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Charging-pile-cable
Charging-pile-cable

H05BZ6-F Copper EVI-2 insulated Cable

Application

H05BZ6-F Cable Especially used in supporting all line charging equipment. AC & DC Charging (Domestic Use & public Charging Station). It is suitable for cable connection between DC-side battery modules, battery clusters, battery clusters and bus box, and battery clusters and energy storage converters in battery energy storage systems.

Construction
  • Conductor: Annealed Plain Copper Conductor (Optional: Tinned) according to 60228.CP/CC (Control pilot/control core) as per customer request.
  • Insulation: EVI-2
  • Sheath: EVM-2
  • Sheath Colour: Orange (or) as per customer request
Main Characteristics
  • Abrasion-resistance.
  • Thermal stress-resistant.
  • Halogen-free.
  • Flame resistant.
  • Resistant to cold bend and low temperature shock.
  • High charging power up to 500 KW.
  • Highly flexible and lightweight therefore easy to handle at the charging station.
  • Active liquid cooling as protection against overheating.
  • Fast charging.
  • Ozone resistant.
  • Rated Temperature :
    Static: – 40℃ to +90℃
    Dynamic: – 35℃ to +90℃
  • Rated Voltage: 300/500V
  • Test Voltage: 2.5KV AC (1 Hour in water both)
  • Bending Radius:
    Static: 5X Cable OD
    Dynamic: 15X Cable OD
Specification

EN 50620: 2017

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Product Parameters

Nominal Cross Section Conductor Construction Insulation Thickness Nom. Sheath Thickness Nom. Overall Diameter Max.
Conductor
Resistance
at 20℃
No. of Strands Stand dia.  (Max.) Min. Max.
mm² nos. mm mm mm mm mm Ω/km
(3CX1.5)+1.0 30 0.26 0.6 1.5 8.9 11.6 13.3
(3CX2.5)+1.0 50 0.26 0.6 1.6 10.1 13.2 7.98

Application and case display

FAQ

What is the application of Armored vs. Unarmored Cables?
What is the length tolerance for cables?
What is the service life of cables?
How Do Water-Blocking Cables Work?
Is a flame-retardant cable also fire resistant?
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.
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.
What are the weight limits for different types of packages?
The weight limit for a wooden drum or steel wooden is 5,000 kg, and for a steel drum, it is 10,000 kg.
How long is the validity period of cold shrink cable accessories?
The validity period for most cold shrink cable accessories is typically 3 years from the date of manufacture, provided they are stored under recommended conditions. These conditions usually include controlled humidity and temperature ranges.
Longitudinal Water Blocking vs. Lateral Water Blocking?
A longitudinally water blocking cable is designed with a barrier to prevent the spread of moisture along its length. Longitudinal water blocking stops water from migrating along the cable's core, typically between the conductor strands, insulation layers, or metallic screens. Lateral water blocking ensures that water cannot penetrate the cable in the event that the sheathing is pierced or damaged. Radial water blocking prevents water from penetrating the cable's outer sheath or insulation layers, thereby stopping it from entering the cable structure entirely. Longitudinal water blocking can be achieved through various methods, including the application of water-blocking tapes and powders. These are frequently located on either side of a metallic screen and conductor. Lateral water blocking is typically accomplished by applying a layer of aluminum/polyester tape to the underside of the outer sheath.

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