General Electrical Cables
The cables are equipped with high-performance insulation materials such as XLPE (cross-linked polyethylene) or EPR (ethylene propylene rubber), offering superior dielectric strength and thermal resistance. These insulation types allow the cables to perform in temperatures ranging from -40°C to 90°C (or higher), ensuring reliable operation in environments subject to thermal cycling. This reduces the risk of cable degradation due to heat, preventing premature failures and enhancing system reliability.

Our General Electrical Cables
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Technical Advantages
To meet the mechanical stresses encountered in industrial and construction environments, our cables incorporate high-tensile strength materials and aramid yarn or steel wire armoring. This robust construction provides excellent resistance to mechanical damage, crushing, and abrasion while maintaining flexibility for easy installation in challenging environments. These features prevent the cables from being compromised by external impacts, which is crucial in high-stress applications like heavy machinery or underground installations.
Our cables are designed to meet stringent fire safety standards. They are coated with halogen-free, flame-retardant materials that minimize the spread of fire and toxic smoke in the event of a fire. These properties protect personnel and equipment, particularly in confined spaces like tunnels, buildings, and substations. Flame retardant designs meet standards such as IEC 60332-1 for low fire propagation and IEC 60331 for fire-resistant cables, ensuring safe operation even in emergencies.
EMI Shielding and Noise Reduction
Our cables incorporate specialized shielding techniques for applications sensitive to electromagnetic interference (EMI), such as data centers, telecommunications, and medical facilities. These include braided copper or aluminum foils that prevent electromagnetic interference and crosstalk between conductors. The shielding significantly reduces the impact of external signals, ensuring the integrity and reliability of the electrical systems.
Our cables are engineered with corrosion-resistant materials to perform reliably in challenging environments where exposure to chemicals, oils, or saline solutions is prevalent. Materials such as PVC, TPE (thermoplastic elastomers), and various high-grade alloys are used for jacket and sheathing applications. The protective coatings ensure the cables can withstand aggressive substances without compromising electrical performance or insulation integrity.

Industry Applications
Transmitting electrical power across vast distances in transmission lines, utilizing cables with high insulation strength and voltage handling capacity.
Powering servers, storage, and cooling systems, with cables offering low electrical resistance, minimal heat generation, and superior reliability.
Supplying power to heating, ventilation, and air conditioning systems, requiring cables with thermal stability and resistance to environmental factors.
Powering critical equipment and communication systems in extreme conditions with cables offering high durability, shielding, and resistance to electromagnetic interference (EMI).
Providing power to ships and offshore oil platforms, designed with corrosion-resistant materials and high seawater and mechanical stress resistance.
Supplying power to robotic arms, CNC machines, and factory conveyor systems with cables that resist flexing and abrasion.

Having Doubts? Our FAQ
Check all our Frequently Asked Question
Frigate’s General Electrical Cables are designed with specialized insulation materials like XLPE, which can withstand extreme temperature ranges. These materials prevent insulation breakdown, ensuring continuous power flow in both high-heat and cold environments without performance degradation.
Fregatte nutzt precision strand configurations and advanced annealing techniques to enhance conductor flexibility while maintaining electrical integrity. This reduces fatigue and wear in applications involving frequent movement or vibration, such as robotic automation systems or cable chains.
Frigate applies specialized coatings such as tinned copper or uses corrosion-resistant alloys for conductors and armoring in marine-grade cables. This ensures long-lasting performance even when exposed to saltwater, reducing the likelihood of corrosion and electrical faults in harsh marine environments.
Frigate incorporates multi-layer insulation grading, where each layer is designed to relieve electrical stress. Adding stress control materials ensures that the internal electric field is evenly distributed, reducing the risk of partial discharge and extending the cable’s lifespan in high-voltage applications.
Frigate designs its cables with built-in shielding using braided copper or aluminum foils, effectively preventing electromagnetic interference (EMI). These shields ensure signal integrity and power reliability in sensitive environments like data centers, hospitals, and telecommunication networks.
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