TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel

Product Details
Customization: Available
Application: Power Station
Material Shape: Round Wire
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  • TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
  • TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
  • TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
  • TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
  • TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
  • TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
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Basic Info.

Model NO.
TUV IEC 62930
Sheath Material
PVC
Insulating Material
XLPE
Conductor Type
Stranded
Certification
TUV
Wire Core Material
Tinned Wire
Transport Package
Pallet, Wooden Box, Drum
Specification
100M/Roll, 250M/Roll, 500M/Roll
Trademark
Yonghao
Origin
China
HS Code
85446090
Production Capacity
1500000m/Day

Product Description

TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel

TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel
TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelTUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panelIn the solar photovoltaic power generation system in the low-voltage DC transmission part of the cable, because the use of the environment and technical requirements are different, the connection of different parts have different requirements, the overall factors to consider are: cable insulation performance, heat resistance and flame retardant performance, aging performance and wire diameter specifications. 
1. The connection cable between the solar cell module and the module is generally connected directly by the connection cable attached to the module junction box. When the length is not enough, a special extension cable can also be used. According to the different power size of the component, this kind of connecting cable has a cross-sectional area of 2.5m square meters, 4.4m square meters, 6.0m square meters and other three specifications. This kind of connecting cable uses double insulation outer skin, has superior protection against UV, water, ozone, acid, salt erosion ability, superior all-weather ability and wear resistance.
2. Use a multi-strand flexible cable that passes the UL test to connect the battery to the inverter. Choosing short and thick cables can reduce system losses, improve efficiency, and enhance reliability.
3. The cables connecting the battery array to the controller or DC junction box must also use multi-strand flexible wires that pass the UL test. The cross-sectional area depends on the maximum output current of the battery array.
The cross-sectional area of the DC cable at the named location shall be determined according to the following principles: Cables connecting solar modules, batteries and batteries, and AC load cables. Generally, the rated current of the cables is 1.25 times of the maximum continuous working current of each cable. For connecting cables between the solar cell array and the square array, and connecting cables between the battery (group) and the inverter, the rated current of the cable selected is generally 1.5 times of the maximum continuous working current in each cable.

TUV Certified PV1-F Multi-Model Solar Photovoltaic Panel Connection Cable Extension Special Cables for Solar System panel

 

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