Wind Mill Cable, 1100v 11000v 33000v
₹1,200.00 / Meter
Specification
- phase
- Three
- voltage
- 1100v 11000v 33000v
- conductor
- Flexible class-5 tinned or bare copper conductors, made to IEC-60228/IS-8130
- application
- Wind tower
- availability
- In Stock
- cable conductor
- Copper
- insulation material
- HRFR
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Description
Wind Power Cables are used for transmitting power from the generator mounted in the nacelle of the wind tower to base station. These are flexible cables made of special elastomeric compounds, so as to meet the torsional stresses exerted on the cable due to rotation of the nacelle in relation to wind direction. Construction Voltage Grade - 600 V / 1100 V Conductor - Flexible class-5 tinned or bare copperconductors, made to IEC-60228/IS-8130 Range (single core) - 10 Sq mm to 300 Sq mm Insulation - EPR - in conformance to IEC-60502/ IS-6380 Sheath - Special elastomer compound with Oil, Fire,Hydrolysis and Torsion Resistant properties.(Zero halogen sheath available on request) Features Maximum conductor temperature (continuous) - + 90 Deg C Short circuit temperature(max) for up to 5 seconds - + 250 Deg C Maximum permissible tensile load on cable - 15 N/mm2 Torsion angle - ± 100° per meter Minimum bending radius - 10 D Control & Instrumentation Cables These Cables are used in Wind Energy applications such as rotor blade pitch control, Yaw control, Top box, Anemometer feed back, Remote data logging etc. Construction of Cables shall be as per Customers' requirement and conforming to various National/International Standards.Wind energy has rapidly grown to become one of the most promising sources of renewable energy in recent years. Wind turbines, with their towering blades gracefully spinning in the breeze, harness the power of the wind to generate electricity. However, behind this picturesque image lies a complex network of cables that play a crucial role in transmitting the electricity generated by these turbines to the grid. In this page, we will explore the significance of wind turbine cables in the generation and distribution of clean energy.ower cables are the lifelines of wind turbines. These cables are responsible for transporting the electricity generated in the nacelle down the towering wind turbine structure to the base, where it is further distributed. The cables must be designed to withstand various environmental challenges, including temperature variations, wind, and moisture. Typically, power cables are insulated to protect against electrical faults and to ensure a safe and efficient transmission of power.Oes.
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