
Electric Vehicle Charging Course
Master every layer of EV charging infrastructure — from battery fundamentals and connector standards to grid integration, network management, and fleet depot design. This course gives electrical professionals, project developers, and charging industry newcomers the technical depth and practical tools to deploy and operate real-world charging systems with confidence.
What you will learn:
You will build a complete technical foundation in EV powertrains, battery systems, and electrical safety before moving into AC and DC fast charging equipment, commissioning procedures, and fault diagnosis. You will learn how charging loads interact with the grid and how to apply smart load management, demand charge mitigation, and renewable energy integration. The course covers OCPP protocol operations, network monitoring, firmware management, and cybersecurity controls for networked EVSE. You will also work through fleet depot design, site development, business models, and financial modelling. Advanced topics include vehicle-to-grid technology, wireless charging, megawatt charging systems, and AI-driven operations.
How you study in practice Electric Vehicle Charging Course
How you practise Electric Vehicle Charging Course
For companies looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the specific needs of your company.
Course content
8 Chapters • 36 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Electric Vehicle Technology
Foundations of Electric Vehicle Technology
Lesson 1 • How Electric Vehicles Work
Covers EV drivetrain components, motor types, and energy conversion. Establishes the technical baseline needed for all subsequent charging concepts.
Lesson 2 • Electrical Safety Fundamentals
Introduces high-voltage hazards, personal protective equipment, and lockout procedures. Safe work practices underpin every hands-on charging task.
Lesson 3 • Battery Pack Architecture
Examines cell chemistry, pack construction, and thermal management. Understanding pack design is essential for grasping charging behaviour and limits.
Lesson 4 • State of Charge and Energy Metrics
Defines SoC, SoH, energy density, and capacity. These metrics are the language used throughout charging system design and operation.
Chapter 2HideHide detailsSee detailsEV Charging Standards and Protocols
EV Charging Standards and Protocols
Lesson 1 • Charging Level Classifications
Defines Level 1, Level 2, and DC fast charging by power range and use case. Provides the framework for comparing all charger types discussed later.
Lesson 2 • Communication Protocols Between EV and Charger
Explains pilot signal, PLC-based, and wireless communication methods. Protocol knowledge is required for diagnosing charging faults and configuring smart chargers.
Lesson 3 • Regulatory and Standards Bodies
Identifies the organisations that publish EV charging standards and how standards evolve. Awareness of standards bodies helps practitioners stay current with compliance requirements.
Lesson 4 • Connector Types and Compatibility
Surveys major connector standards used globally and their physical and electrical differences. Connector knowledge prevents mismatches during installation and procurement.
Chapter 3HideHide detailsSee detailsAC Charging Systems and Equipment
AC Charging Systems and Equipment
Lesson 1 • On-Board Charger Operation
Explains how the vehicle's on-board charger converts AC grid power to DC for the battery. OBC limits determine maximum AC charging speed for any vehicle.
Lesson 2 • Three-Phase Commercial AC Charging
Addresses three-phase power delivery, load balancing, and multi-port station design. Commercial AC stations serve workplaces, parking facilities, and fleet depots.
Lesson 3 • EVSE Commissioning and Testing
Details the steps to commission, verify, and document an AC EVSE installation. Proper commissioning ensures safety, performance, and warranty compliance.
Lesson 4 • Single-Phase Residential EVSE
Covers Level 1 and Level 2 home charging unit design, installation requirements, and user features. Residential EVSE represents the most common charging touchpoint for EV owners.
Chapter 4HideHide detailsSee detailsDC Fast Charging Systems
DC Fast Charging Systems
Lesson 1 • DCFC Power Electronics Architecture
Examines rectifier stages, power modules, and output filtering in fast chargers. Understanding internal architecture enables accurate fault diagnosis and component replacement.
Lesson 2 • High-Power Charging Infrastructure
Covers 150 kW to 350 kW station design, cable cooling, and grid connection requirements. High-power sites demand specialised civil, electrical, and thermal engineering.
Lesson 3 • DCFC Maintenance and Fault Diagnosis
Provides systematic procedures for preventive maintenance and fault isolation on DCFC units. Structured diagnostics reduce downtime and extend equipment service life.
Lesson 4 • Charging Curves and Power Delivery
Analyses constant-current, constant-voltage, and taper charging phases. Charging curve knowledge is critical for predicting session duration and protecting battery health.
Chapter 5HideHide detailsSee detailsGrid Integration and Power Management
Grid Integration and Power Management
Lesson 1 • Grid Fundamentals for Charging Professionals
Reviews distribution grid topology, voltage levels, and power quality parameters relevant to EVSE. Grid literacy is prerequisite to designing compliant and stable charging sites.
Lesson 2 • Demand Charge and Tariff Structures
Explains peak demand charges, time-of-use rates, and their financial impact on charging operations. Tariff understanding drives smart scheduling and cost optimisation decisions.
Lesson 3 • Smart Charging and Load Management
Covers dynamic load balancing, scheduled charging, and OCPP-based control. Smart charging maximises available capacity without costly grid upgrades.
Lesson 4 • Renewable Energy and Charging Sites
Integrates solar PV and wind generation with EV charging infrastructure. Renewable coupling reduces operating costs and supports sustainability goals.
Lesson 5 • Energy Storage Integration
Addresses stationary battery storage co-located with EVSE to buffer peak loads and reduce demand charges. Storage integration is increasingly essential for high-power sites.
Chapter 6HideHide detailsSee detailsCharging Network Management and OCPP
Charging Network Management and OCPP
Lesson 1 • Network Monitoring and Reporting
Teaches dashboard interpretation, alert configuration, and KPI reporting for charging networks. Continuous monitoring enables proactive maintenance and business performance tracking.
Lesson 2 • OCPP Protocol Deep Dive
Examines OCPP message types, transaction flows, and version differences. Mastery of OCPP enables precise configuration and rapid fault isolation on networked chargers.
Lesson 3 • Charging Network Architecture
Maps the relationships among charge points, central systems, and back-end platforms. Network architecture knowledge is foundational for configuration and troubleshooting tasks.
Lesson 4 • Firmware Updates and Remote Management
Details over-the-air firmware update procedures, rollback strategies, and remote diagnostics. Remote management reduces truck rolls and keeps chargers secure and current.
Lesson 5 • Authentication and Access Control
Covers RFID, app-based, and plug-and-charge authentication methods and their security implications. Proper access control protects revenue and user data on public networks.
Chapter 7HideHide detailsSee detailsFleet and Depot Charging Design
Fleet and Depot Charging Design
Lesson 1 • Fleet Charging Needs Assessment
Guides data collection on vehicle duty cycles, dwell times, and energy requirements. Accurate needs assessment prevents under- or over-investment in depot infrastructure.
Lesson 2 • Fleet Energy Management Systems
Introduces fleet-level energy management software for scheduling, prioritisation, and cost control. Automated scheduling minimises demand charges while ensuring vehicles depart fully charged.
Lesson 3 • Charger Selection and Layout Planning
Matches charger power levels and quantities to fleet operational requirements and site constraints. Layout planning ensures safe vehicle access, cable reach, and maintenance clearance.
Lesson 4 • Depot Project Execution and Commissioning
Outlines the project phases from permitting through commissioning and handover for depot builds. Structured execution reduces delays and ensures all systems are verified before fleet operation.
Lesson 5 • Depot Electrical Infrastructure Design
Covers service entrance sizing, switchgear layout, and distribution panel design for fleet depots. Electrical design must accommodate simultaneous charging of multiple vehicles.
Chapter 8HideHide detailsSee detailsAdvanced Topics and Future Technologies
Advanced Topics and Future Technologies
Lesson 1 • Ultra-Fast and Megawatt Charging
Addresses megawatt charging system design for heavy-duty trucks and high-power passenger vehicles. MCS infrastructure requires advanced grid, thermal, and safety engineering.
Lesson 2 • Artificial Intelligence in Charging Operations
Applies machine learning to predictive maintenance, demand forecasting, and dynamic pricing. AI-driven operations improve uptime, reduce costs, and enhance user experience.
Lesson 3 • Evaluating Emerging Charging Technologies
Provides a framework for assessing technology maturity, standards readiness, and business viability. Structured evaluation prevents premature adoption of unproven technologies.
Lesson 4 • Wireless and Inductive Charging
Covers magnetic resonance and inductive power transfer principles for stationary and dynamic charging. Wireless charging eliminates connectors and enables autonomous vehicle charging scenarios.
Lesson 5 • Vehicle-to-Grid and Bidirectional Charging
Explains V2G, V2H, and V2B power flows, enabling EVs to export energy back to grids or buildings. Bidirectional charging creates new revenue streams and grid resilience opportunities.
Your valid completion certificate
This course is for you:
Electrician: ready to specialise in the fast-growing EV charging sector.
Energy project developer: needs technical grounding to lead charging deployments confidently.
Fleet manager: wants to understand the infrastructure powering a commercial EV transition.
Recent engineering graduate: seeking a focused entry point into clean transportation careers.
Sustainability consultant: looking to add credible EV infrastructure expertise to their practice.
Career changer: transitioning from traditional utilities into the electric mobility industry.
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