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V-S90S90/EV-RS90S90 Electric Vehicle Charging Cable

    V-S90S90/EV-RS90S90 Electric Vehicle Charging Cable

    The Electric Vehicle (EV) Charging Cable is designed to provide safe, efficient, and reliable charging for electric and hybrid vehicles. Featuring high-quality copper or aluminum conductors and durable insulation, this cable ensures stable power transfer and minimal energy loss during charging. Its robust construction offers excellent resistance to heat, abrasion, moisture, and chemicals, making it suitable for both home and commercial charging stations. Compatible with a wide range of EV models and compliant with international safety standards, this cable delivers fast, secure, and efficient...
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EV-S90S90/EV-RS90S90


450/750V Electric Vehicle Charging Cable


Applications

This product is primarily used to connect cables between electric vehicles and charging equipment, between electric vehicle charging equipment and charging ports,or in vehicle charge and discharge warning control systems that transmit control signals for charging saturation and safety warnings.


Product Structure

Reference Standard: GB/T33594-2017

Conductor: Multi-strand fine copper wire, meeting the requirements of GB/T3956-2008

EV-S90S90: Type 5 conductor

EV-RS90S90: Type 6 conductor

Insulation Material: TPE

Specifications: Main insulated core wire: 1.0-70mm²

Signal or control core wire: 0.5-1.5 mm²

Signal or control core wire shield (optional): (Tinned) copper wire braid, braid density ≥ 80%

Filling (optional): Mesh polypropylene or cotton

Jacket material: TPE

Jacket color: RAL 2003 orange or other custom colors

Insulation color:

Two-core: Blue, Brown

Three-core: Yellow/Green, Blue, Brown

Four-core: Yellow/Green, Brown, Black, Gray

Five-core: Yellow/Green, Blue, Brown, Black, Gray

Signal or control core wire colors may be numbered.


Technical Parameters

Rated voltage: AC: 450/750V and below

Rated temperature: -40°C to +90°C

Withstand voltage test: 3500V/15min

Spark test: ≥4KV

Minimum bend radius:

Fixed installation: 4 x cable outer diameter

Mobile Installation: 6x Cable Outer Diameter

Environmental Requirements: Complies with RoHS and REACH environmental requirements

Flame Retardant: Complies with GB/T18380.12/22-2008, no flame retardancy test


Product Features

UV resistant, easy to install and use

Excellent oil resistance (mineral oil, fuel oil, gasoline)

The cable is flexible and cold-resistant, and can withstand a certain amount of mechanical force, making it flexible and easy to install and lay.


Number of cores × cross-sectional area

n*mm²

Nominal insulation thickness

mm

Nominal sheath thickness

mm

Approximate outer diameter of wire

mm

Conductor resistance at 20℃

max

(Q/km)
copper coreTinned copper core
3*1.00.8 1.7 9.7 19.5 20 
4*1.00.8 1.8 10.6 
5*1.00.8 1.9 11.6 
3*1.50.8 1.8 10.5 13.3 13.7 
4*1.50.8 1.9 11.5 
5*1.50.8 12.6 
3*2.50.8 1.9 11.6 7.98 8.21 
4*2.50.8 12.8 
5*2.50.8 2.1 14.0 
3*413.9 4.95 5.09 
4*42.2 15.5 
5*42.3 17.0 
3*62.2 15.6 3.3 3.39 
4*62.3 17.2 
5*62.5 19.0 
3*102.3 18.2 1.91 1.95 
4*102.5 20.2 
5*102.7 22.4 
3*162.5 20.6 1.21 1.24 
4*162.8 23.0 
5*1625.4 
3*251.2 2.9 24.8 0.78 0.795 
4*251.2 3.2 27.7 
5*251.2 3.6 31.0 
3*351.2 3.3 28.6 0.554 0.565 
4*351.2 3.6 31.9 
5*351.2 3.9 35.3 
3*501.4 3.7 33.3 0.386 0.393 
4*501.4 4.1 37.2 
5*501.4 4.5 41.4 
3*701.4 4.2 37.3 0.272 0.277 
4*701.4 4.6 41.6 
5*701.4 46.2 



The Electric Vehicle (EV) Charging Cable is an essential component for safely and efficiently charging electric and hybrid vehicles. Designed to meet the growing demands of EV owners and charging infrastructure providers, this cable combines high-quality conductors, durable insulation, and international safety compliance to ensure reliable performance across various applications.

This comprehensive guide covers product introduction, specifications and models, environmental compliance standards, and upgrade and maintenance plans, structured for SEO optimization and suitable for websites and B2B platforms.


1. Product Introduction

1.1 Key Features

  • High-Conductivity Conductors: Copper or aluminum cores for efficient power transmission

  • Durable Insulation: Resistant to heat, abrasion, moisture, and chemicals

  • Safety Compliance: Meets international standards such as IEC, ISO, and RoHS

  • Compatibility: Supports a wide range of EV models and charging stations

  • Flexible Design: Easy to handle and install in residential, commercial, or public charging environments

1.2 Benefits

  • Fast and secure charging

  • Long service life with minimal maintenance

  • Protection against electrical hazards and environmental factors

  • Enhanced energy efficiency, reducing power loss during charging

1.3 Product Features Table

FeatureDescription
Conductor MaterialCopper or Aluminum
Voltage Rating250V – 1000V depending on model
Insulation MaterialPVC, TPE, or equivalent high-performance polymer
Temperature Range-25°C to +60°C
Standards ComplianceIEC, ISO, RoHS, UL
FlexibilityFlexible for easy installation
DurabilityResistant to abrasion, moisture, chemicals

2. Specifications and Models

2.1 Standard Models

  • Model A: Single-phase 16A, 1.5 meters, residential use

  • Model B: Single-phase 32A, 5 meters, commercial use

  • Model C: Three-phase 63A, 10 meters, public charging stations

2.2 Custom Options

  • Cable length customization (1m – 20m)

  • Connector types (Type 1, Type 2, CCS, CHAdeMO)

  • Color-coded insulation for easy identification

2.3 Specifications Table

ModelPhaseCurrent RatingLengthConnector TypeUsage Scenario
Model A116A1.5mType 1Residential
Model B132A5mType 2Commercial
Model C363A10mCCS / CHAdeMOPublic Charging

3. Environmental Compliance Standards

3.1 RoHS Compliance

  • Free from hazardous substances such as lead, mercury, cadmium, and certain flame retardants

  • Ensures environmentally friendly manufacturing and disposal

3.2 IEC and ISO Standards

  • IEC 62196: Standard for EV connectors and charging interfaces

  • ISO 6469: Safety requirements for EV high-voltage systems

3.3 Sustainability Benefits

  • Recyclable conductor and insulation materials

  • Reduced environmental impact through energy-efficient charging

3.4 Compliance Table

StandardDescription
RoHSRestriction of Hazardous Substances
IEC 62196EV connector and interface standard
ISO 6469Safety requirements for high-voltage EV systems
UL CertificationSafety testing for electrical components

4. Upgrade and Maintenance Plan

4.1 Upgrade Plan

  • Periodic inspection and replacement of connectors every 2–3 years

  • Optional firmware updates for smart EV cables with communication modules

  • Upgrading to higher current or longer cable models as vehicle power ratings increase

4.2 Maintenance Frequency

  • Visual Inspection: Monthly

  • Connector Cleaning: Every 6 months

  • Electrical Testing: Annually

  • Replacement: When insulation damage or conductor wear is detected

4.3 Maintenance Guidelines

  • Use a soft, dry cloth for cleaning; avoid chemical cleaners

  • Store cable coiled in a dry, ventilated space

  • Ensure connectors are kept clean and dry

4.4 Upgrade & Maintenance Table

TaskFrequency / ScheduleNotes
Visual InspectionMonthlyCheck for cracks, cuts, or wear
Connector CleaningEvery 6 monthsRemove dust and moisture
Electrical TestingAnnuallyContinuity, insulation resistance
ReplacementAs neededUpon damage or wear
Firmware / Smart UpdatesAs releasedFor smart EV charging cables

5. Installation Guidelines

5.1 Pre-Installation Steps

  1. Ensure the power source is switched off before installation

  2. Verify compatibility with EV model and charging station

  3. Inspect the cable and connectors for damage

5.2 Installation Procedure

  1. Uncoil the cable and remove any protective packaging

  2. Connect the plug securely to the EV inlet

  3. Connect the other end to the charging station or power source

  4. Verify that the connection is stable and the charging indicator is active

  5. Avoid sharp bends or kinks during installation

5.3 Safety Precautions

  • Use only certified connectors compatible with the vehicle

  • Avoid exposure to water or excessive heat during installation

  • Do not attempt to repair damaged connectors or cables yourself

5.4 Installation Diagram

[Charging Station] ---- [EV Charging Cable] ---- [Electric Vehicle]

Illustration: Standard EV charging setup using a certified charging cable.


6. Applications

  • Residential EV charging stations

  • Commercial and fleet vehicle charging

  • Public EV charging infrastructure

  • Smart charging solutions for energy management systems

6.1 Application Table

Application TypeDescription
Home ChargingSafe and efficient residential EV charging
Commercial FleetCharging multiple vehicles with higher current
Public StationsHigh-capacity charging for public EV users
Smart Charging SystemsIntegration with energy management systems

7. Conclusion

The Electric Vehicle Charging Cable is a reliable, efficient, and environmentally compliant solution for modern EV charging needs. With detailed specifications, adherence to international environmental standards, upgrade and maintenance plans, and clear installation guidelines, it ensures safe and optimal charging performance for residential, commercial, and public applications. Its flexibility, durability, and compatibility make it a preferred choice for EV owners, manufacturers, and charging infrastructure providers worldwide.


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