I will design ev traction inverter, psm foc motor controller pcb and power electronics
Automotive and EV Hardware Engineer VCU ECU BMS Power Electronics
About this Gig
Need reliable hardware to control your EV traction motor? I can design a custom inverter or motor-controller PCB around your voltage, current, motor and control requirements.
WHAT I OFFER
- EV traction inverter PCB
- BLDC & PMSM motor controller
- Three-phase inverter hardware
- FOC motor-control hardware
- MOSFET/IGBT power stages
- Gate-driver circuits
- Current & voltage sensing
- Protection and power-management circuits
- EV powertrain electronics
WHAT I DELIVER
Complete schematics, PCB layout, BOM, Gerber/production files and design documentation based on your requirements.
TOOLS & TECHNOLOGIES
Altium Designer, KiCad, Eagle, STM32, motor-control interfaces, gate drivers, MOSFET/IGBT power stages and embedded hardware technologies.
WHY CHOOSE ME
I focus on practical, organized and manufacturing-ready EV power electronics designed around your actual system requirements.
Whether you need a traction inverter, BLDC/PMSM controller or motor-control PCB, I can help turn your powertrain requirements into practical hardware.
Send your motor and power specifications and let's develop your EV powertrain electronics.
FAQ
Can you design an EV traction inverter?
Yes. I can develop the PCB hardware architecture for an EV traction inverter based on the required motor, voltage, current and control specifications.
Do you design BLDC motor controllers?
Yes. I can design suitable BLDC motor-controller hardware including the power stage, gate driving, sensing and MCU interface.
Can you work with PMSM motors?
Yes. PMSM motor-control hardware can be developed according to the required control architecture and system specifications.
Can you design a three-phase inverter?
Yes. I can design three-phase inverter hardware with appropriate switching devices, gate drivers, sensing and protection.
Can you integrate STM32?
Yes. STM32 can be integrated where appropriate for the required motor-control and embedded architecture.
Do you design high-current PCB hardware?
Yes, for suitable applications. The PCB architecture can be designed around the required current, power stage, thermal and mechanical requirements.
What do you need before starting?
Provide the motor type, battery voltage, maximum current/power, control method, switching requirements, board dimensions and any existing motor-control specifications or documentation.

