Motor Control Engineering
BLDC, FOC, inverter design, gate drivers, and motor drive hardware for industrial & robotics applications.
BLDC Motor Control & FOC Fundamentals
Master brushless DC motor control and Field-Oriented Control from theory to hardware implementation on STM32.
Learn more →Advanced Motor Drive Design
Inverter topology, gate driver design, thermal management, and high-current PCB layout for motor drives.
Learn more →PCB Design & Power Electronics
High-current PCB layout, multi-layer stackup, impedance control, and DFM for motor controllers.
Embedded Firmware Engineering
STM32, FreeRTOS, motor control firmware, CAN bus, Modbus, and real-time communication protocols.
Real-Time Systems & Communication Protocols
FreeRTOS internals, CAN 2.0B, Modbus RTU, SPI/I2C protocols in real industrial embedded systems.
Learn more →Embedded Firmware for Motor Control
STM32 HAL, FreeRTOS task architecture, encoder interfaces, and PWM generation for motor control firmware.
Learn more →Robotics & Automation Systems
Kinematics, servo control, AMR architecture, sensor fusion, and real robotics system design.
EV Drivetrain Systems
EV inverter design, BMS architecture, motor selection, and vehicle-level powertrain integration.
Hardware Product Development
Concept to production: schematic, layout, BOM, prototyping, enclosure design, and DFM.
PCB Prototyping & Bring-Up
Board assembly, soldering, debugging, bring-up procedures, and validation techniques for custom PCBs.
Learn more →Hardware Product Development Bootcamp
Full product lifecycle: concept → schematic → PCB → enclosure → BOM → prototyping → production handoff.
Learn more →