MV / HV / EHV XLPE Insulated Power Cables (Up to 220 kV) – Detailed Description
MV (Medium Voltage), HV (High Voltage), and EHV (Extra High Voltage) XLPE Insulated Power Cables up to 220 kV are advanced power transmission cables designed for efficient, reliable, and high-capacity transfer of electricity across long distances. These cables utilize XLPE (Cross-Linked Polyethylene) insulation, which provides excellent electrical, thermal, and mechanical properties required for high-voltage applications.
Engineered to operate under high electrical stress, XLPE insulation offers superior dielectric strength, low dielectric losses, and excellent مقاومت to thermal ageing. This allows the cables to handle high voltages and currents while maintaining consistent performance and long service life. The cables are designed with multiple layers, including conductor, insulation, metallic screen, bedding, armouring, and outer sheath, ensuring maximum protection and operational safety.
These power cables are suitable for underground, submarine (in some designs), and duct installations, making them ideal for urban infrastructure where overhead lines are not feasible. They are built to withstand environmental conditions such as moisture, chemicals, and temperature variations, ensuring reliable operation in diverse applications.
With high current-carrying capacity and minimal transmission losses, MV/HV/EHV XLPE cables are widely used in critical power transmission networks and large-scale industrial projects.
Key Features:
- Voltage range up to 220 kV (MV, HV, EHV applications)
- XLPE insulation for superior dielectric and thermal performance
- High current-carrying capacity with low losses
- مقاوم to moisture, chemicals, and environmental stress
- Suitable for underground and duct installations
- Long service life with high reliability
Applications:
- Power transmission and distribution networks
- Substations and grid interconnections
- Industrial plants and large infrastructure projects
- Urban underground cabling systems
- Renewable energy power evacuation