RK3568 EV Charging Controller Board ODM Case Study: Building a Smart Energy Terminal Platform

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★ Customer Success Story
RK3568 Smart Charging Station Control Mainboard ODM Solution

RK3568 Smart Charging Station Control Mainboard ODM Case Study for EV Charging Solutions

KICKPI developed a customized RK3568 embedded control mainboard solution for intelligent charging stations. The project integrated Android/Linux system development, charging protocol communication, industrial interface expansion, display control, network connectivity, and long-term stable operation optimization, helping customers build reliable smart EV charging equipment for commercial and industrial applications.

Industry
EV Charging
New Energy Equipment
Processor
Rockchip RK3568
Operating System
Android / Linux
Application
Smart Charging Station
Charging Terminal HMI
Connectivity
Ethernet
WiFi
RS485 / CAN
Project Result
ODM Development
Mass Production Support

Introduction

The rapid adoption of electric vehicles is driving demand for smarter and more connected charging infrastructure. Modern EV charging stations are no longer simple power delivery devices. They have evolved into intelligent terminals that require:

  • Interactive user interfaces
  • Real-time communication
  • Payment integration
  • Remote device management
  • Cloud connectivity
  • Long-term industrial reliability

For EV equipment manufacturers, developing a dedicated control system from scratch can involve significant challenges, including hardware design, embedded software development, communication protocol integration, and reliability testing.

To accelerate product development, KICKPI worked with an equipment manufacturer to develop a customized RK3568-based smart charging control board solution.

The final ODM platform integrated:

  • High-performance ARM computing
  • Touchscreen HMI
  • Multiple communication interfaces
  • Industrial control connectivity
  • Linux embedded system
  • Remote management capability

The solution enabled the customer to quickly transform a traditional charging device into an intelligent connected energy terminal.

Project Background

Building a New Generation of Intelligent EV Charging Terminals

The customer is a renewable energy equipment company specializing in EV charging infrastructure.

With increasing market demand for connected charging services, the company planned to upgrade its existing charging products with a more intelligent embedded controller.

The new charging terminal needed to support deployment in multiple environments, including:

  • Residential communities
  • Commercial parking facilities
  • Industrial parks
  • Public charging stations

Unlike traditional chargers, the new platform needed to provide both user-facing interaction and backend operational management.

From the user perspective, the system needed to support:

  • Touchscreen operation
  • Charging status display
  • RFID card authentication
  • QR code payment
  • Real-time charging information

From the operator perspective, the system needed:

  • Remote monitoring
  • Cloud connectivity
  • Charging data management
  • Firmware upgrade capability
  • Multi-device management

The customer was looking for a reliable embedded computing platform that could serve as the core controller for multiple charging product models.

Customer Challenges

Challenge 1: Developing a Flexible Embedded Platform for Complex EV Charging Applications

A smart charging terminal requires communication between multiple hardware modules.

The controller needs to exchange data with:

  • Energy meters
  • Charging modules
  • Payment systems
  • Network platforms
  • External sensors

Different components often use different communication protocols, making system integration complicated. The customer required a hardware platform that could provide:

  • Multiple industrial interfaces
  • Stable communication performance
  • Flexible expansion capability

Challenge 2: Ensuring Reliable Operation in Outdoor Environments

Unlike indoor consumer devices, EV charging equipment is typically installed outdoors. The controller must continuously operate under challenging conditions, including:

  • Temperature fluctuations
  • Voltage instability
  • Electrical interference
  • Static discharge
  • Long operation cycles

Therefore, the control board required industrial-level reliability design rather than a standard consumer motherboard.

KICKPI’s ODM Solution

Creating an RK3568-Based Intelligent Charging Controller Platform

Based on the customer’s requirements, KICKPI selected the Rockchip RK3568 processor as the core computing platform.

The RK3568 platform provides:

  • Quad-core ARM Cortex-A55 processor
  • Powerful multimedia capability
  • Rich peripheral interfaces
  • Mature Linux ecosystem
  • Excellent balance between performance and power consumption

This made it an ideal choice for:

  • EV charging terminals
  • Industrial HMI systems
  • Smart energy devices
  • IoT control platforms

Hardware Customization

KICKPI customized the embedded controller board according to the customer’s product requirements.

Core Processing Platform

The customized board integrated:

  • RK3568 processor
  • Memory and storage design
  • Power management system
  • Display interfaces
  • Industrial communication interfaces

The design provided sufficient computing capability for:

  • User interface rendering
  • Charging data processing
  • Network communication
  • Device management

Multi-Communication Integration

To support different deployment environments, KICKPI integrated multiple connectivity options:

4G LTE

For remote locations without wired network infrastructure.

Ethernet

For stable commercial and industrial deployments.

WiFi

For flexible wireless connectivity.

Together, these communication options enabled:

  • Cloud platform connection
  • Remote monitoring
  • Data synchronization
  • OTA updates

Industrial Interface Expansion

The controller was designed with industrial communication capability:

Supported interfaces:

  • RS485
  • CAN Bus
  • UART
  • GPIO

These interfaces allow the charging terminal to communicate with:

  • Charging control modules
  • Electricity meters
  • Sensors
  • External industrial equipment

Embedded Software Development

Customized Linux System

Beyond hardware development, KICKPI provided embedded software customization.

Development included:

  • Linux BSP adaptation
  • Driver integration
  • Peripheral configuration
  • System optimization

The customized Linux environment provided a stable foundation for application development.

Communication Protocol Integration

To support smart charging operations, KICKPI optimized the communication framework.

The system enabled:

  • Charging status monitoring
  • Device data reporting
  • Remote parameter configuration
  • OTA firmware upgrade

This allowed the customer to integrate the terminal into its existing management platform.

System Architecture

The complete system architecture includes:

User Interaction Layer

LCD touchscreen terminal:

  • Charging information display
  • Payment interface
  • User operation

Control Layer

RK3568 Embedded Controller:

  • Data processing
  • Communication management
  • System control

Device Layer

Industrial interfaces:

  • RS485
  • CAN
  • Sensors
  • Charging modules

Cloud Layer

Remote platform:

  • Device monitoring
  • Data analysis
  • OTA management

Development Highlights

1. Modular ODM Design for Product Expansion

One of the key requirements was supporting multiple charging product models.

Instead of developing separate controllers for each product, KICKPI designed a modular hardware platform.

The same RK3568 architecture can be adapted for:

  • Different display sizes
  • Different communication modules
  • Different charging scenarios

This significantly reduces future development costs.

2. Industrial Reliability Optimization

To meet outdoor deployment requirements, KICKPI optimized:

Power Protection

Including:

  • Voltage protection
  • Surge protection
  • Stable power management

Signal Protection

Including:

  • ESD protection
  • Interface isolation
  • EMC optimization

Thermal Management

Ensuring:

  • Stable operation
  • Long-term reliability

Project Results

After completing hardware customization, embedded software development and system integration, KICKPI delivered a complete smart charging controller platform.

The final solution achieved:

Complete RK3568 Charging Control Board

Supporting:

  • Touch display
  • Industrial interfaces
  • Network communication
  • Embedded Linux

✔ Connected Energy Management Capability

The system supports:

  • Remote monitoring
  • Cloud connectivity
  • OTA updates
  • Device management

✔ Reliable Industrial Deployment

Through optimized hardware design, the platform meets requirements for:

  • Outdoor installation
  • Continuous operation
  • Commercial deployment

Customer Benefits

Accelerating the Transition from Traditional Charger to Smart Energy Platform

The KICKPI ODM solution helped the customer reduce development complexity and accelerate product commercialization.

Faster Product Development

By leveraging KICKPI’s existing embedded platform expertise, the customer avoided starting from zero.

The development process was accelerated through:

  • Mature ARM platform
  • Existing Linux ecosystem
  • Customized hardware design
  • Engineering support

Reduced Engineering Risk

KICKPI handled key technical challenges including:

  • Hardware customization
  • Communication integration
  • System optimization
  • Reliability enhancement

Allowing the customer to focus on product commercialization.

Scalable Product Strategy

The modular RK3568 platform enables future product expansion across:

  • Residential EV chargers
  • Commercial charging stations
  • Smart parking systems
  • Energy management terminals

Why Choose KICKPI for Embedded ODM Development?

KICKPI provides complete embedded product development services for companies building intelligent hardware products.

Our capabilities include:

Hardware Engineering

  • ARM motherboard design
  • PCB customization
  • Interface expansion
  • Power optimization

Embedded Software

  • Linux BSP customization
  • Driver development
  • System integration
  • Application support

Production Support

  • Prototype development
  • Engineering validation
  • Mass production assistance

From concept to commercial deployment, KICKPI helps customers build reliable embedded products faster.

Conclusion

The development of intelligent EV charging infrastructure requires more than a powerful processor.

It requires a complete embedded ecosystem combining:

  • Reliable hardware
  • Flexible communication
  • Industrial interfaces
  • Customized software
  • Long-term operational stability

Through the RK3568 smart charging control board ODM project, KICKPI helped an EV equipment manufacturer create a scalable and connected charging terminal platform.

With extensive experience in ARM-based embedded solutions, KICKPI continues to support global customers in developing industrial, IoT, and smart energy products.

Frequently Asked Questions

Learn how KICKPI provides RK3568 smart charging station ODM solutions from hardware customization to mass production.

Why is RK3568 suitable for smart charging station development?

RK3568 features a quad-core Cortex-A55 processor, powerful multimedia capability, low power consumption, and rich industrial interfaces. It is ideal for smart charging stations, EV charging terminals, HMI control panels, and intelligent energy management devices.

Does KICKPI provide RK3568 charging station mainboard customization?

Yes. KICKPI provides complete RK3568 ODM services including hardware design, PCB customization, Android/Linux BSP development, driver integration, communication protocol adaptation, and system optimization.

What communication interfaces can RK3568 charging solutions support?

RK3568 charging station solutions support multiple industrial communication interfaces including RS485, CAN bus, Ethernet, WiFi, Bluetooth, UART, and GPIO expansion for connecting charging modules, meters, sensors, and external controllers.

Can KICKPI customize the HMI display system for charging stations?

Yes. KICKPI supports customized HMI solutions including touchscreen integration, UI design, Android application customization, display adaptation, and user interaction optimization for commercial charging terminals.

What applications can RK3568 charging station solutions support?

RK3568 embedded platforms can be used for EV charging piles, commercial charging stations, parking charging terminals, solar energy charging equipment, battery management terminals, and other intelligent energy devices.

Does KICKPI support mass production of smart charging devices?

Yes. KICKPI provides a complete development process including prototype verification, engineering testing, hardware optimization, production support, and scalable manufacturing services for charging equipment manufacturers.

Build Your Smart Charging Solution with KICKPI

From RK3568 embedded mainboard customization and Android/Linux system development to ODM design and mass production, KICKPI provides reliable solutions for EV charging equipment manufacturers and intelligent energy companies.

Contact KICKPI Engineering Team

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