V3 Single

low voltage anti harmonic reactor

Complete the form below to receive a response within 24 hours.

Description

The low voltage anti-harmonic reactor is engineered to enhance power quality and efficiency in electrical systems. With a robust design that adheres to UL Class H insulation standards, this reactor is equipped with over-temperature protection, ensuring safety and reliability during operation. Its high-grade H enamelled wire or metal foil winding guarantees excellent heat resistance and minimal losses, while its strong anti-saturation ability and efficient heat dissipation further optimize performance.

Constructed with high-quality cold-rolled low-loss silicon steel, this reactor features a low magnetic flux design, providing superb linearity and strong resistance to saturation. The multi air gap sectional design minimizes additional losses and three-phase deviation, making it an ideal choice for various applications. The reactor is impregnated with Class H insulating paint, which enhances insulation and significantly reduces noise levels.

Overall, this low voltage anti-harmonic reactor is an essential component for improving the reliability and efficiency of electrical systems, ensuring both protection and performance.

Specifications

Feature Details
Insulation System UL Class H
Over Temperature Protection Normally closed at 160 ℃
Winding Material High grade H enamelled wire or metal foil
Core Material High-quality cold-rolled low loss silicon steel
Design Multi air gap sectional design
Noise Level Low noise
Heat Dissipation Effective, with class H insulating paint

Additional Information

  • Temperature regulation ensures the reactor will cut off power at 160 ℃ and automatically restore once cooled.
  • Designed with no interlayer paper to enhance heat dissipation.

Product Inquiry Form

Share your requirements and our team will connect you with the supplier. Submit your request and we'll follow up within one business day.

Follow-up preferences
Thanks, your message was submitted successfully.