Photovoltaic Cable

Photovoltaic Cable
Product Introduction:
Mechanical durability proves critical as photovoltaic cables endure abrasive rooftop surfaces during deployment and servicing. These systems must sustain compressive forces, angular deflection, axial stress, multidirectional strain, and impact shocks without compromising structural integrity.
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Description
Technical Parameters
Solar Cables Supplier

 

Photovoltaic cables derive their properties from specialized irradiation-crosslinked polyethylene (XLPE) insulation and jacketing. Accelerator irradiation modifies polymer chains to enhance mechanical durability critical for rooftop applications. These cables must withstand abrasive surfaces, tension forces, and impact stresses during installation. Insufficient sheath integrity risks insulation compromise, compromising longevity and creating electrical faults or fire safety hazards.

 

H1Z2Z2-K 1.8KV

 

H2Z2Z2K

 

Basic Info.

 

Voltage level:

1.8KV

Implementation standard:

PFG1169/08-2007

Maximum conductor temperature:

125℃

Minimum operating temperature:

-40℃

Laying environment:

Photovoltaic power stations in a large number of DC cables need to be laid outdoors, harsh environmental conditions, the cable material should be based on the resistance to ultraviolet radiation, ozone, drastic temperature changes and chemical erosion.

 

Specification

 

H2Z2Z2K structural diagram

1. Conductor: tinned copper wire

2. Insulation: XLPO

3. Sheath: XLPO

 

Certification
product-644-909
product-629-888
product-643-909
product-643-909

TUV Certification

 

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