China Vertical break electrical isolator Manufacturer, Supplier, Factory

We always believe that one's character decides products' quality, the details decides products' quality ,with the REALISTIC,EFFICIENT AND INNOVATIVE team spirit for Vertical break electrical isolator,Vertical break circuit breaker,Isolating switch for industrial use,Vertical break power switch,Two post isolating breaker, We are generally looking ahead to forming effective business associations with new clientele around the world.
Vertical break electrical isolator, You can always find the products and solutions you need to have in our company! Welcome to inquire us about our product and anything we know and we can help in auto spare parts. We're looking forward to work with you for a win-win situation.

Hot Products

  • 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.
  • Solid Insulated Ring Main Unit Rmu Electrical Switchgear

    Solid Insulated Ring Main Unit Rmu Electrical Switchgear

    The KXAIS-12 series Solid Insulated Ring Main Unit Rmu Electrical Switchgear is a fully insulated, fully sealed, and anti condensation ring main unit equipment that is based on solid sealing and vacuum insulation technology, and is independently developed using epoxy resin (APG process) to pour the three position switch (isolation, grounding), circuit breaker vacuum arc extinguishing chamber, and main circuit primary conductive components together to form the insulation component body. It is assembled from insulated busbars and other insulation connectors to form a fully insulated, fully sealed, and anti condensation ring main unit.
  • DZ47sLE-63 RCCB ELCB Residual Current Circuit Breaker

    DZ47sLE-63 RCCB ELCB Residual Current Circuit Breaker

    Reliable Protection: The FATO DZ47sLE-63 Earth Leakage Circuit Breaker (ELCB) AC delivers robust dual protection against electric shock hazards and short-circuit faults, ensuring personnel safety and system integrity. Its integrated trip mechanism combines residual current detection (≤30mA sensitivity) and instantaneous magnetic tripping, effectively isolating faults while maintaining a secure operational environment. Wide Application Scope: Designed as a versatile miniature circuit breaker (MCB), it supports 1P+N, 2P, 3P, 3P+N, and 4P configurations, accommodating diverse electrical networks ranging from residential single-phase systems to industrial three-phase installations. The modular design ensures compatibility with global wiring standards, making it ideal for panel builders and system integrators. Durability & Cost Efficiency: Engineered with industrial-grade thermoplastics and silver-alloy contacts, this ELCB guarantees a minimum service life of 20,000 mechanical operations under IEC 60947-2 compliance. Backed by a 2-year warranty, its maintenance-free design reduces downtime and lifecycle costs, offering exceptional long-term value. Global Compliance: Certified to IEC 61009-1 (RCCB) and EN 60898-1 (MCB) standards, the device meets stringent international safety and performance requirements. Its universal design ensures seamless integration into both 50Hz and 60Hz grids, aligning with regional regulations across 230V/400V markets in Asia, Europe, and beyond. Customization Flexibility: Users can select optimized configurations for frequency (50Hz/60Hz) and voltage ratings (230V/400V), enabling tailored solutions for HVAC systems, machinery control panels, or renewable energy installations. Optional auxiliary contacts and shunt releases further enhance adaptability to complex automation scenarios.
  • 40.5KV 1600A Outdoor high-voltage combination electrical appliances

    40.5KV 1600A Outdoor high-voltage combination electrical appliances

    The 40.5KV 1600A Outdoor high-voltage combination electrical appliances, an outdoor high-voltage electrical appliance, is an efficient solution that combines air insulation with SF6 gas for arc extinguishing. This unit is designed for controlling and protecting three-phase AC 40.5kV transmission and distribution systems, as well as for connecting circuit breakers and operating capacitor banks. Its efficiency makes it ideal for use in urban substations, enterprise substations, and mountain substations with limited land availability, promising to improve your operations.
  • 36KV 3150A Outdoor HV SF6 Circuit Breaker

    36KV 3150A Outdoor HV SF6 Circuit Breaker

    LW8-35 36KV 3150A Outdoor HV SF6 Circuit Breaker is applicable for outdoor 50Hz three-phase HV electric equipment and control & protection of 36kV power distribution & transmission system, as well as measurement and protection via the breaker enclosed current transformer. Breaker is also used for interconnected circuit breakers and switching capacitor banks.
  • 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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