H05BZ5-F / H07BZ5-F AC EV Charging Cable EN 50620 / IEC 62893 for Portable EVSE and Wallbox Integration

YDCHARGE AC EV Charging Cable

A professional grade AC EV charging cable platform for portable EV chargers, wallboxes, and OEM integration.

A professional grade AC EV charging cable platform designed for portable EV chargers, wallboxes, AC charging stations, and OEM / ODM EVSE integration, built around the EN 50620 / IEC 62893 standard system and available in H05BZ5 F, H05BZ6 F, H07BZ5 F, and H07BZ6 F configurations. EN 50620 and IEC 62893 are widely used as the core cable standards for AC EV charging in Europe and related international projects.

The YDCHARGE AC EV cable platform is developed for portable EVSE manufacturers, wallbox brands, charging cable assemblers, and EV connector integrators that require a reliable AC charging cable solution for BEV and PHEV applications. The platform supports single phase and three phase architectures, power conductor ranges from 1.5 mm² to 35 mm² depending on cable family, and optional signal / control cores for CP, PP, NTC, or project specific monitoring logic. Industry references consistently describe H05BZ5 F and H07BZ5 F as AC EV charging cables under EN 50620, with H05 typically rated 300/500V and H07 typically rated 450/750V.

Global Standards Focus

Built around the recognized AC EV charging cable families under EN 50620 and IEC 62893, suitable for Mode 2 and Mode 3 charging architectures. Industry references also describe these cables as suitable across portable and fixed AC EV charging applications.

Phase Coverage

Supports architectures from 3G1.5 mm² up to 5G6.0 mm² and beyond, covering common 3.0 kW, 3.7 kW, 7.4 kW, 11 kW, and 22 kW AC charging programs. Multiple manufacturers and suppliers market H07BZ5 F as suitable for AC charging up to 22 kW at 32 A.

Durable Sheath

Available with TPU / PUR type high durability sheath platforms. Industry sources commonly highlight abrasion resistance, oil resistance, UV resistance, and flexibility as major benefits of these EV cable constructions.

OEM / ODM Ready

Supports custom conductor structure, signal core count customization, custom length, and project based cable integration for portable EVSE and wallbox programs.

YDCHARGE AC EV Charging Cable Platform

A professional EVSE component cable family developed for portable EV chargers, AC wallboxes, and charging stations.

The YDCHARGE AC EV Charging Cable platform is a professional EVSE component cable family developed for portable EV chargers, AC wallboxes, and AC charging stations. It is designed for BEV and PHEV charging products that require a reliable cable platform under the EN 50620 / IEC 62893 system. Industry references consistently group H05BZ5-F, H05BZ6-F, H07BZ5-F, and H07BZ6-F under this AC EV charging cable standard family.

This product family is positioned as a core cable component platform. It is distinct from complete chargers. Its purpose is to provide the power and signal transmission layer between the charging control architecture and the EV side or infrastructure side AC charging interface.

Standard System and Application Logic

Standard Structure:

  • H05BZ5-F / H05BZ6-F: 300/500V rated for lower voltage class applications
  • H07BZ5-F / H07BZ6-F: 450/750V rated for higher voltage and power projects
  • Alignment with EN 50620:2017 and IEC 62893 series standards

Selection Logic:

  • H05 series: Lighter single phase AC charging architectures
  • H07 series: Higher voltage and heavier duty three phase systems
  • Suitable for both Mode 2 and Mode 3 charging architectures

Typical Configuration Selection

Single Phase Programs

  • 3G1.5 mm²: Lighter duty applications
  • 3G2.5 mm²: Mainstream 16A class portable charging
  • 3G6.0 mm²: 32A / 7.4 kW high power single phase charging
  • Supports conductor ranges up to 35 mm² for H07 family

Three Phase Programs

  • 5G2.5 mm²: 11 kW / 16A three phase
  • 5G6.0 mm²: 22 kW / 32A three phase
  • Mainstream wallbox and portable three phase EVSE focus
  • Optimized for low voltage drop in high power charging

Signal and Control Flexibility

Core customization options:

  • n = 0: Power only architectures
  • n = 1 or 2: CP / PP related control logic
  • n = 3 to 8: Advanced NTC monitoring, sensing, and communication
  • Supports safety accurate charging control protocols

Material and Sheath Strategy

Platform material advantages:

  • BZ5: Premium TPU / PUR like flexible, wear resistant platform
  • BZ6: Project oriented alternative for industrial or fixed installs
  • Resistant to oil, UV, ozone, weathering, and chemicals
  • Maintains high flexibility at low temperatures

Engineering Performance Positioning

Conductor and Insulation

  • Bare or tinned copper stranded conductors
  • Class 5 flexible conductor construction
  • XLPE / EV grade insulation systems
  • Optimized routing for combined power and signal lines

Mechanical Application

  • Suitable for repeated bending and coiling
  • Engineered for trailing cable use in portable EVSE
  • Minimum bending radius around 5D
  • Durable in harsh outdoor and workshop environments

Compliance and OEM Value

Designed for AC EV charging projects requiring alignment with EN 50620:2017 and IEC 62893 series standards.

Single phase and three phase support
Customizable signal core counts
TPU / PUR premium sheath options
TÜV oriented and RoHS project support
Standard aligned AC compatibility
Modular platform for multiple product lines

AC EV Charging Component Platform

Its strongest value lies in being a modular AC charging cable platform that can support multiple product programs without forcing buyers to source different cable families from multiple suppliers.

Tell us your required conductor structure and signal core configuration, and we will recommend the right H05/H07 cable setup for your AC EVSE program.

AC EV Charging Cable Platform Technical Specifications

AC EV Charging Cable Platform Overview

Cable Model Standard Designation Rated Voltage Typical Conductor Range Signal / Control Cores
H05BZ5-F 62893 IEC 121 300/500V 3G1.5 mm² to 2.5 mm² n × 0.5 to 1.0 mm²
H05BZ6-F 62893 IEC 122 300/500V 3G1.5 mm² to 2.5 mm² n × 0.5 to 1.0 mm²
H07BZ5-F 62893 IEC 123 450/750V 3G to 5G, 2.5 mm² to 35 mm² n × 0.5 to 1.0 mm²
H07BZ6-F 62893 IEC 124 450/750V 3G to 5G, 2.5 mm² to 16 mm² n × 0.5 to 1.0 mm²

This structure is broadly consistent with commercial and technical references describing the IEC 62893 family and EN 50620 cable designations.

Typical Application Matrix

Conductor Structure Recommended Cable Family Typical Current Class Typical Power Use Case Typical Application
3G1.5 mm² H05BZ5-F / H07BZ5-F up to 13A class ~3.0 kW single-phase Light-duty portable EV charging
3G2.5 mm² H05BZ5-F / H07BZ5-F 16A to 20A class 3.7 to 4.6 kW Mainstream portable EVSE
3G4.0 mm² H07BZ5-F / H07BZ6-F 25A class ~5.8 kW Custom higher-current single-phase charging
3G6.0 mm² H07BZ5-F / H07BZ6-F 32A class 7.4 kW High-power single-phase wallbox / EVSE
5G1.5 mm² H07BZ5-F / H07BZ6-F 13A class ~9.0 kW Lower-power three-phase charging
5G2.5 mm² H07BZ5-F / H07BZ6-F 16A class 11 kW Mainstream three-phase portable EVSE
5G4.0 mm² H07BZ5-F / H07BZ6-F 25A class ~17 kW Mid-power industrial three-phase charging
5G6.0 mm² H07BZ5-F / H07BZ6-F 32A class 22 kW High-power three-phase charging

The 11 kW and 22 kW positioning is especially well aligned with common H07BZ5-F AC charging applications in the market.

Material and Environmental Positioning

Core Standards EN 50620:2017 / IEC 62893 series
Conductor Material Bare or tinned copper stranded
Conductor Flexibility Class 5 or comparable flexible construction
Insulation EV-grade / XLPE-oriented insulation platform
Sheath Options TPU / PUR-type high-durability or project-oriented alternatives
Bending Radius Approx. 5D positioning
Environmental Positioning UV, oil, abrasion, ozone, and weather resistance
Certification Positioning TÜV-oriented, RoHS, and REACH-facing project support

These attributes are consistently highlighted across multiple technical references and supplier product sheets for H05BZ5-F / H07BZ5-F EV charging cables.

AC EV Charging Cable FAQs

B2B OEM/ODM Frequently Asked Questions

Product Fundamentals & Standards

Q1. What is this AC EV cable designed for?
It is designed as a core AC charging cable platform for portable EV chargers, wallboxes, and AC charging stations.
Q2. Is this product a complete charger?
No. This product is a cable component platform, not a complete charger.
Q3. What standards does this cable family align with?
It is positioned around EN 50620:2017 and the IEC 62893 series, which are widely referenced for AC EV charging cable families including H05BZ5-F and H07BZ5-F.

Technical Classifications

Q4. What is the difference between H05 and H07?
The cleanest distinction is voltage class and application level. H05 is typically positioned at 300/500V, while H07 is typically positioned at 450/750V and is better suited to heavier-duty and higher-power AC charging projects.
Q5. What is the difference between BZ5 and BZ6?
The cleanest commercial distinction is sheath and project positioning. BZ5 is commonly marketed as the higher-flex, more premium outdoor-use platform, while BZ6 is typically used for project-specific alternatives depending on installation and cost targets. This distinction is partly project- and manufacturer-dependent.

Application Recommendations

Q6. Which cable is recommended for 7.4 kW single-phase charging?
A practical recommendation is H07BZ5-F 3G6.0 mm² + signal cores as required.
Q7. Which cable is recommended for 11 kW three-phase charging?
A practical recommendation is H07BZ5-F 5G2.5 mm² + signal cores as required.
Q8. Which cable is recommended for 22 kW three-phase charging?
A practical recommendation is H07BZ5-F 5G6.0 mm² + signal cores as required. H07BZ5-F is commonly marketed for AC charging up to 22 kW at 32 A.

Engineering & Material Features

Q9. Why are additional signal cores important?
Because AC EV charging systems may require CP, PP, NTC, or other auxiliary signal paths for safe charging control and monitoring. Multiple technical references describe these cable families as including pilot or control cores.
Q10. What material advantages should be emphasized?

Emphasize:

  • abrasion resistance
  • oil resistance
  • UV resistance
  • weather resistance
  • flexibility at low temperature
  • suitability for repeated bending and portable use

B2B Strategy & OEM Value

Q11. Is this suitable for OEM and ODM projects?
Yes. It is highly suitable for OEM, ODM, and private label EVSE cable programs.
Q12. What should be emphasized on the website?
Emphasize: EN 50620 / IEC 62893 compliance positioning, H05 and H07 family coverage, single phase and three phase compatibility, custom signal core count, TPU / PUR oriented durability, 11 kW and 22 kW application fit, and OEM / ODM suitability.
Q13. What should not be written on the website?
Do not describe it as: a complete charger, a finished EVSE unless that is the actual shipped product, a generic industrial cable without EV charging context, or a one-size-fits-all solution regardless of current, voltage, or phase architecture.
Q14. What is the cleanest way to position this model on a B2B website?
As a professional AC EV charging cable platform for portable EVSE, wallboxes, and AC charging stations, supporting EN 50620 / IEC 62893 alignment, single phase and three phase architectures, premium durable sheath options, and OEM / ODM integration programs.

Tell us your required conductor structure and signal core configuration, and we will recommend the right H05/H07 cable setup for your AC EVSE program.