
Medium-Voltage Safety Training
Medium-voltage systems demand a higher level of knowledge, discipline, and preparation than standard electrical work. This training covers everything from arc flash analysis and LOTO procedures to switching operations and emergency response. Build the technical competency and regulatory awareness required to work safely around equipment rated from 1 kV to 35 kV.
What you will learn:
You will gain a thorough understanding of medium-voltage system components, hazard recognition, and the regulatory standards that govern MV work. The course covers arc flash physics, PPE selection, insulating tools, and rubber glove inspection so you can match protection to the actual hazard level. You will master lockout/tagout sequences, energy verification procedures, and safe approach distances for both energized and de-energized tasks. Switching order fundamentals, protective relay coordination, and arc flash mitigation strategies are covered in detail. You will also learn how to respond to electrical emergencies, conduct post-incident investigations, and apply human factors principles to reduce error on the job.
How you study in practice Medium-Voltage Safety Training
How you practice Medium-Voltage Safety Training
For companies that want to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 41 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Medium-Voltage Systems
Foundations of Medium-Voltage Systems
Lesson 1 • Defining Medium-Voltage Range
Covers voltage classifications from low to high voltage and where medium voltage fits. Provides the baseline terminology used throughout the entire course.
Lesson 2 • Regulatory and Standards Overview
Introduces the regulatory framework governing MV work, including safety standards and employer obligations. Sets the compliance context for all subsequent safety practices.
Lesson 3 • Electrical Fundamentals Review
Reviews Ohm's law, power calculations, and AC circuit behavior at medium-voltage levels. Reinforces the physics underlying MV hazards and protective device operation.
Lesson 4 • System Configurations and Topologies
Explains radial, loop, and network distribution topologies used in MV systems. Topology awareness supports safe isolation and switching decisions.
Lesson 5 • Core System Components
Identifies transformers, switchgear, cables, and bus structures in MV systems. Understanding components enables hazard recognition in later chapters.
Chapter 2HideHide detailsSee detailsElectrical Hazards at Medium Voltage
Electrical Hazards at Medium Voltage
Lesson 1 • Arc Flash Physics and Energy
Describes arc flash initiation, plasma temperatures, and incident energy release at MV levels. Establishes the science behind arc flash boundaries and PPE selection.
Lesson 2 • Secondary and Environmental Hazards
Covers induced voltage, capacitive stored energy, toxic gases, and fire risks in MV environments. Broadens hazard awareness beyond direct electrical contact.
Lesson 3 • Hazard Assessment and Risk Ranking
Applies a structured risk matrix to evaluate likelihood and severity of MV hazards. Produces a prioritized hazard profile used in job planning and PPE selection.
Lesson 4 • Arc Flash Boundary Concepts
Defines limited, restricted, and arc flash protection boundaries and their calculation basis. Boundary knowledge directly governs worker approach distances in later chapters.
Lesson 5 • Electric Shock and Electrocution
Explains current pathways through the body, threshold values, and lethal exposure conditions. Grounds all subsequent protective measures in physiological reality.
Chapter 3HideHide detailsSee detailsProtective Equipment for MV Work
Protective Equipment for MV Work
Lesson 1 • PPE Categories and Ratings
Maps arc-rated PPE categories to incident energy levels and MV exposure scenarios. Correct category selection is the primary defense against arc flash injury.
Lesson 2 • Insulating Gloves and Sleeves
Covers voltage classes, leather protectors, and inspection protocols for rubber insulating gloves. Gloves are the most critical contact protection for MV tasks.
Lesson 3 • PPE Inspection, Care, and Retirement
Establishes pre-use inspection criteria, cleaning procedures, and retirement triggers for all MV PPE. Defective equipment must be removed from service before it causes injury.
Lesson 4 • Insulating Tools and Equipment
Identifies hot sticks, insulated hand tools, and live-line tool ratings for MV applications. Proper tool selection prevents inadvertent contact with energized conductors.
Lesson 5 • Grounding Equipment and Cables
Explains temporary protective grounds, their current ratings, and correct attachment sequence. Grounding equipment prevents re-energization injury during maintenance.
Chapter 4HideHide detailsSee detailsLockout/Tagout for Medium-Voltage Systems
Lockout/Tagout for Medium-Voltage Systems
Lesson 1 • Energy Control Program Principles
Defines the purpose, scope, and required elements of a written energy control program. A compliant program is the administrative foundation for all LOTO activities.
Lesson 2 • Verification of Zero Energy State
Applies test-before-touch protocol using rated voltage detectors to confirm de-energization. Verification is the final barrier before physical contact with isolated equipment.
Lesson 3 • Restoring Equipment to Service
Sequences lock removal, personnel clearance, and re-energization steps after work completion. Improper restoration is a leading cause of post-maintenance electrical incidents.
Lesson 4 • De-energization and Isolation Steps
Details the sequence for opening disconnects, racking out breakers, and verifying open position. Correct sequence prevents switching errors that could energize adjacent equipment.
Lesson 5 • Lockout Device Application
Covers lock selection, hasp use for group lockout, and tag placement on MV isolation points. Each authorized worker must apply a personal lock before work begins.
Lesson 6 • Identifying All Energy Sources
Trains workers to locate electrical, stored, gravitational, and thermal energy sources on MV equipment. Complete energy source identification prevents unexpected re-energization.
Chapter 5HideHide detailsSee detailsSafe Work Practices and Approach Distances
Safe Work Practices and Approach Distances
Lesson 1 • Job Briefing and Pre-Task Planning
Structures a pre-task job briefing covering hazards, controls, roles, and emergency actions. Briefings align the entire crew before any MV work begins.
Lesson 2 • Working on Energized MV Equipment
Applies safe work methods including insulated tools, barriers, and body positioning during live work. Technique discipline reduces inadvertent contact probability to the lowest achievable level.
Lesson 3 • Energized Work Justification
Establishes the conditions under which energized MV work is permissible and requires written justification. Limiting energized work is the highest-priority risk reduction strategy.
Lesson 4 • Two-Person Rule and Standby
Explains when a second qualified worker or safety observer is required for MV tasks. The two-person rule ensures immediate response capability in emergencies.
Lesson 5 • Approach Distance Calculations
Calculates limited, restricted, and prohibited approach distances for specific MV voltage levels. Accurate distances define the physical boundaries workers must respect.
Chapter 6HideHide detailsSee detailsArc Flash Analysis and Mitigation
Arc Flash Analysis and Mitigation
Lesson 1 • Engineering Controls for Arc Flash
Covers remote racking, arc flash detection relays, and current-limiting fuses as incident energy reducers. Engineering controls are preferred over PPE as the primary mitigation layer.
Lesson 2 • Arc Flash Study Process
Outlines the data collection, modeling, and calculation steps in a formal arc flash hazard study. A completed study is the basis for all arc flash labels and PPE requirements.
Lesson 3 • Arc Flash Labels and Equipment Marking
Defines required label content including incident energy, PPE category, and boundary distances. Labels communicate hazard data to workers at the point of exposure.
Lesson 4 • Protective Device Coordination
Explains how relay settings and fuse coordination affect arc flash clearing time and incident energy. Faster clearing times directly reduce incident energy at the worker's position.
Lesson 5 • Maintenance Mode and Reduced Energy
Applies maintenance mode switching and temporary relay settings to lower incident energy during planned work. Temporary settings must be restored immediately after work is complete.
Chapter 7HideHide detailsSee detailsSwitching Operations and Switching Orders
Switching Operations and Switching Orders
Lesson 1 • Normal and Emergency Switching
Distinguishes planned switching sequences from emergency switching under abnormal system conditions. Emergency switching requires faster decisions with the same procedural discipline.
Lesson 2 • Switching Communication Protocols
Establishes radio, phone, and face-to-face communication standards during switching operations. Clear communication prevents misidentification of equipment and switching errors.
Lesson 3 • Switching Order Fundamentals
Defines the purpose, format, and authorization chain for written switching orders. Formal orders prevent improvised switching that causes outages and injuries.
Lesson 4 • Interlocks and Anti-Reclose Features
Explains mechanical and electrical interlocks that prevent out-of-sequence switching operations. Interlocks are the last engineered defense against switching errors.
Lesson 5 • Types of MV Switching Devices
Identifies load-break switches, disconnect switches, reclosers, and sectionalizers and their switching roles. Device capability determines which operations are safe to perform.
Chapter 8HideHide detailsSee detailsEmergency Response to MV Incidents
Emergency Response to MV Incidents
Lesson 1 • Incident Investigation and Reporting
Structures a post-incident investigation to identify root causes and prevent recurrence. Accurate reporting fulfills regulatory obligations and drives systemic safety improvements.
Lesson 2 • Victim Rescue Without Contact
Demonstrates safe victim separation from energized sources using insulated tools and de-energization. Rescuers must never become secondary victims through direct contact.
Lesson 3 • First Aid for Electrical Injuries
Covers CPR, burn management, and shock treatment specific to electrical injury patterns. Electrical injuries have unique internal damage patterns requiring specific first aid priorities.
Lesson 4 • Fire Response in MV Environments
Applies correct extinguisher selection, evacuation routes, and de-energization steps for MV electrical fires. Water and foam agents are prohibited on energized MV equipment.
Lesson 5 • Recognizing Electrical Emergencies
Identifies indicators of shock, arc flash injury, equipment failure, and fire in MV environments. Rapid recognition determines the speed and appropriateness of the emergency response.
Your valid completion certificate
This course is for you:
Electrician: ready to move from low-voltage into medium-voltage work.
Maintenance technician: responsible for industrial MV equipment and switchgear.
Electrical supervisor: overseeing crews who operate near energized MV systems.
Safety professional: developing or auditing MV electrical safety programs at facilities.
Utility worker: transitioning into distribution or substation operations roles.
Electrical engineer: needing field-level safety knowledge to support MV projects.
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