Electrical Equipments for Telecommunication

Frigate delivers precision-engineered solutions that ensure consistent performance in high-frequency, high-reliability telecom environments, even under demanding electrical and environmental conditions. 

telecommunication

Maintains low-loss, reflection-free transmission up to 40 GHz using controlled impedance, concentricity, and low-dielectric materials. 

Retains dielectric strength and mechanical integrity from -40°C to +125°C using XLPE/FEP insulation and UV-stable outer jackets. 

Achieves >90 dB shielding with multi-layer foil-braid systems and isolated differential pairs to suppress cross-domain interference. 

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.

Three-Phase Transformers - IMG (1)
Amorphous Core Transformers - IMG
Lighting Transformers - IMG (2)
EI _ Laminated Core Transformers - IMG (3)
Control Transformers - IMG (4)
Toroidal Transformers - IMG
Cast Resin Transformers - IMG (3)
Ferrite Core Transformers - IMG (3)
Audio Line Matching & Output Transformers - IMG (3)
single-phase transformers - IMG (2)
Danish Plug Power Cord - IMG (2)
Type E Power Cords (2)
Type B NEMA Power Cords - IMG (4)
Type G Power Cords (4)
Y-Splitter Power Cord - img (3)
Type C Europlug Power Cords (3)
UAEGulf Region Plug Power Cord - img (5)
Type L Power Cords (4)
UK Plug Power Cord - IMG
CCS DC Charging Cord - IMG
1-Phase Sine Wave Filter Inductor (2)
3-Phase Output Choke - IMG (2)
Marine Water Cooled Reactor
Detuned Reactor (2)
Power Smoothing Reactor (2)
Auxiliary Inductor (2)
Filter Choke - img
Output Choke (3)
3-Phase Sine Wave Filter Inductor (2)
Balancing Reactor (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.

Core Electrical Applications in Telecom Infrastructure

Electric components in telecom networks operate under continuous high-frequency signaling, thermal gradients, and EMI-loaded environments. Each application demands strict adherence to impedance, insulation, and mechanical robustness standards to ensure uninterrupted system performance. 

Base Station RF and Power Distribution

Supports stable RF signal transmission and high-load DC power delivery across antennas, radios, and amplifiers in cellular tower infrastructures. 

Fiber-Optic Backhaul and Equipment Powering

Enables isolated DC supply and signal integrity in fiber-fed distribution panels, network switches, and remote optical line terminals (OLTs). 

telecommunication

Mechanical Interfaces

Frigate addresses failure points in mechanical fatigue and connector reliability through engineered conductor, jacket, and termination technologies. 

Mechanical Fatigue Resistance

Tower-mounted radios and RRHs require conductors that withstand cyclic bending and vibration. Stranded Class 5/6 conductors with controlled lay lengths minimize mechanical stress over time.

Connector Interface Reliability

Precision crimp- or solder-ready terminations, compliant with low-resistance joint criteria, integrate molded strain reliefs to prevent axial pullout and misalignment failures.

Precision Electrical Systems for Every Industry

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

Transformer Performance in Signal-Critical Networks

Telecom infrastructure demands continuous, distortion-free power. Frigate’s transformers undergo advanced validation and testing to ensure stability across high-frequency, mission-critical network environments. 

EMI Suppression Validation
Conducted emission and radiated noise testing guarantee minimal transformer-induced interference in sensitive telecommunication frequency spectrums.
Voltage Sag
Simulation
Controlled dip-and-swell tests validate transformer resilience under fluctuating grid conditions common in remote telecom installations.
Insulation Coordination Tests
Surge withstand and impulse tests ensure dielectric reliability against lightning strikes and switching surges in outdoor telecommunication deployments.

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 consistent impedance across long RF cable runs in telecom infrastructure?

Frigate maintains impedance consistency by tightly controlling conductor concentricity, dielectric uniformity, and jacket extrusion tolerances within ±0.05 mm. Dielectric materials like expanded PTFE and foamed PE are processed using precision gas-injection to maintain a stable εr profile. Impedance is verified using time-domain reflectometry (TDR) over 100% of each batch. This ensures minimal signal reflection and return loss in high-frequency transmission systems. 

What measures does Frigate take to minimize electromagnetic coupling in bundled hybrid telecom cables?

Frigate designs hybrid cables with individual foil-shielded data pairs and spatial separation from power conductors using conductive PE separators. These constructions limit capacitive coupling and maintain crosstalk below -65 dB up to 1 GHz. Additional braid layers with >90% coverage are applied over the entire assembly for common-mode noise suppression. Grounding continuity is validated using low-resistance path testing per ASTM D2861. 

How does Frigate validate thermal endurance of cables used in outdoor telecom equipment?

Thermal aging tests are conducted in controlled ovens up to 150°C for 168 hours per IEC 60216. Post-exposure, samples are tested for insulation breakdown, tensile retention, and elongation properties. Jacket materials like HF-TPE and TPU are selected for their UV and ozone resistance in compliance with ISO 4892-2. This ensures long-term mechanical stability in rooftop and remote BTS enclosures. 

How does Frigate design for vibration resistance in telecom tower installations?

Frigate uses fine-stranded Class 6 conductors with short lay lengths to reduce internal conductor fatigue from continuous vibration. Cable cores are reinforced with non-wicking aramid fillers for dimensional stability under axial stress. Vibration resistance is tested using random frequency sweep profiles in accordance with IEC 60068-2-6. Connector interfaces are supported with overmolded strain reliefs tested for >50N axial retention. 

What steps does Frigate take to ensure compliance with flame retardancy and toxicity standards for indoor telecom cabling?

Frigate uses halogen-free, low smoke compounds that comply with IEC 60332-3-24 for vertical flame spread and EN 50267 for halogen acid gas emission. Cables are subjected to FT4/FT6 flame tests depending on market requirements. Smoke density is measured using ISO 5659-2, ensuring optical density below 0.4 m²/g. This makes the cables suitable for high-density racks and enclosed control environments. 

We'd love to Manufacture for you!

Submit the form below and our representative will be in touch shortly.

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

Get Quote
Support All File Formats Including - STEP | STP | SLDPRT | STL | DXF | IPT | X_T | X_B | 3DXML | CATPART | PRT | SAT | 3MF | JT files

Loading....