Reactors

Frigate Reactors are engineered for harmonic mitigation, current limiting, and reactive power control in high-performance electrical systems. Designed with precise inductance and thermal stability, they ensure optimal power quality and protection across dynamic load conditions. 

reactors

Line and Detuned Reactors reduce dominant harmonics without affecting system impedance, protecting cables, relays, and transformers. 

Frigate Reactors limit inrush and switching surges, protecting VFDs, UPS systems, and converters from transient-induced failures. 

Detuned Reactors shift resonance frequency, ensuring capacitor safety, harmonic isolation, and compliance with IEEE 519 standards. 

Our Clients

Trusted by Engineers and Purchasing Leaders 

Explore Our Reactors

Browse Frigate’s diverse portfolio of specialized Reactors designed to suit multiple industrial applications. 

1-Phase Sine Wave Filter Inductor (2)
Water Cooled Inductor (2)
3-Phase Sine Wave Filter Inductor (2)
Auxiliary Inductor (2)
Air Core Inductor
Saturable Reactor
Boost Converter Filter Inductor (3)
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Improved Load Balance in Three-Phase Networks

Balancing Reactors minimize zero-sequence currents and neutral shift in asymmetrical or regenerative load conditions.

Words from Clients

See how global OEMs and sourcing heads describe their experience with our scalable execution.

We export to 10+ countries

Frigate’s Global Presence

Frigate takes pride in facilitating “Make in India for the globe“.  As our global network of Frigaters provides virtually limitless capacity, and through our IoT enabled platform your parts go directly into production. By digitally and technologically enabling “the silent pillars of the economy” MSME and SME manufacturing industries, we are able to tap the huge potential for manufacturing to bring the best results for our clients.

reactors

100,000+

Parts Manufactured

250+

Frigaters

2000+

Machines

450+

Materials

25+

Manufacturing Process

Our Manufacturing Metrics

Frigate brings stability, control, and predictable performance to your sourcing operations through a structured multi-vendor system. 

reactors
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2.8X

Sourcing Cycle Speed

Frigate’s pre-qualified network shortens decision time between RFQ and PO placement.  

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94%

On-Time Delivery Rate

Structured planning windows and logistics-linked schedules improve project-level delivery reliability. 

reactors

4X

Multi-Part Consolidation

We enable part family batching across suppliers to reduce fragmentation.  

reactors

22% 

Quality Rejection Rate

Multi-level quality checks and fixed inspection plans lower non-conformities. 

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30%

Procurement Costs

Optimized supplier negotiations and bulk order strategies reduce your overall sourcing expenses. 

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20%

Manual Processing Time

Automation of sourcing and supplier management significantly reduces time spent on manual tasks. 

Having Doubts? Our FAQ

Check all our Frequently Asked Questions

How does Frigate ensure reactor thermal stability in high ambient temperature environments?

Frigate Reactors are designed using Class F or H insulation systems, allowing continuous operation at elevated temperatures without thermal degradation. The coils are vacuum-impregnated to enhance heat dissipation and prevent hot spots. Core materials are selected for low hysteresis and eddy current losses, minimizing internal heating. Each unit undergoes thermal simulation and type testing under worst-case load conditions.

What short-circuit withstand capability do Frigate Reactors offer for high-fault level grids?

Frigate designs reactors to handle peak short-circuit currents based on IEC 60076-6 standards. The winding structure is reinforced with high mechanical strength supports and resin-locked conductors. This prevents deformation during fault events and maintains inductive integrity. Customized short-time withstand ratings are provided based on fault duration and system impedance. 

How does Frigate manage magnetic flux saturation in harmonic-rich networks?

Frigate uses oversized magnetic cores with higher cross-sectional area to delay core saturation under nonlinear loads. The inductance remains stable even when exposed to elevated harmonic content from VFDs or soft starters. This maintains filtering performance and prevents thermal runaway. Magnetic simulations are done during design to predict flux density under distorted waveforms. 

What methods does Frigate use to ensure tight inductance tolerance in production?

Frigate controls inductance using precision winding machines and controlled core air gaps. Each reactor is tested for actual inductance at rated current and frequency using calibrated LCR meters. The variation is kept within ±5% or as per project specification. Consistent inductance ensures accurate harmonic filtering and system stability. 

 

How are Frigate Reactors adapted for marine or offshore installations?

Frigate offers marine-grade reactors with epoxy-coated cores and anti-corrosive hardware to withstand salt-laden environments. All components comply with DNV or ABS marine specifications where applicable. Enclosures are IP-rated, and thermal derating is considered for sealed environments. Vibration testing is conducted as per IEC 60068 to ensure mechanical durability. 

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LOCATIONS

Registered Office

10-A, First Floor, V.V Complex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, India.

Operations Office

9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ

Other Locations

GENERAL ENQUIRIES

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