High-Performance Electric Components for Semiconductor Equipment

Frigate delivers electric components for semiconductor equipment that perform reliably in ultra-clean, high-vacuum, and high-temperature conditions. 

Semiconductor Equipment

Frigate uses PTFE, PFA, and polyimide cables with vacuum-bake treatment to ensure ultra-low outgassing in UHV conditions. 

Fluoropolymer jackets and laser marking reduce particle shedding, ensuring cable assemblies meet ISO Class 1 cleanliness requirements. 

Multi-layered shielding and low-impedance grounding deliver high EMI immunity for analog, digital, and RF environments. 

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.

C-Core Transformers - IMG (3)
Voltage Stabilizer Transformers - IMG
Audio Line Matching & Output Transformers - IMG (3)
Potential Transformers (PTs) - IMG (2)
Pulse Transformers - IMG
Toroidal Transformers - IMG
Ferrite Core Transformers - IMG (3)
Medical-Grade Transformers - IMG
Buck-Boost Transformers - IMG (3)
Induction Heating Transformers - IMG (2)
Locking Power Cord - IMG
Type M Power Cords
Australian Plug Power Cord - IMG (3)
CCS DC Charging Cord - IMG
Type C Europlug Power Cords (3)
Type L Power Cords (4)
NEMA Power Cord - IMG (3)
Israel Plug Power Cord - IMG (3)
Colored Server Power Cord - img (4)
Type O Power Cords (3)
Input Choke
1-Phase Sine Wave Filter Inductor (2)
Water Cooled Inductor (2)
Harmonic Filter Choke
Filter Choke - img
DC Reactor (3)
power factor correction choke - IMG
Battery Converter Choke - Img (2)
Output Choke (3)
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.

Electric Products Designed for Fab-Grade Performance

Electric components in semiconductor equipment must comply with stringent standards for outgassing, dielectric stability, and particle emission under vacuum and thermal stress. Critical applications demand cable assemblies with proven compatibility for UHV integration, high-temperature plasma exposure, and precise signal transmission in noise-sensitive environments. 

Wafer Handling and Motion Control Systems

Flex-rated cables enable precise, repeatable motion in robotic arms and linear actuators operating under high-vacuum, cleanroom conditions. 

Etch and Deposition Chamber Interfaces

High-temperature, plasma-resistant cables maintain electrical integrity near process chambers exposed to corrosive gases and thermal cycling. 

 

Semiconductor Equipment

High-Temperature & Plasma Stability

Frigate designs electric components engineered for long-term stability near etch and deposition chambers in semiconductor equipment. 

Thermal-Resistant Cable Materials

Insulations using polyimide, ceramic-filled silicone, and PTFE composites maintain electrical integrity at >200°C and withstand 260°C surges without dielectric failure.

Plasma-Compatible Surface Chemistry

Jacket materials are chemically tested against fluorine and chlorine plasma to prevent erosion, cracking, and insulation degradation during continuous exposure.

Precision Electrical Systems for Every Industry

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

Stable Power Transformers for Semiconductor Production Environments

Semiconductor production demands transformers engineered for ultra-stable voltage control and uncompromising quality standards. 

Thermal Cycling Validation
Transformers undergo accelerated thermal cycling tests to simulate extreme semiconductor fab conditions, ensuring stability under continuous heating and cooling cycles.
Low Harmonic
Distortion
Specialized testing confirms low total harmonic distortion, protecting sensitive lithography and etching tools from electrical noise that disrupts manufacturing accuracy.
Micro-Contamination Control
All transformer assemblies are inspected for micro-contamination risks, preventing particle release that could compromise cleanroom environments and precision wafer processing.

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 address thermal management in cables used near high-temperature semiconductor process chambers?

Frigate selects insulation materials like polyimide and ceramic-filled silicone that maintain dielectric properties above 200°C. These materials resist thermal degradation and prevent insulation breakdown during temperature spikes up to 260°C. Cables undergo accelerated aging tests to simulate long-term exposure. This ensures the cable performance remains stable in harsh chamber environments. Proper thermal management extends product life and reduces downtime risks. 

What quality control measures does Frigate implement to ensure zero particulate generation in semiconductor cleanroom cable assemblies?

Frigate manufactures cables in ISO Class 6 or better cleanroom environments to minimize contamination. Laser marking replaces ink labels to eliminate adhesive particulates. Final assemblies are cleaned, nitrogen-purged, and double-bagged under Class 1 laminar flow conditions. Particle emission testing confirms compliance with stringent cleanroom standards. These controls safeguard sensitive photolithography and inspection equipment from contamination. 

How does Frigate ensure electrical performance consistency in cables exposed to plasma processes?

Cables use plasma-resistant jacket materials chemically tested against fluorine and chlorine-based species. After exposure, electrical insulation resistance and dielectric strength are retested to confirm integrity. The material’s surface chemistry prevents erosion and embrittlement. This guarantees reliable insulation during extended plasma operation cycles. Such rigorous validation minimizes electrical failures in critical semiconductor tools. 

In what ways does Frigate optimize cable design for EMI suppression in complex semiconductor tool electronics?

Frigate applies multi-layer shielding that combines copper braids and aluminized Mylar foil for maximum coverage. Shield terminations are designed for 360-degree contact at connector interfaces, reducing noise ingress. Grounding methods are customized per tool architecture to minimize ground loops and signal distortion. Shield effectiveness is tested across relevant frequency ranges using IEC standards. This approach ensures clean, stable signals in sensitive measurement systems. 

How does Frigate manage traceability and configuration control for complex cable assemblies in semiconductor equipment?

Each cable assembly receives a unique serialized label linked to batch production and inspection records. Frigate maintains controlled engineering change notices (ECNs) to document design revisions. Part numbering is harmonized across different tool platforms for ease of ordering and inventory. Detailed build records and test reports are archived digitally for customer audits. This strict traceability supports quality assurance and rapid service response. 

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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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