E-Mobility & Charging Infrastructure
Modern charging infrastructure no longer consists of individual charge points but of connected systems with a user interface, connectivity, local data processing and central service access. Distributed installations require scalable platforms that flexibly combine embedded computing, edge analysis, secure connectivity and operating concepts. Atlantik Elektronik supplies the building blocks for the charging station and backend connection: System-on-Modules, touch displays, gateways and cellular modules.
Back to overview: Automotive & E-Mobility.
M483SGCAE Arm Cortex M4
- Concept: High-performance Arm® Cortex®-M4F microcontroller for embedded designs focused on real-time control, communications, and energy-efficient processing
- Configuration: Up to 192 MHz, DSP extension, 256 KB Flash, 128 KB SRAM, up to 3× CAN 2.0B, 2× 12-bit 5 MSPS ADC, USB Full-Speed OTG, and camera interface
- Use case: Suitable for motor control, industrial control, battery management system, EV charging, and embedded systems with high communication and analog density
- Development focus: Combination of fast signal processing, robust communication integration, and embedded security for production-oriented industrial and power designs
- Design note: Align ADC/PWM architecture, CAN topology, security concept, and power design with the target application early in development
Nu-Maker Bord M463KG
- Concept: Evaluation and prototyping board for embedded designs based on the NuMicro M463 series with integrated debugging and programming support
- Configuration: Target board with M463KGCAE, on-board Nu-Link2-Me, Arduino UNO compatible headers, extension connectors, and multiple power supply options
- Use case: Suitable for evaluation, prototyping, and validation of IoT, industrial, and embedded control applications based on Cortex-M4
- Development focus: Fast project start with direct debugging, programming, peripheral integration, and power-consumption monitoring on one compact development platform
- Design note: Align header usage, power concept, debug access, and attached shield or peripheral topology with the target application early in development
NuMaker-GestureAI-M55M1
Manufacturer: NuvotonMPN: NuMaker-GestureAI-M55M1
- Concept: AI microcontroller and evaluation platform for endpoint AI applications focused on recognition, audio, and sensor fusion
- Configuration: Based on NuMicro M55M1 with Arm® Cortex®-M55 up to 220 MHz, Arm Ethos™-U55 NPU, up to 110 GOPS, Helium, DSP extensions, and double-precision FPU
- Use case: Suitable for human presence detection, robotics, smart toys, sensor hubs, smart appliances, PC accessories, and AIoT designs
- Development focus: Local AI acceleration, fast signal evaluation, and practical development for audio, communications, DSP, machine learning, and embedded vision workflows
- Design note: Align memory requirements, camera path, audio front end, low-power operation, and security architecture with the target application before release
NuMaker-M483KG
- Concept: Evaluation and prototyping board for embedded designs based on the M483 platform with integrated debugging and programming support
- Configuration: M483 platform with on-board Nu-Link2-Me, Arduino UNO compatible extension connectors, full-pin expansion, and ammeter connector for power monitoring
- Use case: Suitable for evaluation, prototyping, and validation of embedded, industrial, and communications applications based on Cortex-M4
- Development focus: Fast project start with direct SWD debugging, programming, VCOM output, and product-oriented power analysis on one compact platform
- Design note: Align header usage, power architecture, debug access, and attached shield or peripheral topology with the target application early in development
Nuvoton - M0A23EC1ACU
- Arm Cortex M0 MCU for Automotive incl. AECQ100
Matching products & platforms at ATE
- System-on-Modules (SOM/CoM): compute core for charge-point controllers with edge intelligence
- Touch Displays: rugged user interface for outdoor use on the charging station
- Cellular Routers & Gateways: secure connection to backend, billing and load management
- Cellular Modules: embedded connectivity for distributed charge points
- Infrastructure & Outdoor Antennas: reliable reception at sites without fixed-line connection
- Qualcomm Technologies: Dragonwing™ as a platform base for edge AI, computing and connectivity
From selection to series production – with one partner
From the charge-point controller to the backend connection, our FAEs support compute selection, HMI integration and connectivity. Request your project now.
Frequently asked questions
What does a modern charge point consist of technically?
A charge-point controller with a compute core, a user interface, secure connectivity to the backend and local intelligence for load management and payment.
Why local data processing at the charging station?
It keeps operation, billing and load management functional even with fluctuating grid connectivity and reduces dependence on a permanent cloud connection.
How are charge points connected without a fixed line?
Through cellular routers and modules with suitably designed outdoor antenna technology. Our FAEs support site and antenna design.
Are the components suitable for outdoor use?
Yes – we select displays, compute and antennas with the right temperature and protection profile for permanent outdoor operation.
Not found the right product?
Our portfolio is larger than the web shop. Tell us your requirement – we will find the right platform, across all manufacturers.