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  • Intelligent Compensation Device with Filtering Function

    1.system voltage:Below AC450.
    2.Automatic reactive power compensation to improve power factor.
    3.Enhanced equipment efficiency with reduced investment costs.
    4.Minimized distribution line losses and transformer losses.
    5.Optimized voltage quality and improved power supply reliability.
    6.Compatibility: Integrates with global cabinet systems (MNS/GCK/GGD).

  • Hybrid Dynamic Compensation Device

    1.system voltage:Below AC450.
    2.Automatic reactive power compensation to improve power factor.
    3.Enhanced equipment efficiency with reduced investment costs.
    4.Minimized distribution line losses and transformer losses.
    5.Optimized voltage quality and improved power supply reliability.
    6.Compatibility: Integrates with global cabinet systems (MNS/GCK/GGD).

  • LV Automatic Reactive Compensation Panel

    1.system voltage:Below AC450.
    2.Automatic reactive power compensation to improve power factor.
    3.Enhanced equipment efficiency with reduced investment costs.
    4.Minimized distribution line losses and transformer losses.
    5.Optimized voltage quality and improved power supply reliability.
    6.Compatibility: Integrates with global cabinet systems (MNS/GCK/GGD).

  • Intelligent Reactive Power Compensation Assembly

    1.system voltage:Below AC450.
    2.Automatic reactive power compensation to improve power factor.
    3.Enhanced equipment efficiency with reduced investment costs.
    4.Minimized distribution line losses and transformer losses.
    5.Optimized voltage quality and improved power supply reliability.
    6.Compatibility: Integrates with global cabinet systems (MNS/GCK/GGD).

  • mv iron core detuned reactors

    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.

  • medium voltage filter capacitor

    1.rated voltage:10kv.
    2.Frequency: 50/60Hz.
    3.Operating: indoor or outdoor.
    4.Ambient temperature: -40°C ~ +45°C_x000b_( Freezing field can meet - 45C).
    5.Wind load: not exceed 35m/s.
    6.Altitude: not exceed 2000m.
    7.Icing thickness: not exceed 10mm.
    8.Seismic strength: 8.
    9.Pollution level: III or IV.

  • filter capacitors

    1.rated voltage:10kv.
    2.Frequency: 50/60Hz.
    3.Operating: indoor or outdoor.
    4.Ambient temperature: -40°C ~ +45°C_x000b_( Freezing field can meet - 45C).
    5.Wind load: not exceed 35m/s.
    6.Altitude: not exceed 2000m.
    7.Icing thickness: not exceed 10mm.
    8.Seismic strength: 8.
    9.Pollution level: III or IV.

  • lv iron core reactor

    1.Voltage Range:upto 1KV.
    2.altitude:1000m or less.
    3. the highest monthly average relative humidity: 95% or less.
    4. the highest temperature: +45 °C.
    5. the lowest ambient temperature: -10 °C.
    6. the maximum daily temperature difference: 25 °C.
    7. seismic intensity: 8 degrees.
    8. installation requirements: indoor.

  • iron arc reactor core

    1.The coil is made of epoxy resin vacuum casting, after high temperature curing.
    2.The coil insulation performance is good, high mechanical strength, the ability after glass fiber reinforcement is impacted by the large current shock and hot and cold cracks.
    3.Moistureproof performance is good.

  • iron core reactors

    1.The coil is made of epoxy resin vacuum casting, after high temperature curing.
    2.The coil insulation performance is good, high mechanical strength, the ability after glass fiber reinforcement is impacted by the large current shock and hot and cold cracks.
    3.Moistureproof performance is good.

  • iron reactor core

    1.The coil is made of epoxy resin vacuum casting, after high temperature curing.
    2.The coil insulation performance is good, high mechanical strength, the ability after glass fiber reinforcement is impacted by the large current shock and hot and cold cracks.
    3.Moistureproof performance is good.

  • Filter Reactor for 6% Reactor Ratio

    1.The coil is made of epoxy resin vacuum casting, after high temperature curing.
    2.The coil insulation performance is good, high mechanical strength, the ability after glass fiber reinforcement is impacted by the large current shock and hot and cold cracks.
    3.Moistureproof performance is good.

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