magnewin

Harmonic Filter Capacitors
PRODUCT OVERVIEW

Harmonic Filter
Capacitors

High-performance harmonic filter capacitors designed for effective reactive power management and harmonic mitigation in low voltage power systems. Engineered to improve power quality, reduce losses, and enhance system efficiency in harmonic-rich industrial environments.

● Manufactured in India ● Approved Vendor for Indian Railway ● Global Export Ready

Application Voltage

Low Voltage (LV)

System Type

Fixed & Automatic PFC

Switching

Contactor / Thyristor APFC

Function

Harmonic Filtering & Compensation

Design

Compact & Flexi-Banking Ready

Key Performance Features

High-Quality Dielectric: Bi-axially oriented double hazy polypropylene film for superior oil impregnation
High Inrush Current Capacity: Withstands high peak inrush currents in harmonic-rich networks
Low Loss and Low Noise: Efficient design with minimal operating losses
Compact Construction: Easy installation and suitable for flexible capacitor bank configurations
Long Service Life: Designed for an expected operational life of at least 20 years
MANUFACTURING EXCELLENCE

Engineered for Harmonic-Rich Environments

Advanced Dielectric System

Manufactured using high-grade polypropylene film and aluminium electrodes to ensure stable electrical performance under distorted waveforms.

Robust Construction

Capacitors are built to withstand thermal and electrical stresses caused by harmonic currents, ensuring consistent operation in industrial environments.

Quality Testing

All harmonic filter capacitors are tested in-house in accordance with the latest IS 13585 standards to ensure reliability and performance in demanding conditions.

Standards Compliance

Designed and validated to meet applicable Indian standards for harmonic filter applications, ensuring safe and dependable operation in power systems.

APPLICATIONS

Power Quality
Improvement Solutions

Harmonic filter capacitors are essential for managing reactive power and reducing harmonic distortion in electrical networks, ensuring system efficiency, stability, and compliance with power quality standards.

“Effective harmonic mitigation and precise reactive power control are key to improving power quality, extending equipment life, and ensuring reliable electrical networks.”

Power Factor Correction

Improves power factor in low voltage electrical networks, reducing losses and optimizing energy consumption.

Automatic PFC Panels

Used in automatic power factor correction panels with contactor or thyristor switching for dynamic reactive power control.

Fixed PFC Systems

Suitable for fixed power factor correction systems in installations with stable and predictable load conditions.

Industrial Harmonic Filtering

Designed for harmonic filtering in industrial plants to protect equipment and maintain voltage quality.

Inductive Load Networks

Ideal for networks dominated by inductive loads such as motors, transformers, and variable frequency drives.

Technical Specifications

Detailed electrical, mechanical, and operational parameters

Electrical Parameters
  • Designed for low voltage reactive power compensation
  • Suitable for harmonic filtering applications
  • Compatible with detuned reactor-based systems
Mechanical and Environmental
  • Compact enclosure suitable for panel mounting
  • Designed for continuous industrial operation
Standards and Compliance
  • Tested as per IS 13585
Thermal Performance
  • Designed to operate under harmonic-induced thermal stress
  • Proper ventilation recommended for optimal performance
Protection and Safety
  • Internal fusing for short-circuit protection
  • Non-hazardous, non-PCB impregnation oil
  • External discharge resistors for safe handling
  • Thermal switch protection to prevent overheating
Installation and Operational Guidelines
  • Maintain proper earthing for safety
  • Avoid operation beyond specified voltage and current limits
  • Use fast-acting capacitor contactors for switching
  • Ensure discharge to 75 V within 3 minutes before re-energization
  • Use detuned reactors in harmonic-rich environments to avoid resonance