Electrical Equipment for Defense

Frigate designs components to endure extreme mechanical stress, shock, and vibration, meeting MIL-STD-810H standards for reliable performance in harsh defense environments. 

Defense

Hybrid shielding, precise impedance control, and IPC Class 3 termination reduce emissions and enhance signal fidelity in dense electromagnetic environments. 

Aluminum-clad conductors and fluoropolymer insulation minimize weight while preserving thermal capacity and voltage performance in airborne and mobile platforms. 

Dual-wall insulation with proven dielectric strength ensures consistent performance through rapid altitude changes and extreme thermal cycling conditions. 

Future-Ready Electrical Solutions

Partner with Frigate to implement advanced electrical technologies enabling high-voltage endurance system reliability and future-ready industrial power architectures. 

Electrical Components We Manufacture

From Cables & Wires to Transformers, Our Electrical Products power your projects across industries. Browse below to find what suits your needs.

Multi-Winding Transformers - img (2)
Current Transformers (CTs) - IMG (3)
Voltage Stabilizer Transformers - IMG
Audio Line Matching & Output Transformers - IMG (3)
Flat Series _ UI Transformers - IMG (2)
SMPS High-Frequency Transformers - IMG (3)
Step-Up Transformers - IMG (2)
Ferrite Core Transformers - IMG (3)
Amorphous Core Transformers - IMG
Buck-Boost Transformers - IMG (3)
PDU Power Cord - IMG (2)
Danish Plug Power Cord - IMG (2)
Type G Power Cords (4)
USB-A to Lightning_Micro-USB Cord - IMG
Type E Power Cords (2)
UK Plug Power Cord - IMG
DC to USB Power Cord - IMG
Type I Power Cords (3)
Type O Power Cords (3)
Type D Power Cords
1-Phase Sine Wave Filter Inductor (2)
RL Load Reactor (3)
Battery Converter Choke - Img (2)
Smoothing Choke
Input Choke
Balancing Reactor (2)
Boost Converter Choke
Filter Choke - img
Boost Converter Filter Inductor (3)
3-Phase Output Choke - IMG (2)

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Words from Clients

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

Electrical Deployment in Defense Systems

Electrical systems in defense platforms are designed to maintain signal integrity, thermal stability, and mechanical resilience under dynamic and extreme conditions. These components are embedded in mission-critical subsystems where precise electrical performance is required despite shock, vibration, and fluctuating environmental loads. 

Electronic Warfare and Radar Systems

Supports low-loss signal transmission, EMI shielding, and impedance stability in phased-array radar, ECM pods, and RF threat detection platforms. 

Aerospace Avionics and Flight Control

Enables redundant signal routing, thermal endurance, and altitude-stable insulation for fly-by-wire systems, sensor interfaces, and cockpit instrumentation wiring. 

Defense

Redundancy Built-In

Frigate enables continuous system functionality through redundant electrical architectures designed for uninterrupted performance in critical defense applications. 

Isolated Signal Integrity

Dedicated conductor paths with individual shielding maintain clear, interference-free transmission, ensuring stable operation even under partial system faults.

Sealed for Reliability

Precision overmolding and environmental sealing protect electrical interfaces from fluid ingress, mechanical disruption, and field-induced degradation.

Precision Electrical Systems for Every Industry

Built for demanding sectors, our electric products offer accurate voltage regulation, thermal stability, and EMI shielding—customized for Defense Equipment applications. 

Reliable Power Infrastructure for Defense Systems

Defense applications require transformers that perform flawlessly under extreme environments. 

Shock and Vibration Qualification
Transformers undergo military-grade mechanical stress tests to validate operational stability under battlefield shock, vibration, and dynamic load conditions.
High-Altitude Performance Verification
Units are tested for dielectric strength and cooling efficiency at simulated altitude levels to guarantee sustained functionality in aerospace operations.
Electromagnetic Compatibility Validation
Comprehensive EMI and EMC compliance testing ensures secure operation without interference to sensitive defense communication or radar systems.

Electrical Market Insights

Explore how advanced insulation and dielectric technologies are redefining reliability in modern industrial power systems. 

Having Doubts? Our FAQ

Check all our Frequently Asked Questions

How does Frigate ensure electrical assemblies remain functional during extreme mechanical shock and vibration in defense vehicles?

Frigate uses high-strand-count conductors and stress-relieved insulation systems to absorb mechanical deformation without conductor fatigue. All assemblies are tested under simulated dynamic loads replicating tracked vehicle and airborne vibration profiles. Overmolded strain relief and anchor points prevent internal conductor displacement. This approach maintains electrical continuity under high-G acceleration and repeated impact cycles. 

What does Frigate do to maintain electromagnetic compatibility in congested signal environments like electronic warfare platforms?

Frigate employs multi-layer shielding architectures using copper braids and conductive polymer barriers with high coverage percentages. Signal geometry is controlled to maintain impedance and minimize reflection at high frequencies. Shield termination follows IPC/WHMA-A-620 Class 3 for maximum ground path integrity. These measures collectively suppress EMI susceptibility and radiated emissions in multi-signal environments. 

How does Frigate address insulation reliability for components exposed to high-altitude operations?

Frigate uses foamed polyimide and fluoropolymer combinations to manage insulation performance during pressure drops and thermal shifts. These materials prevent partial discharge and surface tracking in low-pressure environments. Each design is validated using altitude simulation and thermal cycling. This ensures stability of dielectric properties from sea level to over 50,000 feet. 

What type of fault isolation techniques does Frigate use in multi-core assemblies for flight-critical systems?

Frigate separates redundant signal paths using physical barriers and independent shielding to avoid electrical cross-talk and short propagation. Each pathway is isolated from moisture and EMI by design, with optional embedded diagnostics. Overmolded interfaces ensure mechanical stability and ingress protection at branch points. This enables continued function of unaffected paths in case of localized failures. 

How does Frigate build cables suitable for chemically aggressive defense environments like NBC zones?

Frigate selects materials such as cross-linked ETFE and FEP that are chemically inert and resistant to decontamination agents. Jackets are tested against fluids like DS2, JP-8, and hydraulic oils. Bonded layers prevent fluid migration into conductor interfaces. This preserves insulation resistance and mechanical integrity after prolonged chemical exposure. 

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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

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