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Providing wire and cable products for various industries.

BV BVR Copper Core Polyvinyl Chloride Insulated/Soft Wire

Ordinary insulated wires—commonly used household electrical wires—are a widely adopted type of wiring. Taking a new 100-square-meter home as an example: you’ll need 200 meters of 4-square-millimeter copper-core BV wire, 400 meters of 2.5-square-millimeter wire, 300 meters of 1.5-square-millimeter wire, and 100 meters of 1.5-square-millimeter copper-core BV two-color wire.

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Photovoltaic cable

Photovoltaic cables are electron-beam crosslinked cables rated for a maximum temperature of 120℃. The materials used, which have undergone radiation-induced crosslinking, exhibit high mechanical strength. The crosslinking process alters the chemical structure of the polymer, transforming initially melt-processible thermoplastic materials into non-meltable elastomeric materials. Radiation-induced crosslinking significantly enhances the thermal, mechanical, and chemical properties of cable insulation materials.

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Photovoltaic cable

Photovoltaic cables are electron-beam crosslinked cables rated for a maximum temperature of 120℃. The materials used, which have undergone radiation-induced crosslinking, exhibit high mechanical strength. The crosslinking process alters the chemical structure of the polymer, transforming initially melt-processible thermoplastic materials into non-meltable elastomeric materials. Radiation-induced crosslinking significantly enhances the thermal, mechanical, and chemical properties of cable insulation materials.

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Photovoltaic cable

Photovoltaic cables are electron-beam crosslinked cables rated for a maximum temperature of 120℃. The material, which has been crosslinked via radiation, exhibits high mechanical strength. The crosslinking process alters the chemical structure of the polymer, transforming initially melt-processible thermoplastic materials into non-meltable elastomeric materials.

View details

Photovoltaic cable

Photovoltaic cables are electron-beam crosslinked cables rated for a maximum temperature of 120℃. The material, which has been crosslinked via radiation, exhibits high mechanical strength. The crosslinking process alters the chemical structure of the polymer, transforming initially melt-processible thermoplastic materials into non-meltable elastomeric materials.

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Aluminum-core overhead line

Suitable for overhead power lines with rated AC voltages of 35 kV and below, and intended for use in locations with high safety requirements, such as urban areas, high-rise buildings, and forested regions.

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Aluminum-core overhead line

Suitable for overhead power lines with rated AC voltages of 35 kV and below, and intended for use in locations with high safety requirements, such as urban areas, high-rise buildings, and forested regions.

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Aluminum-core overhead line

Suitable for overhead power lines with rated AC voltages of 35 kV and below, and intended for use in locations with high safety requirements, such as urban areas, high-rise buildings, and forested regions.

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Aluminum-core overhead line

Suitable for overhead power lines with rated AC voltages of 35 kV and below, and intended for use in locations with high safety requirements, such as urban areas, high-rise buildings, and forested regions.

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Aluminum alloy cable

Aluminum alloy power cables address the shortcomings of previous all-aluminum cables. Although they do not improve the cable’s electrical conductivity, they significantly enhance its flexibility, creep resistance, and corrosion resistance, ensuring that the cable maintains stable performance even under prolonged overloading and overheating conditions.

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Aluminum alloy cable

Aluminum alloy power cables address the shortcomings of previous all-aluminum cables. Although they do not improve the cable’s electrical conductivity, they significantly enhance its flexibility, creep resistance, and corrosion resistance, ensuring that the cable maintains stable performance even under prolonged overloading and overheating conditions.

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Aluminum alloy cable

Aluminum alloy power cables address the shortcomings of previous all-aluminum cables. Although they do not improve the cable’s electrical conductivity, they significantly enhance its flexibility, creep resistance, and corrosion resistance, ensuring that the cable maintains stable performance even under prolonged overloading and overheating conditions.

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