“School Student Scholarship Program | Master of Electric Vehicle Technology ”

About Course
Master of Electric Vehicle Technology — School Student Scholarship Program
Beginner to Advanced | 100% Theory Certification Program
Start your EV career journey from school itself! This scholarship program gives school students (9th, 10th, 11th, +2) complete access to our foundational EV Technology theory course — taught through clear, concept-based video lessons covering motors, batteries, controllers, and EV systems basics.
Who this course is for:
- School students (9th – 12th standard) curious about Electric Vehicle technology
- Students who want to build early industry knowledge before college/ITI
- Anyone wanting to start an EV career from a strong foundation
Course Highlights:
✔ 234 Theory Lessons — 100% concept-clear video training
✔ MMI GSA Student Completion Certificate
✔ Lifetime Access to Video Lessons
✔ Access on All Devices
✔ WhatsApp Student Support Group
✔ Career & Placement Guidance
Eligibility: School Students Only (9th, 10th, 11th, +2 Standard) — Valid Student ID required for enrollment.
Want quizzes, PDF notes, or hands-on workshop training too? Upgrade anytime to our College Student Plus, Professional, or Hybrid Practical plans.
What Will You Learn?
- Understand complete EV architecture — motor, controller, battery, BMS & charging systems
- Master basic electrical fundamentals — Voltage, Current, Resistance & Ohm's Law
- Learn how EV motors work — BLDC, Hub Motor & their working principles
- Understand battery technology basics — Lithium-ion cells, packs & battery management
- Learn EV charging systems — types of chargers & charging process
- Identify key EV components and their functions in a real vehicle
- Build a strong theoretical foundation to start your EV career journey
- Get familiar with the EV industry landscape and growth opportunities
Course Content
Module 1 — Introduction
Your starting point into the world of Electric Vehicles. Learn how to study this course effectively, why EV skills matter today, the benefits you'll gain, and how MMI GSA's online program is structured to take you from beginner to job-ready EV technician.
Module 2 — What is a Vehicle & EV
Understand the world of Electric Vehicles from scratch. Learn what a vehicle and an EV are, how they evolved from human and animal-powered transport, the difference between IC and electric vehicles, and the golden line of transportation. Perfect starting point for every EV enthusiast.
Module 3 — EV Fundamentals
Build your core EV knowledge. Explore the history and evolution of electric vehicles, the different types of EVs, how electric motors work (DC and BLDC), and the basics of electrical circuits. This is the technical foundation every EV technician needs.
Introduction to EV
History of EV: Lead-Acid Battery (Part 1)
History of EV: Lithium Battery
Types of EVs
Basic Types of Motors
Kinds of Motors
EV & ICE Comparison Table
How a DC Motor Works
How an IC Engine Works (4-Stroke)
Basic Closed Circuit
Basic EMF Circuit
How BLDC Motor Works
Module 4 — EV vs ICE Comparison
A complete head-to-head comparison between Electric Vehicles and traditional IC Engine vehicles. Understand how each system works — energy source, transmission, emissions, cost, maintenance, speed, and braking — so you can confidently explain the real advantages of EVs to any customer.
Energy Source EV vs ICE
Transmission EV vs ICE
Emissions EV vs ICE
Fuel & Charging Cost EV vs ICE
Maintenance EV vs ICE
Speed EV vs ICE
Fuel & Battery (AC & DC) EV vs ICE
Regenerative Braking Potential & Kinetic Energy
Gearbox, Tailpipe & Maintenance EV vs ICE
ICE Fuel Energy to Mechanical
ICE Emission, Cooling System & Differential
Maintenance Intervals EV vs ICE
Module 5 — Electrical Fundamentals
Master the electrical foundation every EV technician needs. This module covers Voltage, Current & Resistance (VIR), Ohm's Law, power formulas, and real-world calculations used in electric vehicles. You'll learn wiring circuits, motor winding resistance, open vs closed circuits, series & parallel connections, lithium cell calculations, EV wiring harness, and Hall sensor circuits — with practical problems that build true diagnostic confidence.
EV Electrical & Parts Fundamentals
EV Wiring Circuit Flow
VIR Electrical Theory
EV Voltage & Amp Range
EV Motor Loading Range – Basic Calculation
Resistance & Ohm’s Law
VIR Power Formula
EV Motor Winding Resistance
Wire Resistance Problem
Open Circuit vs Closed Circuit (Part 1)
Open Circuit vs Closed Circuit (Part 2)
Ohm’s Law & EV Voltage
EV Resistance Problem
EV Energy & Power Calculation
VIR EV Range Calculation
VIR EV Wire & Range Calculation
Factors Affecting Resistance
FAR – Wire Length & Power Loss
VIR EV Summer Table
VIR Relationship
Open & Closed Current Flow
Battery Pack Calculation (VIR)
Series Circuit Fundamentals
12V 30Ah Series Connection
Difference Between Voltage & Amp (Part 1)
Difference Between Voltage & Amp (Part 2)
Variation of Voltage & Amp
Parallel Connection (Part 1)
Parallel Connection (Part 2)
Series & Parallel Li-Cells Calculation (Part 1)
Series & Parallel Li-Cells Calculation (Part 2)
EV Wiring Harness Overview
Low Voltage Signal
Motor Phase Wire
Hall Sensor Circuit
Module 6 — Electric Scooter System
Explore the complete architecture of an electric scooter — from throttle and controller to buck converter and wiring layout. Learn how the 6 core EV components work together, understand E-Rickshaw power systems, and compare Hub vs Mid-Drive setups. This module builds the practical foundation for diagnosing and servicing real electric scooters.
What is Electric Scooter System
EV Throttle Fault Symptoms
Cluster & Buck Converter Works
Vehicle Layout, Component Location & Power Flow
EV 6 Core Components
E-Rickshaw Power System Layout
EV Controller Working & Powertrain
EV Buck Converter 12V Powertrain & Front Parts of the EV
EV Centre & Rear Parts of the EV Explained
Main Parts of the Electric Scooter
EV Wiring Working Fundamentals
Comparative Study of Electric Scooter – Hub & Mid Drive
Module 7 — Electric Motor System
Learn BLDC motors, PMSM motors and Hub
motors used in electric scooters and EVs.
Understand motor working principles,
torque, speed, efficiency and real-world
motor selection for different EV types.
Types & Kinds of EV Motor
Introduction to Power Train
Session Overview
Types of Motor
Kinds of EV Motor by Placement
DC Brushed Motors
BLDC Motor
PMSM Motor
Induction Motor
SRM Motor
Future of EV Motors
EV Motor Measurement – KW & HP
EV vs Petrol – KW & HP Simulation
Motor Loading Capacity – Watts to KG
What is Inside the Motor System
How BLDC Motor Works
What is BLDC Stator & Rotor Assembly
Difference Between Stator & Rotor
The Heart of BLDC Motor
How BLDC Motor Works – EMF Simulation
BLDC Motor Interactive Simulator – Motor Working Principle
BLDC Motor Interactive Simulator – Hall Sensor
BLDC Motor Interactive Simulator – Wiring Fault
EV Motor Coil Heating & Burning
Simulation of EV Motor Coil Heating & Burning
BLDC Motor Evolution & Technology Future
Module 8 — Controller System
Understand the brain of every EV — the
controller. Learn how motor controllers
work, PWM signals, throttle response,
regenerative braking control and how
to identify and fix controller faults.
What is an EV Controller?
The Brain of EV – Core Functions & User Experience
EV Controller Operation Workflow
What is a Square Wave Controller?
Why Sine Wave Controllers Give Smooth Operation
FOC Vector Controller – The Smartest Controller Explained
Controller Management System
Power Distribution System – DC to DC Converter
Anatomy of an EV System
Comparison of EV Controllers
BLDC Controller – Working Parts Explained
BLDC Controller Operation
BLDC Controller Operating Sequence
EV BLDC Controller – Inverter System
EV Controller Architecture
Inputs & Outputs – What Enters & Leaves the Controller
EV Controller – Microcontroller, DSP & Gate Drive
Internal Signal Flow – From Input to Motor Output
EV Controller Wiring Connections
Asian vs European Controller Types
Controller Connector Pinout
Throttle System – Hall Effect Operation & Testing
Controller Central MCU & MOSFET Bridge
Controller H-Bridge MOSFET
PWM Phase Control & Safety Rules
Controller Wiring & Signals
Controller Fault Diagnosis
Motor-Controller Communication
EV Pickup Secrets – Controller & Battery Role
EV Pickup Secrets – Interactive Simulator (Controller & Battery)
Module 9 — Vehicle Control Unit & Communication (VCU/VCC)
Learn how modern EVs communicate
internally. Covers CAN Bus, vehicle
control units, sensor communication,
dashboard signals, instrument cluster
and how all EV systems talk to each other.
Modern Electric Vehicle Control Unit + ECU & CAN Introduction
Electric Vehicle Control & Communication
EV VCC Wiring System
EV VCC System Architecture
EV High Voltage Safety Interlock System
EV Smart Regenerative Braking System
EV VCC Unit System Conclusion
Module 10 — Electric Scooter & Light EV Architecture
Complete architecture of electric scooters
and light EVs. Learn chassis design,
component placement, wiring harness,
power distribution, thermal management
and full system integration of a
real electric scooter.
Electric Scooter Wiring Architecture
Electric Scooter Wiring Harness Diagram
EV Wiring Colour Standard
EV Harness Power Bundles & Signal Pathways
EV Throttle Control System
EV Wiring Harness System
DC-DC Converter Function
EV Hub Motor Wiring Identification
EV Hall-Effect Throttle – Operation & Testing
EV Controller Connector Pinout
EV Wiring Harness Overview
Module 11 — Li-Battery System
Master Lithium-ion and Lithium Iron
Phosphate battery technology. Learn
cell types, battery pack construction,
series and parallel connections, capacity
calculation, thermal management and
battery safety procedures.
Battery Technology – The Heart of Every Electric Vehicle
What is Anode & Cathode – Li-Battery Technology
Types of Lithium Cells – Comparison Chart
Lithium Battery Cell Structures & Layers
Li-Cell Components & Cell Formats
EV Battery Pack Construction
What is Parallel – Ah to Increase the Range
What is Series Connection
What is Volt vs Ah – Speed vs Range – Series vs Parallel
48V-60V NMC Battery Pack – Low, Nominal & High Voltage Construction
Battery Pack Layout – Skateboard Design
Battery Pack Layout
Li-Battery Pack Key Terminology & Watt-Hour Calculation
Li-Battery Series & Parallel Combined
Battery Safety – Overcharge & Discharge, Thermal Safety & Rules
EV Lithium Battery System – Classroom Simulation
Series & Parallel Pack Builder Simulation (E-Scooter 2 – 100Ah Pack)
Battery Management System – What It Does
Module 12 — Battery Management System (BMS)
Learn the complete BMS — the guardian
of every EV battery pack. Covers cell
balancing, State of Charge (SOC), State
of Health (SOH), overcharge protection,
temperature monitoring and BMS
fault diagnosis.
Centralized BMS Architecture – Active & Passive Balancing
BMS MCU Controller System
BMS Cell Monitoring & Temperature Protection
EV CAN Bus Network Architecture
BMS Complete Function Map
Battery Management System – 4 Core Protections
BMS Wiring Diagram Overview
BMS Wiring Type
Cell Balancing Concept
Battery Monitoring System
Cell Balancing Methods
State of Charge (SOC) vs Cell Voltage Curve
BMS Interactive Classroom Simulation – Cell Monitoring & Protection
Module 13 — EV Charging System
Understand AC and DC charging systems,
charging standards (Type 1, Type 2, CCS,
CHAdeMO), onboard charger working,
charging protocols, home charging setup
and public charging infrastructure
installation.
EV Charging System
EV Live CC-CV Charging Simulation
Li-Battery Pack – Full, Normal & Low Voltage Monitoring
What is Constant Voltage & Constant Current – Live Classroom Demo
Power Flow Path – AC to DC Battery
Why Don’t Use Wrong AC Charger on DC Battery Pack
OBC (On-Board Charger) – The Heart of AC Charging
OBC PFC Stage – Live Simulation
EV OBC Galvanic Isolation Transformer
EV OBC DC to DC Converter Works
Charging Connectors Standards
Charging Safety System
Charging Safety Interlock System
Charger Specification Calculator – Live Simulation
Module 14 — HV Safety Procedures
Learn critical EV safety procedures for
technicians and service centers. Covers
high voltage safety, PPE equipment,
isolation procedures, fire safety,
battery handling, accident response
and international EV safety standards.
PPE Requirements – HV Safety
Why Use Safety Glasses, Face Shield, Dielectric Footwear & Arc Flash Protection
High Voltage Work Procedure
MSD Removal Before Starting HV Work Procedure
Don’t Skip or Never Break Critical Rules
Thermal Runaway
Key Performance Metrics & EV Health System
Battery Chemistry Comparison
EV Drivetrain Efficiency Comparison
⚠️ High Voltage Safety Reminder
Module 15 — EV Workshop Practical Training
Hands-on practical training with real
electric scooters and EVs. Learn professional
fault diagnosis techniques, use diagnostic
tools, read error codes, perform component
testing, and complete real-world service
procedures — everything needed to run
a professional EV workshop.
EV Workshop Practical
Essential EV Technician Tools – Digital Meter
Insulation Tester & Clamp Meter
Battery Capacity Tester & Oscilloscope (DSO)
Torque Wrench – Essential EV Technician Tools Chart
Components Identification
Not-Working Vehicle – Diagnosis Procedure Step by Step
Dismantling Procedure Step by Step
BLDC Motor Testing Procedure
Controller Diagnostic Flow Chart
Battery Voltage & Capacity Health Test
EV Workshop Practical Tools & Equipment
Module 16 — Trouble Shoot & Fault Diagnosis
Bring everything together with real-world fault-finding concepts.
Learn systematic diagnosis for common complaints like "motor not
running," "battery charges but range dropped," and charging issues
— using diagnostic flowcharts, reference formulas, and a complete
EV service workflow. This module turns your theory knowledge into
confident, professional troubleshooting understanding.
Troubleshooting & Fault Diagnosis
Systematic Fault Diagnosis is the Mark of a Skilled EV Technician
Diagnostic Lab – Real Diagnosis, Right Solution
Diagnostic Lab Flow Chart
Display & Motor Does Not Run
Battery Charging Complaint
Battery Charges Fully but Range Dropped
Reference Formulas – HV Cable Colour Standards
EV System Voltage Ranges
Power & Energy – Pack Configuration Simulation
EV Service Work Flow
Final Troubleshoot & Fault Diagnosis Conclusion