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EV Cablesbxk
EV-Cablesh3k

QC Solar Electric Vehicle Plugs

1. The cable is used for EV charging pile and charging interface
2. Passed the GB/T 25085;ISO 6722 high temperature pressure test, with excellent resistance to external load pressure and thermal stress,
3. Environmentally friendly thermoplastic elastomer materials is used for cable insulation jacket, with excellent flexibility, can pass the -4O ℃ low temperature bending test.
4. The conductor is made of tinned or not tinned soft copper stranded wire,with small resistance,low heat and stronger over current ability.
5. Soft touch, minimum bending radius up to 5D, easy to use

Fire performance

environmental protection

abrasion resistance

weatherability

oil resistant

UV resistant

One-piece

low heat

Technical Data

Conductor
Material: Tinned copper
0.008mm OD mm Resistance max
1592/0.2 10.30Ref. 0.368
Insulation
Material: XLPE(Halogen Free)
Nom.thickness/Min.thickness OD mm
1.50/1.20 13.3±0.30
Marking: EV-RYJ-125 1500V 50m㎡ Quick Contact Corp.
Color: Orange/Black/Red
Performance
Rating Voltage : DC 1500V
Rating Temperature: -40℃ to +125℃
Short-term Aging: 150℃*240h, Comply with IS06722
Dielectric Voltage: 6000V/15min
Volume resistivity: 109/Ω.mm,Comply with IS06722
Flame Test: Comply with IS06722
Fluid Compatibility: Comply with IS06722
Resistance to Ozone: 65℃/192h(1ppm),Comply with IS06722
Min. Bend Radius: 3*0D@
Halogen Free: PH>4.3;Conductivity GB/T 17650
Environmental Requirements: ROHS and REACH Compliant

Dimensions(mm)

product-description1xsc
Electric Vehicle Cable: Powering the Future of Mobility

In the rapidly evolving landscape of sustainable transportation, Electric Vehicle (EV) cables play a crucial role in ensuring seamless charging and reliable performance. These cables are specifically designed for EV charging facilities and charging interfaces, serving as the lifeline that powers our eco-friendly journeys.

One of the outstanding features of these EV cables is their exceptional thermal stress resistance. They have successfully passed the rigorous GB/T 25085 and ISO 6722 high temperature pressure tests, guaranteeing their durability and safety even under extreme conditions. This means that whether in scorching summers or cold winters, the cable remains stable and reliable, providing a consistent charging experience.

Not only are these cables built to withstand heat, but they are also environmentally friendly. Made from materials with excellent flexibility, they can pass the -40℃ cold bend test. This flexibility ensures that the cable can adapt to various installation environments and usage scenarios without cracking or losing its functionality, making it highly resilient and long-lasting.

The conductors within these cables are crafted using either tinned copper or copper, which offers several advantages. The smaller resistance leads to lower heat generation and a stronger over current capacity. This translates to more efficient charging and reduced energy losses, enhancing the overall performance and lifespan of the charging system.

Another notable aspect is the high flexibility of the cable. With a minimum bending radius of up to 5D, it is incredibly easy to use and install. This flexibility simplifies the charging process, allowing for smooth maneuverability and reducing the hassle associated with handling and positioning the cable.

In conclusion, Electric Vehicle cables are not just ordinary cables; they are a sophisticated combination of advanced technology, durability, and environmental consciousness. They provide a reliable and efficient power transfer solution, making a significant contribution to the widespread adoption of electric vehicles and a cleaner, greener future.

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