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Video Tutorial Transformers From Fundamentals to Practical Engineering! (1 Viewer)

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Transformers From Fundamentals to Practical Engineering!
Published 8/2026
Created by Dr. Mahmoud I Masoud
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 10 Lectures ( 2h 35m ) | Size: 1.4 GB​

Master Transformer Fundamentals, Theory, Analysis, Equivalent Circuits, and Testing with Worked Examples
What you'll learn

⚡ Understand Foundational Working Principles: Master Faraday's Law of Electromagnetic Induction and mutual coupling as applied to static electrical machines.
⚡ Master Core Principles: Learn Faraday's Law, electromagnetic induction, and mutual coupling in transformer operation. (110 chars) Explore History & Application
⚡ Analyze Construction: Differentiate core, shell, and toroidal designs, and learn how laminations cut eddy currents.
⚡ Optimize Winding Layouts: Evaluate two-winding configurations and see how interleaved windings minimize leakage flux
⚡ Visualize Flux with FEMM: Interpret FEMM 4.2 simulations to analyze magnetic flux paths and leakage reduction.
⚡ Build Equivalent Circuits: Progress from ideal models to exact and approximate referred equivalent circuit representations.
⚡ Refer Circuit Parameters: Convert voltages, currents, and impedances between primary and secondary sides with ease.
⚡ Calculate Transformer Efficiency: Determine core and copper losses to evaluate efficiency across full, partial, and max load.
⚡ Evaluate Voltage Regulation: Calculate voltage drop across primary and secondary sides under unity, lagging, and leading loads.
⚡ Construct Phasor Diagrams: Draw accurate phasor representations for resistive, inductive, capacitive, R-L, and R-C loads.
⚡ Execute Diagnostic Tests: Understand procedures for Turns Ratio (TTR), Open Circuit (No-Load), and Short Circuit tests.
⚡ Extract Model Parameters: Derive magnetizing branch and winding leakage impedances directly from experimental test data.
⚡ Solve Real Engineering Problems: Apply theoretical models and formulas to worked numerical examples and power grid scenarios.
Requirements

❗ Basic Electrical Circuit Theory: Understanding Ohm's Law, Kirchhoff's Laws (KVL/KCL), and basic AC circuit analysis (sinusoidal steady-state).
❗ Access my free Magnetic circuits course
❗ AC Power Fundamentals: Familiarity with single-phase AC systems, active power, reactive power, apparent power, and power factor.
Description

Transformers: Theory, Analysis, Equivalent Circuits & Testing
Are you looking to build a strong understanding of electrical transformers, from the fundamental principles all the way to practical analysis and testing? Whether you are encountering transformers for the first time, preparing for university examinations, refreshing your engineering knowledge, or working professionally with electrical power systems, this course is designed to take you through the subject in a clear, structured, and practical way. With detailed explanations and worked examples throughout, you will develop both the theoretical understanding and problem-solving skills needed to analyse transformers confidently.
What You Will Learn

✨ Understand transformer construction, core structures, winding arrangements, and the principle of operation.
✨ Analyse ideal and practical transformers, including voltage, current, turns ratios, and impedance referring.
✨ Develop and analyse the exact equivalent circuit of a practical transformer.
✨ Understand the first and second approximate equivalent circuits and when to use them.
✨ Calculate transformer losses, efficiency, and maximum efficiency.
✨ Understand and calculate voltage regulation under different load conditions and power factors.
✨ Draw and interpret transformer phasor diagrams and loading characteristics.
✨ Understand and perform transformer Turns Ratio, Open-Circuit, and Short-Circuit Tests.
✨ Determine transformer equivalent-circuit parameters from test results.
✨ Apply transformer theory to practical engineering problems through worked examples.
Why take this course?
✨Structured learning: Progress logically from fundamentals to advanced transformer analysis.
✨Practical approach: Concepts are reinforced through detailed worked examples.
✨Engineering focused: Connect theoretical principles with practical transformer applications.
✨Comprehensive coverage: Study modelling, performance, voltage regulation, efficiency, and testing in one course.
✨Suitable for different levels: Learn at your own pace and strengthen your existing knowledge.
Who is this course for?
✨ Beginners who want to understand transformers from the fundamentals.
✨ Undergraduate and postgraduate electrical engineering students.
✨ Engineers and professionals who want to refresh or strengthen their transformer knowledge.
✨ Electrical, power, and energy engineers working with transformer applications.
✨ Anyone preparing for examinations, technical interviews, or professional engineering development.
By the end of this course, you will have developed a solid understanding of transformer theory, construction, operation, equivalent-circuit modelling, performance analysis, voltage regulation, efficiency, and practical testing. Most importantly, you will be able to apply these concepts confidently to solve transformer-related engineering problems and interpret practical transformer performance.
Who this course is for

⭐ • Beginners who want to understand transformers from the fundamentals.
⭐ • Undergraduate and postgraduate electrical engineering students.
⭐ • Engineers and professionals who want to refresh or strengthen their transformer knowledge
⭐ • Electrical, power, and energy engineers working with transformer applications
⭐ • Anyone preparing for examinations, technical interviews, or professional engineering development.
Homepage
Code:
https://www.udemy.com/course/transformers-from-fundamentals-to-practical-engineering

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