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    30 hp (22 kW) AC Line Reactor, 3 Phase Output

    3 phase vfd line reactor, 30 hp, 22 kW power, three phase output, rated current of 60 amps, material copper or aluminum is optional. AC output reactor coil has good insulation performance.
    SKU: ATO-OLR-022
    30-day Returns
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    Delivery date: 6-12 days

    60 Amps AC output line reactor has stable performance, good product quality, working frequency 50/60Hz. Inductance Value is 0.12mH, which can effectively protect the power switching device inside the inverter.

    3-Phase Line Output Line Reactor Specifications

    Basic Model ATO-OCR-0060-0M12-0.4SC
    Recommended VFD Mode GK3000-4T0220G (30 hp three phase VFD)
    Phase 3 Phase
    Power 30 hp (22 kW)
    Weight 11.5 kg
    Technical Parameters Work Valtage 380V (optional: 220V/ 240V/ 400V/ 415V/ 440V/ 460V/ 480V)
    Work Frequency 50Hz/60 Hz
    Rated Current 60 A
    Max Current 1.5 Times the Rated Current, Continued 60s
    Inductance Value 0.12 mH
    Material Aluminium/Copper (Optional)
    Voltage Drop 2%
    Noise ≤65dB
    Insulation Class Class F, H
    Protection Class IP00-IP22
    Insulation Resistor ≥100MΩ
    Working Environment Operation Environment -10℃~+45℃
    Temperature Rise ≤85K
    Humidity ≤90%RH, without condensation
    Running Ambient Temperature -25℃~+45℃
    Altittude ≤2000m

    30 hp Input Line Reactor Size & circuit diagram

    picture circuit diagram

    Dimension (±5mm)
    L D W W1 H A×B
    195mm 120mm 150mm 72mm 165mm 8.5×20

    30 hp 3-Phase Output Line Reactor Mounting Dimension

    2hp 3 phase output reactor

    L D W W1 H A×B
    195 120 135 72 165 8.5×20

    3-Phase Output Line Reactor Circuit Diagram

    3 phase output line reactor circuit diagram
    Tips: Troubleshooting of output three phase line

    The heating of the output reactor is mainly a problem of the core material. Because the frequency of the high-order harmonic current is very high in the output current, and the hysteresis loop of the ordinary silicon steel sheet cannot adapt to the high-frequency magnetic field, the iron loss is large, which causes the iron core to heat up. solution:
    1. Wind the three output wires on the high-frequency core in the same direction to replace the output reactor. If the output line is thick and difficult to wind on the core, three output lines can be passed through multiple cores at the same time.
    2. Connect the above-mentioned self-made high frequency inductance in series with the output reactor, which can alleviate the heat of the three-phase output reactor.

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