Master electric vehicle design, battery systems, power electronics, motor control, embedded systems, and EV simulation using MATLAB, Simulink, STM32, CAN communication, and industry-standard automotive development tools.
Industry-grade EV engineering technologies you'll master
Master four industry-focused specializations covering electric powertrains, battery systems, motor control, embedded electronics, and EV simulation.
Understand EV architecture, vehicle dynamics, traction systems, powertrain design, and energy management.
Design lithium-ion battery packs, SOC estimation, thermal management, balancing, and battery safety systems.
Design inverters, converters, gate drivers, BLDC/PMSM motor control, and efficient power conversion systems.
Develop real-time embedded controllers using STM32, Arduino, PWM, ADC, CAN Bus, and automotive communication protocols.
Four industry-focused specialization tracks covering EV Systems Engineering, Battery Management Systems, Power Electronics & Motor Drives, and Embedded Systems—from EV fundamentals to complete electric vehicle model development.
Build a tool that calculates tractive force, power, and energy requirements for an electric vehicle using vehicle dynamics equations.
Design and simulate a state-of-charge estimation model for a lithium-ion battery pack using MATLAB and Simscape.
Design, simulate, and build a closed-loop speed controller for a BLDC motor using PWM and gate driver circuits.
Integrate STM32-based control, CAN communication, sensors, and motor drives to fabricate a working EV model vehicle.
Master the software, embedded platforms, power electronics tools, and hardware used by modern Electric Vehicle engineers.
Progress through four structured phases covering EV fundamentals, battery systems, power electronics, and embedded vehicle control with real-world engineering projects.
Learn EV architecture, vehicle dynamics, powertrain components, charging systems, regenerative braking, MATLAB fundamentals, and Simulink modeling.
Vehicle Force & Power Calculator
Design battery packs, implement SOC/SOH estimation, thermal management, cell balancing, battery protection, and simulation using Simscape.
Battery SOC Estimator
Build inverter circuits, BLDC/PMSM motor controllers, PWM control, gate driver circuits, and DC-DC converter applications.
BLDC Speed Controller
Integrate STM32, Embedded C, CAN communication, sensors, motor controllers, and complete an industry-grade EV model vehicle project.
EV Model Vehicle Fabrication + GitHub Portfolio
Transform from understanding EV fundamentals to designing, simulating, controlling, and building real Electric Vehicle systems with industry-standard tools and hardware.
Basic EV Knowledge
~20% Industry Ready
Electric Vehicle Engineer
95% Industry Ready
Mostly theoretical understanding with minimal exposure to real EV systems.
Limited understanding of battery management systems, motor drives, and power electronics.
No experience working with STM32, CAN communication, or real-time embedded control.
Design complete EV systems including powertrain, battery, and control systems.
Develop battery management systems, motor controllers, inverters, and charging systems.
Showcase MATLAB, Simulink, STM32, CAN Bus, BLDC motor control, battery simulation, and complete EV model vehicle projects.
Join aspiring EV engineers mastering MATLAB, Simulink, Battery Management Systems, Power Electronics, Embedded Systems, and complete Electric Vehicle design.
Develop practical Electric Vehicle systems covering Battery Management Systems, Power Electronics, Motor Control, Embedded Systems, MATLAB/Simulink simulation, CAN communication, and complete EV integration.
Description here.
See how our learners mastered Electric Vehicle Engineering through hands-on projects in Battery Management Systems, Power Electronics, Embedded Systems, MATLAB, Simulink, and EV Powertrain Design.
"Before joining this course, I only knew the basics of Electric Vehicles. After completing the program, I designed Battery Management Systems, simulated EV powertrains using MATLAB & Simulink, worked with STM32 controllers, and built a complete EV prototype. This course helped me secure my first Electric Vehicle Engineer role."
Electric Vehicle Engineer
@ Tata Motors
"The practical EV system design sessions helped me confidently work on real Electric Vehicle projects."
@ TVS Motor
"The Battery Management System projects gave me hands-on experience with SOC estimation and battery safety."
@ Exide Energy
"Learning STM32, CAN Bus, and BLDC motor control prepared me for embedded automotive development."
@ Bosch
"This course helped me transition from mechanical engineering into the Electric Vehicle industry."
@ Mahindra Electric
"The MATLAB and Simulink projects gave me the confidence to work on EV powertrain simulation."
@ Ashok Leyland
"The complete EV model vehicle project made my resume stand out during interviews."
@ Ather Energy
Flexible learning paths tailored to your career milestones. Select the track that fits your background.
Total INR 5,10,000* (Inclusive of taxes)
Total INR 7,50,000* (Inclusive of residency)
*Estimates based on market placement reports. Individual outcomes may vary.
Your certification formally validates your skill set in recruiter searches.
Unique cryptographic hashes registered on global validation boards.
Add directly to your credentials panel with pre-filled ID tracking.
For successful execution and completion of all curriculum pathways, hands-on industrial capstones, and verifiable code deliverables.
Continue your journey with these focused tracks.
Master robotic arm kinematics and MoveIt integration.
Drone control systems, flight stacks, and aerial mapping.
Scaling robot deployments using AWS RoboMaker and Kubernetes.
Electric Vehicle Engineering is transforming the future of transportation, energy and smart mobility. Discover the industries where EV engineers build next-generation electric mobility solutions.
Hover to explore →
Design intelligent Battery Management Systems (BMS), battery packs, thermal management solutions and charging systems for modern Electric Vehicles.
Battery Technology
Hover to explore →
Develop electric powertrains, vehicle assembly systems, battery integration and advanced EV manufacturing processes.
EV Manufacturing
Hover to explore →
Design inverters, DC-DC converters, onboard chargers, motor controllers and high-efficiency power electronics for EV applications.
Power Electronics
Hover to explore →
Build intelligent EV systems using Embedded Controllers, CAN Bus, IoT connectivity, telematics and smart charging infrastructure.
Future MobilityNo. This program starts from the fundamentals of Electric Vehicle Engineering. Basic knowledge of electrical or mechanical engineering is helpful but not mandatory. The curriculum gradually covers battery systems, power electronics, embedded systems, and EV integration.
You'll work with MATLAB, Simulink, Simscape, STM32, Embedded C, CAN Bus, KiCad, SPICE, Battery Management Systems, BLDC Motor Control, Vehicle Dynamics, and EV Powertrain Simulation.
A laptop with at least 8GB RAM is recommended. During the course, you'll also work with STM32 development boards, BLDC motor kits, battery management systems, sensors, and EV prototype hardware.
Yes. You'll build practical projects including Battery Management Systems, EV Powertrain Simulation, BLDC Motor Control, CAN Communication Networks, DC-DC Converter Design, and a complete Electric Vehicle model.
Yes. You'll receive an industry-recognized Electric Vehicle Engineering certificate after successfully completing all modules, practical projects, and the final capstone project.
Graduates can pursue careers as Electric Vehicle Engineer, Battery Design Engineer, Power Electronics Engineer, Embedded Systems Engineer, Motor Control Engineer, EV Testing Engineer, and Automotive R&D Engineer.
Yes. We provide resume building, portfolio development, mock interviews, career guidance, LinkedIn profile optimization, and placement assistance to help you prepare for Electric Vehicle industry opportunities.
Absolutely. The program is designed for both students and working professionals with flexible schedules, recorded sessions, hands-on assignments, live mentoring, and project-based learning.
Transform your skills into industry-ready Electric Vehicle Engineering expertise. Learn Battery Management Systems (BMS), MATLAB, Simulink, Power Electronics, Embedded Systems, STM32, CAN Bus, and EV Powertrain Design through hands-on industry projects.