrical systems where high-voltage equipment is present and maintenance work needs to be performed safely. It enhances operational safety by preventing errors in the grounding process, ensuring that equipment is properly isolated and grounded before work begins. By incorporating interlocking mechanisms, the device helps to streamline maintenance procedures, minimize human error, and improve the overall reliability of the electrical system.

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