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150 hp (110 kW) AC Line Reactor, 3 Phase Output

150 hp vfd line reactor, 3 phase outout, with super high performance, rated current 250 amps, copper or aluminum for selection, attractive appearance, low noise, high protection class and durability. Low price and directly selling by manufacturer.
SKU: CCHN-OLR-110
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Delivery date: 6-25 days
150 hp (110 kW) 3-phase AC output line reactor is characterized by rared current 250A, work freqency 50/60Hz, voltage and materials can be selected, cheap and easy to operate.

3-Phase Output Line Reactor Specifications

Basic Model CCHN-ACR-0090-0M16-0.4SC
Recommended VFD Model GK3000-4T1100G (50 hp three phase VFD)
Phase 3 Phase
Power 150 hp (110 kW)
Weight 18 kg
Technical Parameters Work Voltage 380V (optional: 220V/ 240V/ 400V/ 415V/ 440V/ 460V/ 480V)
Work Frequency 50 Hz/60 Hz
Rated Current 90 A
Max Current 1.5 Times the Rated Current, Continued 60s
Inductance Value 0.028 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℃
Altitude ≤2000m

3-Phase Output Line Reactor Mounting Dimension

15hp (11kW) 3 phase line reactor

Dimension(±5mm)
L D W W1 H A×B
250 182 175 98 230 11×18

3-Phase Output Line Reactor Circuit Diagram

3 phase output line reactor circuit diagram

Tips: How to solve the surface discharging of line reactor?

Dry air parallel line reactor doesn’t have any form of surface discharge in dry state. When it is raining, the parts with low temperature rise have conductive water film and high surface leakage current. Near end backflow lead row with concentrated surface electric leakage and the spots on the surface of waist have dirty and wet charge and electric leakage traces. Hydrophobic coating can restrain leakage current and prevent any form of surface discharge effectively.

The end adopts the improvement measures of pre-burried annular current sharing electrode structure to solve the concentrated current leakage on lower end surface. Electric arcs can be prevented even without hydrophobic coating or when hydrophobic coating fails. As the currently best structure improvement measure, rainhat and rain protection layer can restrain surface current leakage to some extent.