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Photovoltaic cable

Photovoltaic cable is an electron-beam cross-linked cable rated for temperatures up to 120°C, made from radiation-crosslinked material that boasts superior mechanical strength.

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  • Product Description
  • Product features:

      Photovoltaic cables are electron-beam cross-linked cables rated for temperatures up to 120°C, made from radiation-crosslinked materials that offer superior mechanical strength. The cross-linking process transforms the chemical structure of polymers, converting initially meltable thermoplastic materials into non-meltable elastomeric ones. This radiation-induced cross-linking significantly enhances the cable insulation material’s thermal, mechanical, and chemical properties, enabling it to withstand harsh environmental conditions and resist severe mechanical stress in connected equipment. According to the international IEC216 standard, our company’s photovoltaic cables boast an outdoor service life that is 8 times longer than rubber cables and an impressive 32 times longer than PVC cables. These cables and components not only deliver exceptional resistance to weathering, UV exposure, and ozone degradation but also endure a much broader temperature range—from -40°C to 125°C.

    Model specifications:

    Schematic Diagram of Cable Structure for PV1-F Photovoltaic System

     

    Product Name

    Photovoltaic cable

    Model

    PV1-F

    Specifications

    2.5 mm², 4 mm², 6 mm², 10 mm², 16 mm²,

    Rated Voltage

    AC 0.6/1kV DC 1.8kV

    Conductor

    Tin-plated copper wire

    Insulating material

    Radiation-crosslinked polyolefin insulation

    Sheath material

    Radiation-crosslinked polyolefin insulation

    Rated temperature

    -40°C to 120°C

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This standard is primarily based on GB/T 12706.1-2020, "Power Cables with Extruded Insulation and Their Accessories Rated from 1 kV (Um = 1.2 kV) to 35 kV (Um = 40.5 kV) — Part 1: Cables Rated 1 kV (Um = 1.2 kV) and 3 kV (Um = 3.6 kV)," as well as GB/T 19666-2019, "General Rules for Flame-Retardant and Fire-Resistant Wires and Cables." This product is designed for use in critical electrical engineering applications, including hazardous areas such as airports, oil depots, liquefied gas stations, chemical plants, coal mines, nuclear power plants, steel mills, and shipbuilding facilities; advanced and essential public infrastructure like satellite ground stations, railway wiring systems, alarm and fire protection systems; and environments where safeguarding human life and property is paramount—such as historic buildings, hotels, high-rise structures, museums, libraries, banks, hospitals, insurance institutions, shopping malls, and research facilities.
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