
Electric Motor Winding Course
Master every stage of electric motor rewinding, from reading winding data and stripping old coils to inserting new windings, applying insulation treatment, and running final acceptance tests. This course gives you the hands-on knowledge and technical depth to rewind AC induction, DC, and universal motors with confidence and precision.
What you will learn:
You will learn how to safely disassemble motors, collect accurate winding data, and prepare cores for new insulation. The course covers wire selection, slot fill calculations, and coil winding on both hand and machine winders. You will practice lap and concentric coil insertion, internal connections, and lead termination per standard wiring diagrams. Insulation treatment methods including dip-and-bake and vacuum pressure impregnation are covered in full detail. You will also work through post-rewind electrical testing, winding redesign for voltage conversion, and the business skills needed to run a productive winding shop.
How you study in practice Electric Motor Winding Course
How you practice Electric Motor Winding Course
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 • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Electric Motor Technology
Foundations of Electric Motor Technology
Lesson 1 • Motor Types and Their Winding Needs
Distinguishes AC induction, DC, synchronous, and universal motors by winding configuration. Connects motor type to the specific rewinding approach used in later chapters.
Lesson 2 • Safety and Workshop Orientation
Establishes electrical safety rules, PPE requirements, and tool handling protocols for the winding shop. Ensures students can work safely before touching any equipment.
Lesson 3 • Stator and Rotor Anatomy
Identifies lamination stacks, slots, teeth, end rings, and shaft assemblies. Provides the anatomical vocabulary needed to read winding diagrams accurately.
Lesson 4 • Winding Terminology and Notation
Defines poles, pitch, coil groups, phase belts, and winding factor. Standardizes the language students use throughout the entire course.
Lesson 5 • Electromagnetic Principles for Winders
Covers magnetic flux, Faraday's law, and Lenz's law as applied to motor windings. Establishes the physics foundation required for all subsequent winding work.
Chapter 2HideHide detailsSee detailsReading and Recording Winding Data
Reading and Recording Winding Data
Lesson 1 • Electrical Testing Before Stripping
Applies megohmmeter, ohmmeter, and surge testing to characterize the existing winding. Test results establish the baseline for post-rewind acceptance testing.
Lesson 2 • Winding Data Collection Methods
Teaches systematic measurement of wire gauge, turns per coil, coil pitch, and connection type. Accurate data collection is the direct input for winding calculations.
Lesson 3 • Data Sheets and Job Documentation
Structures winding data into standardized job sheets used throughout the repair. Proper documentation supports quality control and future rewinds of the same motor.
Lesson 4 • Winding Diagrams and Schematics
Introduces developed diagrams, connection diagrams, and slot-fill charts. Students learn to read and reproduce diagrams that guide the rewinding process.
Lesson 5 • Pre-Disassembly Inspection Procedures
Covers visual inspection, nameplate reading, and initial electrical tests before any disassembly begins. Links inspection findings to rewinding decisions made later.
Chapter 3HideHide detailsSee detailsStripping and Core Preparation
Stripping and Core Preparation
Lesson 1 • Manual Coil Removal Techniques
Demonstrates slot wedge removal, coil cutting, and pulling sequences that protect slot integrity. Correct technique minimizes slot damage and reduces preparation time.
Lesson 2 • Burnout Oven and Chemical Stripping
Compares oven burnout and chemical stripping methods for removing old windings. Students select the appropriate method based on core size and insulation type.
Lesson 3 • Core Inspection and Repair
Covers lamination inspection, core loss testing, and repair of damaged teeth. Identifies core defects that would degrade rewound motor performance.
Lesson 4 • Slot Cleaning and Surface Preparation
Details wire brushing, sandblasting, and solvent cleaning of slots to remove residue. Clean slot surfaces ensure proper adhesion of new slot insulation.
Lesson 5 • Slot Insulation Installation
Teaches cutting, forming, and inserting slot liners, phase separators, and end-turn insulation. Correct insulation placement is the first step toward dielectric integrity.
Chapter 4HideHide detailsSee detailsWire Selection and Coil Winding
Wire Selection and Coil Winding
Lesson 1 • Coil Winder Setup and Operation
Demonstrates setting coil winder tension, form dimensions, and turn counters for accurate coil production. Proper setup reduces wire breakage and dimensional variation.
Lesson 2 • Magnet Wire Properties and Selection
Covers conductor material, insulation class, temperature ratings, and wire gauge standards. Correct wire selection directly determines motor thermal performance and lifespan.
Lesson 3 • Winding Calculations and Slot Fill
Applies formulas for turns per coil, wire cross-section, and slot fill percentage. Accurate calculations prevent overfilling slots and ensure electrical equivalence.
Lesson 4 • Hand Winding Techniques
Covers manual winding methods for small motors, repair coils, and field coils. Hand winding skills are essential when machine winding is impractical.
Lesson 5 • Coil Dimensional Inspection
Establishes acceptance criteria for coil length, width, and turn count before insertion. Dimensional verification prevents insertion problems and slot damage.
Chapter 5HideHide detailsSee detailsCoil Insertion and Connection
Coil Insertion and Connection
Lesson 1 • Making Internal Winding Connections
Demonstrates soldering, crimping, and welding coil leads to form series, parallel, and phase connections. Correct connections are verified against the winding diagram before proceeding.
Lesson 2 • Lap and Concentric Winding Insertion
Compares lap and concentric insertion sequences and demonstrates the correct order for each. Insertion sequence determines coil pitch and phase distribution accuracy.
Lesson 3 • Lead Wire Termination and Labeling
Covers sizing, routing, and labeling motor leads per standard terminal designations. Correct lead labeling prevents miswiring during motor installation in the field.
Lesson 4 • End-Turn Forming and Bracing
Teaches shaping end turns to clearance specifications and lacing them for mechanical stability. Properly formed end turns reduce vibration fatigue and improve cooling airflow.
Lesson 5 • Slot Wedge Installation
Covers wedge material selection, sizing, and driving techniques to secure coil sides. Properly installed wedges prevent coil movement and vibration-induced wear.
Chapter 6HideHide detailsSee detailsInsulation Treatment and Curing
Insulation Treatment and Curing
Lesson 1 • Curing Verification and Surface Finishing
Applies hardness tests, gel time checks, and visual inspection to confirm full cure. Surface finishing removes drips and ensures proper bearing fits and air gaps.
Lesson 2 • Insulation Systems and Material Selection
Compares varnish, epoxy resin, and polyester resin systems by thermal class and application method. Material selection must match the motor's operating environment and temperature class.
Lesson 3 • Vacuum Pressure Impregnation (VPI)
Covers VPI tank operation, vacuum and pressure cycles, and resin gel point monitoring. VPI produces void-free impregnation required for high-voltage and severe-duty motors.
Lesson 4 • Dip and Bake Impregnation
Demonstrates preheating, dipping, draining, and oven curing sequences for dip-and-bake treatment. Correct dip cycles ensure full penetration of varnish into all coil interstices.
Lesson 5 • Trickle and Drip Impregnation
Explains trickle impregnation for in-place treatment and drip application for small motors. These methods are used when full tank immersion is impractical.
Chapter 7HideHide detailsSee detailsPost-Rewind Testing and Quality Control
Post-Rewind Testing and Quality Control
Lesson 1 • Insulation Resistance and Dielectric Testing
Applies megohmmeter, polarization index, and high-potential tests to verify insulation integrity. These tests detect voids, contamination, and insulation weakness before motor assembly.
Lesson 2 • No-Load Run Test Procedures
Runs the reassembled motor at no load to measure current, vibration, noise, and temperature rise. No-load data confirms correct winding and mechanical assembly before load testing.
Lesson 3 • Winding Resistance and Balance Testing
Measures DC resistance of each phase and compares values to verify winding balance. Resistance imbalance indicates connection errors or incorrect wire gauge.
Lesson 4 • Acceptance Criteria and Test Reports
Defines pass/fail thresholds for each test and structures findings into a formal test report. Test reports provide traceability and support warranty and quality assurance processes.
Lesson 5 • Surge Comparison Testing
Uses surge testing to detect turn-to-turn shorts and coil-to-coil faults invisible to resistance tests. Surge test waveform interpretation is a critical diagnostic skill.
Chapter 8HideHide detailsSee detailsAdvanced Winding Design and Redesign
Advanced Winding Design and Redesign
Lesson 1 • Efficiency Improvement Rewinding
Applies premium wire, optimized pitch, and reduced resistance techniques to improve motor efficiency. Quantifies expected efficiency gain using standard loss analysis methods.
Lesson 2 • Armature Winding Design for DC Motors
Covers lap and wave winding design, commutator pitch, and equalizer connections for DC armatures. DC armature design requires additional commutation analysis not needed for AC motors.
Lesson 3 • Voltage and Frequency Conversion
Calculates new turns and wire gauge for voltage or frequency changes without altering the core. Covers both single-voltage and dual-voltage winding configurations.
Lesson 4 • Documenting and Presenting Redesign Packages
Structures redesign calculations, diagrams, and test predictions into a professional job package. Complete documentation enables peer review, customer approval, and future reference.
Lesson 5 • Winding Redesign Principles
Establishes the rules for changing voltage, speed, or power rating while preserving magnetic loading. Redesign decisions are grounded in flux density and current density limits.
Your valid completion certificate
This course is for you:
Maintenance electrician: wants to handle motor rewinds without outsourcing the work.
Industrial mechanic: regularly pulls motors and needs deeper electrical repair competency.
Apprentice winder: entering the trade and needs a structured, comprehensive skills foundation.
Small shop owner: looking to add motor rewinding as a core revenue-generating service.
Career changer: transitioning into skilled trades from an unrelated technical background.
Electrical engineering student: seeking practical winding knowledge to complement academic theory.
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