YDCHARGE Three-Phase Mode 2 EV Charger IC-CPD PCBA

YDCHARGE Three-Phase 32A Mode 2 IC-CPD PCBA Platform

A high-integration control board platform engineered for 22 kW Mode 2 portable EV charger development.

Built for OEM and ODM customers seeking high-power three-phase control, customizable firmware, and a compliance-ready platform, this three-phase IC-CPD PCBA enables faster development of smart, market-ready portable EV chargers.

High-Power Architecture

Compact 137 x 66 x 40 mm form factor optimized for three-phase 32A portable EVSE designs with industrial-grade relay integration.

Advanced Charging Logic

Project-based support for adjustable current, scheduled charging, delay start, tariff-related functions, and energy management logic.

Smart UI & Connectivity

Flexible firmware structure for multi-language UI, branded user interaction, and optional smart connectivity features.

Global Market Adaptation

Developed for portable EV charger platforms targeting international connector standards and regional market variants.

YDCHARGE Three-Phase 32A Mode 2 IC-CPD PCBA Platform

High-Power Control Board Engineered for 22 kW Portable EV Charger Development

Built for OEM and ODM programs, this industrial-grade PCBA combines three-phase charging control, advanced protection architecture, smart menu logic, and global standard adaptability in a compact platform size of 137 x 66 x 40 mm. Unlike lower-power single-phase solutions focused primarily on slim packaging, this three-phase platform is developed around high-current handling, thermal stability, and intelligent energy control.

High-Power Architecture

Designed for three-phase 32A Mode 2 systems. The 137 x 66 mm layout maintains compact dimensions, while the 40 mm component height accommodates larger power components required for safe three-phase current control. The four high-power relay positions create a technically credible solution for advanced EVSE core platforms.

Smart Firmware & Logic

  • Adjustable current settings & Scheduled charging
  • Delay start & Tariff setting
  • Cost summary & Real-time data reset
  • Summary and usage statistics
  • Project-based non-grounding mode support

Flexible UI & Global HMI

Suitable for OLED, LCD, or LED-based UI integration. Supports multi-language firmware, brand-specific user interaction logic, and project-based interface expansion for smart accessories or identification modules. Adapts easily into different product tiers.

Global EV Charger Programs

Developed for projects targeting Type 2, Type 1, NACS, and GB/T variants through project-based adaptation. Aligned with IEC 62752 and IEC 61851 application requirements to streamline compliance development across multiple regional programs.

Built for OEM, ODM, SKD, and CKD Supply

This platform provides flexible supply formats to lower project risk for assembly customers. Firmware preloading, parameter presets, and branded UI logic can be supported before shipment to simplify local assembly and market launch.

PCB Only
Assembled PCBA
PCBA with Display
PCBA with RFID / Interface
Module-Based Supply

Commercialization Support Beyond Hardware

YDCHARGE supports B2B customers with related commercialization needs such as product definition support, localized documentation, branded UI adaptation, and project coordination. The YDCHARGE three-phase Mode 2 IC-CPD PCBA provides a reliable foundation for next-generation EVSE development targeting Europe and other high-power AC charging markets.

Three-Phase 32A Mode 2 IC-CPD PCBA Technical Specifications

Product Type: IC-CPD control board for portable EV charger.

Application: Three-phase Mode 2 portable EVSE development for OEM, ODM, SKD, and CKD programs.

General & Electrical Specifications
Product Name YDCHARGE Three-Phase 32A Mode 2 IC-CPD PCBA
Charging Mode & Phase Mode 2 / Three-phase
Rated Input Voltage 380-415 V AC, project-based regional adaptation available (50/60 Hz)
Rated Current & Power Up to 32A / Up to 22 kW
Current Adjustment Configurable multi-stage current setting
Mechanical & Hardware Architecture
PCB Dimensions 137 x 66 mm (Board Height: 40 mm max)
Mechanical Profile Compact platform footprint with high-power component architecture
Power Structure Industrial-grade relay layout for three-phase current control
Supply Format PCB only / assembled PCBA / PCBA + display / module-based supply
Firmware & Smart Features
Firmware Functions Current adjustment, scheduled charging, delay start, tariff setting, cost summary, data reset, usage statistics
UI & Language Support OLED / LCD / LED project-based compatibility; Multi-language firmware support
Smart Connectivity Project-based WiFi / Bluetooth / Tuya-ready architecture
Interface Expansion Project-based support for RFID / NFC / smart modules
Safety, Protection & Compliance
Protection Functions Over-voltage, under-voltage, over-current, over-temperature, leakage protection logic
RCD Concept Type A + DC 6 mA architecture support, project-based implementation
Special Functions Non-grounding mode support, fault code logic, parameter memory
EV Standard Adaptation Type 2 / Type 1 / NACS / GB/T project-based adaptation
Compliance Development Designed for IEC 62752 and IEC 61851 application development
Quality Control Project-based AOI / FCT process support for production supply
OEM/ODM Support Firmware customization, branded UI, preset parameters, documentation support
Supply Information
Available for PCB-only, assembled PCBA, and module-based supply for OEM, ODM, SKD, and CKD portable EV charger programs.

YDCHARGE Three-Phase 32A Mode 2 IC-CPD PCBA

B2B OEM/ODM Frequently Asked Questions

 

A. Product Positioning and Application

Q1. What is this three-phase Mode 2 IC-CPD PCBA used for?
This PCBA is designed as the core control and protection board for three-phase Mode 2 portable EV chargers, especially projects targeting 32A / 22 kW high-power charging.
Q2. Is this a complete portable EV charger or a PCBA platform?
This product is a PCBA platform, not only a finished charger. It can be supplied as PCB only, assembled PCBA, PCBA with display, or as part of a module-based solution depending on project needs.
Q3. Who is this product designed for?
It is designed for OEM brands, ODM development programs, SKD/CKD assembly customers, charger manufacturers, engineering teams, and EVSE solution providers.
Q4. Is this suitable for new 22 kW portable charger development?
Yes. It is specifically suitable for high-power portable EV charger projects that need a ready control platform for faster development and market entry.
Q5. What is the main advantage of using this platform instead of developing from scratch?
It helps reduce hardware and firmware development time, lowers engineering risk, and makes it easier to build regional or branded charger variants on one scalable control architecture.

B. Electrical Specifications and Platform Capability

Q6. What charging mode does this PCBA support?
This platform is designed for Mode 2 portable EV charger applications with integrated IC-CPD control and protection logic.
Q7. Is this a single-phase or three-phase charger board?
This version is a three-phase Mode 2 IC-CPD PCBA, developed for portable chargers up to 32A / 22 kW depending on the final charger configuration.
Q8. What voltage range is supported?
It is typically designed for 380 to 415 V AC three-phase applications, with project-based regional adaptation depending on the target market.
Q9. What is the maximum current supported?
The platform is designed for up to 32A three-phase charging, subject to the complete charger architecture, including relays, connectors, cables, and enclosure design.
Q10. What charging power can be achieved?
In a typical three-phase 32A application, the platform supports up to 22 kW, depending on local supply voltage and complete product design.
Q11. Does it support adjustable charging current?
Yes. The platform supports configurable multi-stage current adjustment for different charger strategies and market requirements.

C. Firmware, Smart Functions, and HMI

Q12. What smart charging functions can this PCBA support?
Depending on project scope, the firmware can support adjustable current, scheduled charging, delay start, tariff setting, cost summary, energy statistics, real-time data reset, and summary logic.
Q13. Can the firmware be customized?
Yes. We support project-based firmware customization, including user logic, charging behavior, feature activation, menu structure, and regional operating requirements.
Q14. Can the UI be customized for our brand?
Yes. The platform supports brand-oriented HMI customization, including menu structure, icons, displayed parameters, language logic, and wording style.
Q15. What display types can it support?
The platform can be adapted for OLED, LCD, or LED-based interfaces, depending on your product design and hardware strategy.
Q16. Does it support multi-language firmware?
Yes. Multi-language support is available for region-specific charger programs and global market deployment.
Q17. Can the fault codes and warning messages be customized?
Yes. Fault logic, warning prompts, fault code structure, and display wording can be customized according to your user experience and after-sales requirements.
Q18. Does it support app connectivity or smart modules?
Project-based support is available for WiFi, Bluetooth, and Tuya-related smart connectivity, as well as selected interface expansion such as RFID or NFC-related accessory integration.

D. Safety, Protection, and Compliance Development

Q19. What protection functions are supported?
The platform can support over-voltage, under-voltage, over-current, over-temperature, and leakage-related protection logic, depending on the complete charger design.
Q20. Does it support residual current protection?
The architecture can support Type A + DC 6 mA protection concepts or other project-based protection strategies depending on the final implementation.
Q21. Is this PCBA developed for IEC 62752 applications?
Yes. The platform is intended for Mode 2 IC-CPD charger development and is suitable for projects aligned with IEC 62752 and related IEC 61851 application requirements.
Q22. Does the PCBA itself guarantee certification?
No. Certification applies to the complete charger system, including the enclosure, cable, connector, firmware, labeling, and full production configuration.
Q23. Can you support certification planning for different regions?
Yes. We can support project-based compliance planning for Europe, the UK, North America, and other target markets depending on your charger program.

E. Global Standards and Market Adaptation

Q24. Which EV connector standards can this platform support?
This PCBA can be adapted for projects using Type 2, Type 1, Tesla NACS, and GB/T, depending on your target market and product strategy.
Q25. Can one PCBA platform support multiple regional charger SKUs?
Yes. One platform can often support multiple market versions through changes in firmware, connector type, UI language, cable configuration, and project-specific features.
Q26. Is this platform suitable for global high-power portable EV charger planning?
Yes. This is one of the key strengths of the platform. It helps customers build three-phase portable charger families for multiple markets with less duplicated development work.

F. Mechanical Integration and Delivery Format

Q27. What are the PCB dimensions?
This three-phase version is designed around a compact 137 x 66 mm footprint with a 40 mm component height to support high-power relay architecture and thermal layout.
Q28. Why is the 40 mm height important?
The 40 mm profile reflects the integration of higher-power components required for safe and stable three-phase 32A charging, including relay height and thermal spacing considerations.
Q29. What delivery formats are available?
Supply can be arranged as PCB only, assembled PCBA, PCBA with display, or module-based supply, depending on project requirements and assembly capability.
Q30. Is this suitable for OEM, ODM, SKD, and CKD projects?
Yes. This platform is specifically suitable for OEM and ODM product development, and also for SKD and CKD assembly programs requiring flexible delivery and faster local integration.

Tell us your target market, connector standard, power target, UI requirements, and supply format, and we will recommend the right three-phase IC-CPD PCBA configuration for your portable EV charger program.