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Charging-pile-cable

62893 IEC 121 Copper EV1-2 insulated Cable

Application

62893 IEC 121 Cable is used to connect electric vehicle charging device and charging infrastructure, so as to carry out power transmission for electric vehicles, and is equipped with a certain number of signal lines, control lines, power auxiliary lines, etc., to ensure accurate control of the entire charging process and safe operation. Charging cables are generally used in charging stations, parking lots, hotels, communities, garages and other areas, and portable charging cables can be placed in the car. This cable is mainly used for home AC charging.

Construction
  • Conductor: EN/IEC 60228, Class 5 Flexible stranded copper
  • Insulation Layer: EVI-2
  • Jacket Layer: EVM-1
Main Characteristics
  • Temperature range: -40℃ to + 90℃
  • Nominal voltage: AC U0/U 300/500V
  • Min.Bending Radius Fixed installation 5x cable
  • Certificate Number: R 50626648 / R 50626645
Specification

IEC 62893 / EN 50620

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Product Parameters

Cross Section Conductor Stranded O.D. Insulation Thickness Jacket Thickness Cable O.D. Ref.Range Approximate Weight Conductor Resistance at 20℃ Max.
mm2 mm mm mm mm kg/km Ω/km
3×1.5+1×0.5 1.6 0.6 1.0 8.60±0.60 2217 13.3
3×1.5+2×0.5 1.6 0.6 1.0 8.60±0.60 4229 13.3
3×2.5+1×0.5 2.0 0.6 1.0 9.50±0.60 5583 7.98

Application and case display

FAQ

How Do Water-Blocking Cables Work?
What is the operating temperature of the cable?
What are the weight limits for different types of packages?
How do you calculate the minimum bending radius of cables?
How long is the validity period of cold shrink cable accessories?
Flame Retardant Cables VS Fire Resistant Cables?
Both types of cables are crucial in enhancing the likelihood of escape and survival in the event of a fire and are often confused with one another. However, there is a fundamental distinction between flame retardant cables and fire resistant cables. Flame retardant cables are engineered to inhibit the spread of fire to adjacent areas. On the other hand, fire resistant cables are specifically designed to preserve circuit integrity and ensure functionality during a fire, under specified conditions, aiding both evacuees and firefighters.
What is the service life of cables?
The design life of power cables is typically 20 to 30 years; however, this can vary significantly based on factors such as installation, environmental conditions, and the quality of the cable.
How do you calculate the minimum bending radius of cables?
The bend radius refers to the curved shape in which an electrical cable can be bent or curved without sustaining damage. To determine the minimum bend radius for cables, apply the following formula: Minimum Bend Radius = Cable Outer Diameter×Cable Multiplier. For example, if the outer diameter of a cable is 20mm, its minimum bending radius would be 20mm×6 = 120mm. Conversely, if an armored cable has an outer diameter of 30mm, its minimum bending radius would be 30mm×12 = 360mm.
Armored vs. Unarmored Cables?
Armored cables are ideal for direct burial and laying underground, offering protection against environmental factors. Unarmored cables are unsuitable for burial or use in other challenging applications and installations.
What temperature can high-temperature resistant cables reach, and what are their application scenarios?
High-temperature resistant cables are engineered to function within a wide temperature range, spanning from -50°C to +260°C, depending on the cable's specific type and construction. Silicone rubber-insulated cables can withstand temperatures up to 180°C, whereas fluoroplastic insulated cables are designed to endure temperatures as high as 200°C to 260°C over extended periods. They are widely used in steel metallurgy, power, petrochemicals, aerospace, and industrial kilns for power transmission and equipment control in high-heat environments.

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