Commercial 44kW Dual-Port Mode 3 PCBA Controller Board

YDCHARGE Commercial 44kW Dual-Port Mode 3 PCBA Controller Board

A flagship commercial control platform engineered for dual-output Mode 3 AC EV charging stations up to 44kW total power, with two independent 22kW charging ports.

Built for CPOs, property charging operators, and OEM/ODM charger manufacturers, this large-format 180 x 180 mm PCBA combines dual-channel power control, single-node OCPP architecture, SaaS backend readiness, and advanced communication interfaces to accelerate deployment of high-ROI commercial charging systems.

Dual-Port Power Architecture

Supports two fully independent 22kW outputs on one board for efficient dual-socket or dual-gun commercial charging designs.

CSMS & Cloud Integration

Designed for Ampup, ChargeLab, Ampco, and OCPP-based backend ecosystems with support for centralized dual-port management.

Smart Network Connectivity

Supports 4G LTE, Ethernet, WiFi, and Bluetooth for reliable site communication and remote operation.

OEM/ODM & SKD/CKD Ready

Suitable for white-label firmware, socket-version commercial chargers, and scalable global assembly programs.

YDCHARGE Commercial 44kW Dual-Port Mode 3 PCBA Controller Board

A flagship control platform developed for high-traffic commercial AC EV charging stations.

Designed around a 180 x 180 mm square-format architecture, this board supports up to 44kW total charging power with two independent 22kW outputs, making it an ideal solution for dual-socket and dual-gun commercial charging systems.

For commercial EV charging projects, the value of a dual-port platform goes far beyond hardware specification. Operators, property managers, and charger manufacturers are increasingly focused on parking-space ROI, site infrastructure efficiency, and faster SaaS backend deployment. The YDCHARGE dual-port platform is developed specifically to address those priorities, combining independent dual-channel power control, single-node OCPP architecture, commercial communication interfaces, and cloud-platform readiness in one scalable PCBA.

Designed for Dual-Port Commercial Charging ROI

In commercial infrastructure, dual-port AC charging is one of the most effective ways to increase site utilization without doubling installation cost. With one main power feed, one network node, and one charging column, operators can serve two parking spaces simultaneously.

The YDCHARGE platform reinforces this logic with its 180 x 180 mm square format, visually and structurally defining true dual-channel independence with symmetrical power sections for port A and port B.

Dual 22kW Independent Output Architecture

This platform is engineered for 44kW total power with dual independent 22kW outputs. Each port has its own power management path, safety logic, and metering-related control strategy.

This helps manufacturers build products with genuine dual-port commercial capability rather than simplified power sharing. Suitable for pedestal chargers and dual-socket wallbox systems where channel control and hardware credibility are critical.

SaaS Backend Readiness

Positioned for projects requiring compatibility with major platforms such as:

  • Ampup
  • ChargeLab
  • Ampco
  • OCPP 1.6J / 2.0.1-based systems

Single-Node OCPP

One OCPP node manages two charging ports. This reduces communication complexity, simplifies backend integration, and improves site economics. Operators benefit from lower network overhead and more efficient management of simultaneous charging sessions.

Smart Connectivity for Real Environments

Commercial sites demand stable communication in varied environments. Paths include:

  • 4G LTE & Ethernet LAN
  • WiFi & Bluetooth
  • Project-based OTA firmware management
  • Project-based app or local service logic

Advanced Dual-Port HMI & Interaction

Flexible interface planning for dual-port commercial products:

  • Dual-screen or split-screen UI logic
  • Shared RFID authorization & Independent RGB LED control
  • OLED / LCD / LED interface support
  • Smart tariff settings & Project-based menu logic

High-Reliability Power & Safety

  • Dual relay matrix structure
  • Precision metering per port
  • Type A + DC 6 mA protection concept
  • Relay adhesion detection & hardware redundancy
  • 22kW continuous-load support per channel
  • Project-based thermal sensing and fault handling

Built for Global OEM & ODM Programs

Structured for socket-version dual-port chargers and broader project-based AC programs. Supply includes:

  • PCB only or Assembled PCBA
  • Communication/interface module sets
  • Module-based supply for full charger integration
  • SKD / CKD project delivery

Built for High-ROI Charging Projects

For commercial fleets, public parking infrastructure, and operator-managed AC charging networks, the YDCHARGE dual-port platform offers a strong combination of hardware capability and deployment efficiency.

One installation point, two independent charging sessions, and faster monetization through integrated software architecture.

Commercial 44kW Dual-Port Mode 3 PCBA Technical Specifications

 
General & Application
Product Name YDCHARGE Commercial 44kW Dual-Port Mode 3 PCBA Controller Board
Product Type Dual-port commercial control board platform for AC EV charging station
Application Commercial dual-output Mode 3 EV charger development
Platform Positioning CPO-grade / OEM / ODM / SKD / CKD dual-port control platform
Charger Form Factor Support Dual-socket / dual-port commercial charger / socket version A and B / project-based cable version
Electrical & Power Architecture
Charging Mode Mode 3
Power Configuration Dual-output three-phase commercial AC charging
Total Max Charging Power Up to 44kW
Output Architecture Dual independent 22kW charging ports
Max Rated Current Up to 63A total / project-based dual-port allocation
Per-Port Power Up to 22kW per port
Load Management Automated load balancing ready
Hardware Architecture & Supply Format
PCB Dimensions 180 x 180 mm
Supply Format PCB only / assembled PCBA / PCBA + communication modules / module-based supply
Connectivity & CSMS Integration
Protocol Architecture Single-node OCPP 1.6J / 2.0.1-ready architecture
CSMS Compatibility Ampup / ChargeLab / Ampco-oriented project integration
Connectivity 4G LTE / Ethernet / WiFi / Bluetooth
App Integration Project-based smart app / local service logic support
Safety, Protection & Metering
Safety Functions Relay adhesion detection, dual-port protection logic, temperature management, fault monitoring
Metering Support Precision metering per port
Protection Concept Type A + DC 6mA project-based implementation per dual-port architecture
OEM/ODM & Compliance
Firmware Customization White-label firmware, parameter presets, dual-port UI logic
Quality Control 100% automated testing / project-based AOI and FCT process support
Compliance Development Designed for commercial dual-port AC charger platform development and market-specific compliance planning
Supply Information
Available for PCB-only, assembled PCBA, and module-based supply for OEM, ODM, SKD, and CKD dual-port commercial EV charging station programs.

YDCHARGE Commercial 44kW Dual-Port Mode 3 PCBA

B2B OEM/ODM Frequently Asked Questions

 

A. Product Positioning and Commercial Application

Q1. What is this 44kW dual-port Mode 3 PCBA used for?
This PCBA is designed as the core controller for commercial dual-output AC EV charging stations, especially projects requiring two independent charging ports, cloud connectivity, and operator-grade backend integration.
Q2. Is this a complete charging station or a PCBA-only product?
This product is a PCBA control platform for integration into commercial dual-port chargers. It is intended for OEM, ODM, SKD, CKD, and operator-oriented product development.
Q3. Who is this platform designed for?
It is designed for charging point operators, property charging solution providers, dual-port charger manufacturers, OEM and ODM customers, and commercial charging assembly partners.
Q4. Why is a dual-port AC charging platform valuable for commercial projects?
A dual-port platform helps operators serve two parking spaces with one installation node, improving hardware utilization, site efficiency, and return on infrastructure investment.
Q5. What is the main advantage of this platform compared with a single-port board?
Its main advantage is the combination of dual independent 22kW outputs, single-node backend architecture, commercial SaaS readiness, and shared installation efficiency.

B. Charging Power and Dual-Port Architecture

Q6. What charging mode does this PCBA support?
This platform is designed for Mode 3 AC dual-port charging systems.
Q7. What total power can it support?
It is developed for projects up to 44kW total power, depending on charger architecture and deployment requirements.
Q8. Does it provide two truly independent charging outputs?
Yes. The board is designed around a dual 22kW independent output architecture, enabling separate control logic for port A and port B.
Q9. What is the per-port charging capability?
Each output channel is designed for up to 22kW, depending on the final charger configuration and regional electrical conditions.
Q10. Does it support dual-port load management?
Yes. The platform is suitable for automated load balancing strategies and project-based dual-port power management logic.

C. CSMS, OCPP, and Commercial Backend Integration

Q11. Does this PCBA support OCPP?
The platform is developed with single-node OCPP 1.6J / 2.0.1-ready architecture for dual-port commercial charging applications.
Q12. What does single-node OCPP mean for a dual-port charger?
It means one device node can manage two charging ports, helping reduce communication overhead, simplify backend provisioning, and improve operational efficiency.
Q13. Is it suitable for Ampup integration?
Yes. The platform is positioned for Ampup-related commercial charging projects, depending on final software and deployment scope.
Q14. Is it suitable for ChargeLab integration?
Yes. The architecture is oriented toward ChargeLab-related commercial charging programs and similar CSMS ecosystems.
Q15. Can it work with Ampco-related projects?
Yes. The platform is suitable for Ampco-oriented deployment scenarios, depending on the target backend and project requirements.
Q16. Does it support OTA and remote platform lifecycle planning?
Project-based support is available for OTA firmware management planning and cloud-connected maintenance workflows.

D. Connectivity and Site Communication

Q17. What communication methods can this board support?
The platform is designed for 4G LTE, Ethernet, WiFi, and Bluetooth-related connectivity expansion.
Q18. Is it suitable for commercial sites with unstable local networking?
Yes. Support for 4G LTE and Ethernet makes it suitable for commercial locations where communication reliability is critical.
Q19. Can this platform support cloud-managed commercial charging networks?
Yes. This is one of its main strengths. It is designed for cloud-connected dual-port charging projects where billing, monitoring, and charger management are required.

E. HMI, RFID, and Dual-Port Interaction

Q20. What display interfaces can this dual-port board support?
The platform can support dual-screen, split-screen, OLED, LCD, and LED-based interfaces, depending on the charger design.
Q21. Does it support RFID user authorization?
Yes. The board can support shared RFID-based authorization logic for dual-port commercial chargers.
Q22. Can the UI be customized for our brand?
Yes. We support white-label firmware and branded UI logic, including dual-port interface structure, icons, menu layout, and language strategy.
Q23. Can it support independent LED status logic for each port?
Yes. The platform is suitable for independent RGB LED control per output channel, depending on the final charger design.
Q24. Can it support tariff setting and energy calculation?
Yes. The firmware can support tariff-related functions, energy calculation, and dual-port commercial menu logic depending on project definition.

F. Safety, Metering, and Reliability

Q25. What safety functions are supported?
The platform can support relay adhesion detection, dual-port protection logic, temperature management, fault monitoring, and project-based safety control functions.
Q26. Does it support metering per charging port?
Yes. The architecture is designed for precision metering per port, which is important for commercial billing and dual-session management.
Q27. Does it support Type A plus 6mA DC protection concepts?
Yes. The platform can support Type A + DC 6mA protection concepts depending on the final system design and project implementation.
Q28. Is this suitable for continuous commercial-duty charging?
Yes. It is developed for commercial-duty dual-port AC charging scenarios with stronger emphasis on reliability and utilization than basic residential products.

G. Global Market Adaptation and Supply

Q29. Can it support socket-version dual-port commercial chargers?
Yes. The platform is particularly suitable for dual-socket commercial chargers, including projects requiring independent port A and port B logic.
Q30. Is this suitable for OEM, ODM, SKD, and CKD programs?
Yes. This platform is specifically suitable for OEM and ODM dual-port charger development, and also supports SKD and CKD supply models for local assembly and regional rollout.

Tell us your target market, backend platform, dual-port charger type, connectivity requirements, and supply format, and we will recommend the right 44kW dual-port Mode 3 PCBA configuration for your commercial EV charging project.