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LQHCR 600KVA-0.6KV Iron Core Compensation Reactor: Technical Specifications & Applications

Detailed technical specifications of the LQHCR 600KVA-0.6KV iron core compensation reactor. Explore design, safety features, and industrial applications.


  • US$ 11,413.00
  • Lead time: 45 days

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Product Details

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LQHCR 600KVA-0.6KV Iron Core Compensation Reactor: Technical Specifications & Applications

Product Overview

The LQHCR 600KVA-0.6KV is a stationary iron core compensation reactor designed for power factor correction and harmonic filtering in low-voltage electrical systems. Engineered for industrial environments, it ensures stable reactive power compensation while minimizing energy losses.

Technical Specifications

ParameterSpecification
ModelLQHCR 600KVA-0.6KV
StructureIron shell, stationary iron core
Rated Capacitance600kVar
Rated Frequency50Hz
Phase ConfigurationSingle phase
Rated Voltage0.6kV
Rated Current Options166.6A, 333.3A, 500A, 666.6A, 833.3A, 1000A
Linearity Degree< +1%
Sound Level< 70dB (measured at 4 meters distance)

Safety & Protection Features

Over-Current Capacity

Withstands 120% of rated current continuously for 10 minutes without thermal damage or winding distortion.

Over-Voltage Capacity

Handles 110% of rated voltage for 10 minutes without insulation damage.

Performance Advantages

  • High Linearity: <+1% deviation ensures precise reactive power control

  • Low Noise Operation: <70dB sound level for reduced environmental impact

  • Robust Construction: Iron shell design provides mechanical stability and EMI shielding

  • Thermal Resilience: Optimized cooling prevents hotspot formation

Industrial Applications

Power Factor Correction

Compensates reactive power in 0.6kV distribution networks, improving energy efficiency.

Harmonic Filtering

Integrated into capacitor banks to suppress 5th, 7th, and 11th harmonics in industrial facilities.

Renewable Energy Systems

Stabilizes grid connections for solar farms and wind turbine installations.

Installation & Maintenance

  1. Mount vertically with minimum 400mm clearance for airflow

  2. Verify grounding resistance <0.1Ω before energization

  3. Perform quarterly insulation resistance tests (min. 100MΩ at 2.5kV DC)

  4. Monitor temperature rise during operation (max. 95°C at full load)

Compliance Standards

Designed in accordance with:

  • IEC 60289: Reactor specifications

  • IEEE C57.12.01: Safety requirements

  • EN 60076-6: Reactor testing protocols

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