Reactors

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  • CKSG Reactor Matching with Capacitor

    7% reactance rate: Suppresses harmonics above the 5th order;
    14% reactance rate: Suppresses harmonics above the 3rd order.
    27% reactance rate: Suppresses harmonics above the 2nd order.
    1.Available in three-phase and single-phase dry-type iron-core configurations.
    2.Core: Imported cold-rolled silicon steel laminations segmented by epoxy-laminated glass spacers to stabilize air gaps.
    3.Windings: Tightly wound with Class H/C enamel-coated flat copper wire for high-temperature resistance and silent operation.
    4.Assembly: Non-magnetic fasteners; pre-baked, vacuum-impregnated, and thermally cured to bond core and windings, ensuring low losses and high harmonic suppression.
    5.Corrosion-resistant terminals and enclosures; compact size, lightweight, and cabinet-compatible design for cost-effective installation.

  • CKSG Series LV Dry-Type Iron Core Reactor

    7% reactance rate: Suppresses harmonics above the 5th order;
    14% reactance rate: Suppresses harmonics above the 3rd order.
    27% reactance rate: Suppresses harmonics above the 2nd order.
    1.Available in three-phase and single-phase dry-type iron-core configurations.
    2.Core: Imported cold-rolled silicon steel laminations segmented by epoxy-laminated glass spacers to stabilize air gaps.
    3.Windings: Tightly wound with Class H/C enamel-coated flat copper wire for high-temperature resistance and silent operation.
    4.Assembly: Non-magnetic fasteners; pre-baked, vacuum-impregnated, and thermally cured to bond core and windings, ensuring low losses and high harmonic suppression.
    5.Corrosion-resistant terminals and enclosures; compact size, lightweight, and cabinet-compatible design for cost-effective installation.

  • Series Low Voltage Reactor

    7% reactance rate: Suppresses harmonics above the 5th order;
    14% reactance rate: Suppresses harmonics above the 3rd order.
    27% reactance rate: Suppresses harmonics above the 2nd order.
    1.Available in three-phase and single-phase dry-type iron-core configurations.
    2.Core: Imported cold-rolled silicon steel laminations segmented by epoxy-laminated glass spacers to stabilize air gaps.
    3.Windings: Tightly wound with Class H/C enamel-coated flat copper wire for high-temperature resistance and silent operation.
    4.Assembly: Non-magnetic fasteners; pre-baked, vacuum-impregnated, and thermally cured to bond core and windings, ensuring low losses and high harmonic suppression.
    5.Corrosion-resistant terminals and enclosures; compact size, lightweight, and cabinet-compatible design for cost-effective installation.

  • Linear Reactor

    7% reactance rate: Suppresses harmonics above the 5th order;
    14% reactance rate: Suppresses harmonics above the 3rd order.
    27% reactance rate: Suppresses harmonics above the 2nd order.
    1.Available in three-phase and single-phase dry-type iron-core configurations.
    2.Core: Imported cold-rolled silicon steel laminations segmented by epoxy-laminated glass spacers to stabilize air gaps.
    3.Windings: Tightly wound with Class H/C enamel-coated flat copper wire for high-temperature resistance and silent operation.
    4.Assembly: Non-magnetic fasteners; pre-baked, vacuum-impregnated, and thermally cured to bond core and windings, ensuring low losses and high harmonic suppression.
    5.Corrosion-resistant terminals and enclosures; compact size, lightweight, and cabinet-compatible design for cost-effective installation.

  • Low Voltage Reactor

    7% reactance rate: Suppresses harmonics above the 5th order;
    14% reactance rate: Suppresses harmonics above the 3rd order.
    27% reactance rate: Suppresses harmonics above the 2nd order.
    1.Available in three-phase and single-phase dry-type iron-core configurations.
    2.Core: Imported cold-rolled silicon steel laminations segmented by epoxy-laminated glass spacers to stabilize air gaps.
    3.Windings: Tightly wound with Class H/C enamel-coated flat copper wire for high-temperature resistance and silent operation.
    4.Assembly: Non-magnetic fasteners; pre-baked, vacuum-impregnated, and thermally cured to bond core and windings, ensuring low losses and high harmonic suppression.
    5.Corrosion-resistant terminals and enclosures; compact size, lightweight, and cabinet-compatible design for cost-effective installation.

  • Low Noise Dry-Type Iron Core Reactor

    1.Rated voltages:
    3kv,6kv,10kv,15kv,20kv,35kv
    2.Insulation: Class F.
    3.Uses epoxy resin casting or air insulation, eliminating fire and explosion hazards, making it ideal for indoor, subway, chemical plants, and other fire-sensitive environments.
    4.Typically consists of air-core coils (no iron core) or iron-core designs with air gaps, ensuring good magnetic linearity and avoiding saturation.

  • Filter Reactor

    7% reactance rate: Suppresses harmonics above the 5th order;
    14% reactance rate: Suppresses harmonics above the 3rd order.
    27% reactance rate: Suppresses harmonics above the 2nd order.
    1.Available in three-phase and single-phase dry-type iron-core configurations.
    2.Core: Imported cold-rolled silicon steel laminations segmented by epoxy-laminated glass spacers to stabilize air gaps.
    3.Windings: Tightly wound with Class H/C enamel-coated flat copper wire for high-temperature resistance and silent operation.
    4.Assembly: Non-magnetic fasteners; pre-baked, vacuum-impregnated, and thermally cured to bond core and windings, ensuring low losses and high harmonic suppression.
    5.Corrosion-resistant terminals and enclosures; compact size, lightweight, and cabinet-compatible design for cost-effective installation.

  • Low Voltage Filter Reactor

    1.Rated voltages:
    3kv,6kv,10kv,15kv,20kv,35kv
    2.Insulation: Class F.
    3.Uses epoxy resin casting or air insulation, eliminating fire and explosion hazards, making it ideal for indoor, subway, chemical plants, and other fire-sensitive environments.
    4.Typically consists of air-core coils (no iron core) or iron-core designs with air gaps, ensuring good magnetic linearity and avoiding saturation.

  • Dry-Type Iron Core Shunt Reactor

    1.Rated voltages:
    3kv,6kv,10kv,15kv,20kv,35kv
    2.Insulation: Class F.
    3.Uses epoxy resin casting or air insulation, eliminating fire and explosion hazards, making it ideal for indoor, subway, chemical plants, and other fire-sensitive environments.
    4.Typically consists of air-core coils (no iron core) or iron-core designs with air gaps, ensuring good magnetic linearity and avoiding saturation.

  • Dry-Type Shunt Reactor

    1.Rated voltages:
    3kv,6kv,10kv,15kv,20kv,35kv
    2.Insulation: Class F.
    3.Uses epoxy resin casting or air insulation, eliminating fire and explosion hazards, making it ideal for indoor, subway, chemical plants, and other fire-sensitive environments.
    4.Typically consists of air-core coils (no iron core) or iron-core designs with air gaps, ensuring good magnetic linearity and avoiding saturation.

  • BKGKL Dry-type Air Core Shunt Reactor

    1.Connected in parallel in 500 kv,200 kv and 110 kv substation low-voltage side, used for long distance transmission line
    2.capacitance reactive compensation, make the transmission and distribution system voltage stability.

  • CKGKL Dry-type Air Core Series Reactor

    1.Rated voltage:3464.1V
    2.Reactor connected in series with the capacitors suppress harmonic voltage amplification
    3. reduce system waveform distortion
    4.limit inrush currents during capacitor switching

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