≤600KVA Range
LQHCR 600KVA-3KV Compensation Reactor: Precision Power Control
Robust Iron-Core Construction
Featuring a stationary iron core within an iron shell structure, this reactor provides exceptional magnetic stability for industrial 3kV networks. The optimized design ensures minimal losses and reliable performance in demanding environments.
Electrical Specifications
Parameter | Specification |
---|---|
Rated Power | 600KVA (6x100kVar steps) |
Rated Voltage | 3kV |
Frequency | 50Hz |
Current Ratings | 16.6A, 33.3A, 50A, 66.6A, 83.3A, 100A |
Phase Configuration | Single Phase |
6-Step Compensation Technology
Precise Power Adjustment
Six discrete capacity settings through bushing lead-out terminals:
100kVar, 200kVar, 300kVar, 400kVar, 500kVar, 600kVar
Visual position indicators for each setting
Manual adjustment during maintenance windows
Integrated Monitoring
Built-in compensation current transformer (400:5 ratio) enables:
Real-time power factor measurement
Precise reactive power calculation
Remote monitoring via SCADA systems
Performance Excellence
Linearity: <+1% deviation across all load ranges
Acoustic Performance: <70dB operation (measured at 4m distance)
Thermal Management:
Winding temperature rise: ≤65K
Oil surface temperature rise: ≤55K
Advanced Protection Capabilities
Over-Current Endurance
Sustains 120% rated current for 10 minutes without thermal damage or winding distortion
Over-Voltage Tolerance
Withstands 110% rated voltage for 10 minutes without insulation failure
Continuous Operation
Maintains 100% rated voltage for 30 minutes with temperature rise within strict safety limits
Industrial Applications
Manufacturing Plants
Stabilizes voltage for 3kV industrial motors and production equipment
Power Distribution
Manages reactive power in medium-voltage substations
Renewable Energy
Compensates harmonic distortion in commercial solar installations
"6-step reactors improve power factor by 0.95+ while reducing energy losses by 15-18% in industrial networks." -IEEE Transactions on Power Systems
Installation Guidelines
Mounting:
Install on vibration-dampened concrete foundation
Maintain 600mm clearance for ventilation
Electrical Connections:
Use minimum 120mm² copper conductors for 100A
Apply contact enhancer on bushing interfaces
CT Integration:
Connect secondary to protection relays (5A rating)
Verify polarity before energization
Maintenance Protocol
Monthly:
Oil level inspection
Thermal imaging of bushings
Quarterly:
Insulation resistance test (3kV DC, min 500MΩ)
CT ratio verification
Annual:
Oil dielectric strength test (BDV >40kV)
Core clamping bolt torque check
Contact resistance measurement on all tap positions
Compliance Standards
IEC 60076-6: Power reactor requirements
IEEE C57.12.01: Safety standards
EN 50588: Medium-voltage equipment
ANSI C57.16: Reactor specifications