Electrical Equipment for Industrial Automation

Frigate ensures high signal integrity in high-EMI environments through optimized shielding architectures, achieving over 90 dB common-mode rejection for stable performance in industrial automation and communication systems.

industrial automation,industrial automation equipment

Engineered materials and layered construction support over 10 million cycles under torsional and bending loads in moving equipment. 

High-temperature insulations and precise derating data enable efficient current handling in confined, high-density control panel layouts. 

Specialized outer jackets resist oils, coolants, and corrosive agents, maintaining insulation performance in demanding industrial 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.

Current Transformers (CTs) - IMG (3)
Lighting Transformers - IMG (2)
Three-Phase Transformers - IMG (1)
Control Transformers - IMG (4)
Step-Up Transformers - IMG (2)
Planar Transformers - IMG
C-Core Transformers - IMG (3)
Auto Transformers - IMG (3)
Buck-Boost Transformers - IMG (3)
single-phase transformers - IMG (2)
NEMA Power Cord - IMG (3)
High Amp Rated Power Cord - IMG (2)
Type I Power Cords (3)
Japanese Plug Power Cord - IMG (3)
Type J Power Cords
DC Barrel Power Cord - IMG
DC to USB Power Cord - IMG
Type O Power Cords (3)
Israel Plug Power Cord - IMG (3)
Swiss Plug Power Cord - IMG
RL Load Reactor (3)
Marine Water Cooled Reactor
Boost Converter Choke
Output Choke (3)
3-Phase Sine Wave Filter Inductor (2)
Battery Converter Choke - Img (2)
Water Cooled Inductor (2)
1-Phase Sine Wave Filter Inductor (2)
Step-up Chopper Inductor - IMG (2)
3-Phase Output Choke - IMG (2)

In Their Words

Endorsed by industry decision makers who value our streamlined procurement and efficient execution.

Words from Clients

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

Precision Applications of Electric Products in Industrial Systems

Electric components in industrial automation must support low-latency signal transmission, high mechanical endurance, and stable operation under thermal and EMI stress. These components are essential for reliable motion control, sensor integration, and real-time system coordination in automated environments. 

Robotic Motion Control Systems

Supports high-cycle robotic joints with dynamic-rated wiring, ensuring consistent power and signal delivery under repetitive flex and torsional loads. 

Automated Conveyor and Sorting Lines

Enables synchronized motor control and sensor communication over long distances with minimal signal degradation and reliable EMI shielding.

industrial automation,industrial automation equipment

Infrastructure Readiness

Industry 4.0 and Smart Manufacturing require infrastructure that supports real-time diagnostics and predictive maintenance capabilities. 

Condition Monitoring Integration

Legacy cable systems lack embedded sensing for early fault detection, leading to reactive maintenance and unexpected downtime.

Predictive Diagnostics Enablement

Optional self-sensing elements such as resistive, capacitive, or fiber-optic strain indicators provide real-time data to edge devices or PLCs, enabling proactive cable health management.

Precision Electrical Systems for Every Industry

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

Advanced Quality Testing for Industrial Automation Transformers

Industrial automation requires transformers with uncompromising accuracy, stability, and endurance under variable load dynamics.

Dielectric Endurance Validation
Transformers undergo long-duration dielectric withstand testing under surge and impulse voltages, ensuring insulation reliability in automation-heavy environments with frequent switching transients.
Load Cycle Fatigue Analysis
Dynamic cyclic loading tests simulate rapid machine startup-shutdown cycles, validating winding thermal balance and core material stability under automation duty conditions.
EMI/EMC Compliance Testing
Rigorous electromagnetic interference and compatibility tests guarantee transformers operate without introducing noise that disrupts sensitive control electronics in automated lines.

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 signal integrity in environments with high electromagnetic interference?

Frigate uses advanced shielding techniques combining foil and braid layers to achieve over 90 dB shielding effectiveness. This minimizes electromagnetic interference that can corrupt data signals. Additionally, low-inductance shield terminations maintain grounding continuity, reducing noise coupling. These features ensure stable communication for industrial protocols like CANopen and EtherCAT. 

What testing protocols does Frigate apply to guarantee cable durability under continuous motion?

Frigate subjects its cables to dynamic flex testing exceeding 10 million cycles under rolling and torsional stress, following DIN EN 50396 standards. This simulates real-world conditions in robotic arms and drag chains. The use of fine-stranded copper and flexible polyurethane jackets reduces conductor fatigue. This process helps prevent premature cable failure in high-motion applications. 

How does Frigate assist engineers in managing thermal derating for cables in dense control panels?

Frigate provides detailed thermal conductivity and current-carrying capacity data based on insulation materials rated up to 125°C. These parameters enable precise derating calculations according to IEC 60287 and NEC guidelines. Accurate data helps prevent overheating without oversizing conductors. This ensures reliable operation while optimizing panel space and material costs. 

In what way do Frigate’s oil-resistant cables maintain performance in harsh industrial environments?

The cable jackets use TPU and TPE-O compounds designed to resist hydraulic oils, coolants, and chemicals per IEC 60811-404 standards. These materials maintain flexibility and dielectric strength even after prolonged exposure. The outer sheaths are also compatible with IP67 sealing systems, preventing ingress of contaminants. This ensures long service life and consistent electrical performance in aggressive environments. 

How do Frigate’s cables integrate with Industry 4.0 systems for condition monitoring?

Frigate offers cables with embedded sensing elements such as fiber-optic or resistive strain sensors. These elements provide real-time data on insulation resistance and mechanical stress. Data can be routed directly to PLCs or edge devices for continuous condition monitoring. This integration enables predictive maintenance and reduces unexpected machine downtime. 

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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

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GENERAL ENQUIRIES

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