3 Phase EV Charging Cable

3 Phase EV Charging Cable

Young Energy's EV Charging Cable is a high-quality cable designed for electric vehicle charging. With its exceptional features and robust construction, this cable ensures safe and efficient charging for electric vehicles.
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Product Introduction

Young Energy's EV Charging Cable is a high-quality cable designed specifically for charging electric vehicles.

 

3p wire 111

Technical Specifications

 

Rated Voltage: 450V AC / 750V DC

Rated Temperature: -40ºC to +105ºC

 

Raw Materials

 

Conductor: Multiple strands of copper wire twisted for optimal conductivity and flexibility.

Insulation:Cross-linked polyolefins have excellent electrical insulation and high temperature resistance.

Sheath: Polyurethane elastomer sheath for durability and protection from external factors.

 

Field of use

 

Commercial and industrial use: 3-phase electric vehicle charging cables are widely used in commercial and industrial locations, especially for charging large electric vehicles such as electric buses, vans and engineering vehicles.

Public charging facilities: Public charging stations often use 3-phase EV charging cables to support fast and high-power charging needs.

Charging of industrial vehicles and equipment: such as storage equipment, logistics vehicles, airport ground handling vehicles, etc., are also usually charged using 3-phase electric vehicle charging cables.

 

Product Benefit

 

The cable's multi-stranded copper conductors ensure low resistance for fast and efficient charging. Its cross-linked polyolefin insulation provides excellent electrical insulation properties, preventing voltage leakage and ensuring safe operation.
 

The polyurethane elastomer jacket offers excellent durability, resisting abrasion, chemicals, and environmental factors.
 

Safety is critical for EV charging, so our EV charging cables are designed and manufactured to meet the stringent standards set by the national standard for EV charging cables, GB/T 33594.
 

In addition, the EV charging cables are rated at 450V AC / 750V DC, enabling them to meet the high voltage requirements of EV charging, ensuring compatibility with a wide range of charging stations and EVs.
 

The cables have a wide operating temperature range of -40ºC to +105ºC, ensuring reliable operation even in extreme weather conditions.
 

FAQ

 

How smart technology and connectivity in three-phase EV charging cables advances EV charging infrastructure

Q: What are the main benefits of integrating smart technology into three-phase EV charging cables?

A: There are several key benefits of integrating smart technology into three-phase EV charging cables:

Enhanced charging efficiency: Smart technology enables dynamic power allocation, ensuring optimal charging efficiency and faster charging times.

Real-time monitoring: Advanced sensors and communication modules monitor charging status, cable health, and energy consumption in real time.

Remote control: Users can remotely start, stop, and schedule charging sessions through a mobile app or web interface, providing greater flexibility and convenience.

Improved safety: Smart charging cables can detect and respond to potential issues such as overheating, over current, or connection failures, improving overall safety.
 

Q: How does connectivity in three-phase EV charging cables improve the user experience?

A: Connectivity in three-phase EV charging cables improves the user experience in the following ways:

Seamless integration: Connectivity features enable seamless integration with smart home systems, public charging networks, and fleet management platforms.

User-friendly interface: The mobile app and web portal provide an intuitive interface for monitoring and managing charging sessions, viewing energy usage, and receiving notifications.

Automatic updates: Over-the-air (OTA) updates ensure that the charging cable firmware is kept up to date with the latest features and security patches.

Personalized setting: Users can customize charging parameters to meet their specific needs, such as setting a charging time to take advantage of lower electricity rates.

 

Product Parameters

 

Nominal cross sectional area
mm²

Conductor

Insulation

Jacket

Construction
(No./mm)

Max O.D. of Conductor
mm

conductor DC resistance at 20ºC
m Ω/m

Nominal Thickness of Insulation
mm

Nominal Thickness of Jacket
mm

Min. O.D.
mm

Max. O.D.
mm

3×1.5

80/0.15

1.80

13.3

0.8

1.8

11.6

14.9

3×2.5

140/0.15

2.20

7.98

0.8

1.9

12.6

16.1

3×4

209/0.15

2.80

4.95

1.0

2.0

14.4

18.4

3×6

189/0.21

3.40

3.3

1.0

2.2

15.8

20.2

4×1.5

80/0.15

1.80

13.3

0.8

1.9

12.6

16.1

4×2.5

140/0.15

2.20

7.98

0.8

2.0

13.7

17.5

4×4

209/0.15

2.80

4.95

1.0

2.2

16.0

20.4

4×6

189/0.21

3.40

3.3

1.0

2.3

17.5

22.2

5×1.5

80/0.15

1.80

13.3

0.8

2.0

13.6

17.4

5×2.5

140/0.15

2.20

7.98

0.8

2.1

14.9

19.0

5×4

209/0.15

2.80

4.95

1.0

2.3

17.6

22.3

5×6

189/0.21

3.40

3.3

1.0

2.5

19.3

24.5

 

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