Course Overview
Gain an excellent understanding of power electronics and power systems by taking this Power Electronics for Electrical Engineering course.
The Power Electronics for Electrical Engineering course will provide a thorough overview of power electronics fundamentals and their importance. Here, you will learn about the power electronics components and understand the working principle of rectifier circuits. Furthermore, you will learn about the design and implementation of AC and DC choppers and explore the fundamentals of inverters in power electronics.
Learning Outcomes
Identify the primary purpose of power electronics
Understand how power electronics work
Know about rectifiers and their operations
Determine how AC and DC choppers work
Gain insights into the inverter fundamentals and types
Who is this course for?
Anyone interested in improving their knowledge of electrical circuit analysis can take this Power Electronics for Electrical Engineering course.
Entry Requirement
This course is available to all learners, of all academic backgrounds.
Learners should be aged 16 or over to undertake the qualification.
Good understanding of English language, numeracy and ICT are required to attend this course.
Certification
After you have successfully completed the course, you will be able to obtain an Accredited Certificate of Achievement. You can however also obtain a Course Completion Certificate following the course completion without sitting for the test. Certificates can be obtained either in hardcopy at the cost of £39 or in PDF format at the cost of £24.
PDF certificate's turnaround time is 24 hours, and for the hardcopy certificate, it is 3-9 working days.
Why choose us?
Affordable, engaging & high-quality e-learning study materials;
Tutorial videos/materials from the industry-leading experts;
Study in a user-friendly, advanced online learning platform;
Efficient exam systems for the assessment and instant result;
The UK & internationally recognized accredited qualification;
Access to course content on mobile, tablet or desktop from anywhere anytime;
The benefit of career advancement opportunities;
24/7 student support via email.
Career Path
Power Electronics for Electrical Engineering course offers useful skills to possess and would be beneficial for any relevant profession or career such as:
Electronics: Apprentice Electrician
Electronics: Industrial Electricians
Electronics: Commercial Electrician
Electronics: Residential Electrician
Electronics: Maintenance Electrician
Auto Electrician
Unit 1- Introduction to Power Electronics Components
Module 1- Introduction to Power Electronics 00:13:00
Module 2- Uncontrolled Switches 00:17:00
Module 3- What is the Benefit of Diode 00:06:00
Module 4- Semi-Controlled Switches Part 1 00:09:00
Module 5- Semi-Controlled Switches Part 2 00:14:00
Module 6- Semi-Controlled Switches Part 3 00:05:00
Module 7- What is the Benefit of Thyristor 00:05:00
Module 8- Fully Controlled Switches Part 1 00:17:00
Module 9- Fully Controlled Switches Part 2 00:10:00
Module 10- Fully Controlled Switches Part 3 00:12:00
Unit 2- Fundamentals of Rectifier Circuits
Module 1- Overview on Rectifiers 00:02:00
Module 2- Rectifier Definition 00:01:00
Module 3- Half Wave Uncontrolled Rectifier with R Load 00:21:00
Module 4- Example on Half Wave Uncontrolled Rectifier with R Load Part 1 00:06:00
Module 5- Example on Half Wave Uncontrolled Rectifier with R Load Part 2 00:07:00
Module 6- Half Wave Uncontrolled Rectifier with RL Load 00:10:00
Module 7- Derivation of the Discontinuous Current in R-L Load 00:08:00
Module 8- Freewheeling Diode (Commutation Diode) 00:03:00
Module 9- Half Wave R-L Load with FWD 00:09:00
Module 10- Difference Between Continuous and Discontinuous Mode in RL Load 00:07:00
Module 11- Half Wave RL Load with FWD Continuous Mode 00:06:00
Module 12- Example on Half Wave Rectifier with FWD 00:07:00
Module 13- Bridge Full Wave Uncontrolled Rectifier Part 1 00:07:00
Module 14- Bridge Full Wave Uncontrolled Rectifier Part 2 00:05:00
Module 15- Quick Revision on Bridge Full Wave Uncontrolled Rectifier 00:06:00
Module 16- Firing Angle 00:02:00
Module 17- Half Wave Controlled Rectifier R Load 00:05:00
Module 18- Half Wave Controlled Rectifier R-L Load 00:04:00
Module 19- Half Controlled R-L Load with FWD 00:06:00
Module 20- Example 1 00:07:00
Module 21- Example 2 00:08:00
Module 22- Example 3 00:13:00
Module 23- Example 4 00:09:00
Module 24- Example 5 00:05:00
Module 25- Fully Controlled Bridge Rectifier Part 1 00:06:00
Module 26- Fully Controlled Bridge Rectifier Part 2 00:06:00
Module 27- Quick Revision on Bridge Full Wave Controlled Rectifier 00:02:00
Module 28- Example 6 00:08:00
Module 29- Half Controlled Bridge Rectifier 00:08:00
Module 30- Half Controlled Bridge Rectifier with FWD 00:05:00
Module 31- Example 7 00:06:00
Module 32- Example 8 00:07:00
Module 33- Performance Parameters 00:04:00
Module 34- Power Factor 00:04:00
Unit 3- Fundamentals of AC Choppers
Module 1- Introduction to AC Choppers 00:02:00
Module 2- Definition of AC Choppers 00:05:00
Module 3- Switching Techniques in AC Choppers 00:06:00
Module 4- Applications on AC Choppers 00:03:00
Module 5- Types of AC Choppers 00:02:00
Module 6- AC Chopper with R Load 00:14:00
Module 7- Example 1 on AC Chopper with R Load 00:06:00
Module 8- Example 2 on AC Chopper with R Load 00:04:00
Module 9- AC Chopper with L Load Part 1 00:13:00
Module 10- AC Chopper with L Load Part 2 00:06:00
Module 11- Example on AC Chopper with L Load 00:08:00
Module 12- AC Chopper with RL Series Load 00:20:00
Module 13- Example on AC Chopper with RL Series Load 00:07:00
Module 14- AC Chopper with RL Parallel Load 00:25:00
Module 15- Example on AC Chopper with RL Parallel Load 00:06:00
Module 16- AC Chopper with Pure Capacitive Load 00:14:00
Module 17- Example on AC Chopper with Pure Capacitive Load 00:04:00
Module 18- AC Chopper Loaded by Heavy Rectifier 00:06:00
Module 19- AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf 00:12:00
Module 20- Example on AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf 00:08:00
Module 21- Integral Cycle Control 00:11:00
Module 22- Example on Integral Cycle Control 00:04:00
Unit 4- Fundamentals of DC Choppers
Module 1- Introduction to DC Choppers 00:02:00
Module 2- Definition and Application of DC Choppers 00:05:00
Module 3- Step down DC Chopper with R Load 00:12:00
Module 4- Example on Step Down DC Chopper with R Load 00:08:00
Module 5- Generation of Duty Cycle 00:09:00
Module 6- Switching Techniques 00:03:00
Module 7- Step Down DC Chopper with RLE Load Part 1 00:19:00
Module 8- Step Down DC Chopper with RLE Load Part 2 00:15:00
Module 9- Example 1 on Step Down DC Chopper with RLE Load 00:13:00
Module 10- Example 2 on Step Down DC Chopper with RLE Load 00:02:00
Module 11- Step Up DC Chopper with R or RL Load 00:09:00
Module 12- Step Up DC Chopper with RE Load 00:15:00
Module 13- Example on Step Up DC Chopper with RE Load 00:20:00
Module 14- Buck Regulator Part 1 00:16:00
Module 15- Buck Regulator Part 2 00:17:00
Module 16- Example on Buck Regulator 00:03:00
Module 17- Boost Regulator 00:23:00
Module 18- Example on Boost Regulator 00:06:00
Module 19- Buck Boost Converter 00:17:00
Module 20- Example on Buck-Boost Converter 00:05:00
Unit 5- Fundamentals of Inverters
Module 1- Introduction to Inverters 00:02:00
Module 2- Definition of Inverters 00:04:00
Module 3- Importance and Applications of Inverters 00:08:00
Module 4- Single Phase Half Bridge R-Load 00:15:00
Module 5- Single Phase Half Bridge RL- Load 00:08:00
Module 6- Performance Parameters of an Inverter 00:05:00
Module 7- Example on Single Phase Half Bridge 00:10:00
Module 8- Single Phase Bridge Inverter R- Load 00:06:00
Module 9- Single Phase Bridge Inverter RL- Load 00:07:00
Module 10- Example on Single Phase Bridge Inverter 00:06:00
Module 11- Three Phase Inverters and Obtaining the Line Voltages 00:15:00
Module 12- Three Phase Inverters and Obtaining The Phase Voltages 00:17:00
Module 13- Example on Three Phase Inverters 00:16:00
Module 14- Single Pulse Width Modulation 00:13:00
Module 15- Multiple Pulse Width Modulation 00:13:00
Module 16- Example on Multiple Pulse Width Modulation 00:04:00
Module 17- Sinusoidal Pulse Width Modulation 00:16:00
Module 18- Industrial Inverter 00:03:00
Certificate and Transcript
Order Your Certificates and Transcripts 00:00:00
Delivered Online On DemandOn-demand course15 hours 1 minutes
Overview
Uplift Your Career & Skill Up to Your Dream Job - Learning Simplified From Home!
Kickstart your career & boost your employability by helping you discover your skills, talents and interests with our special Power Electronics for Electrical Engineering Course. You'll create a pathway to your ideal job as this course is designed to uplift your career in the relevant industry. It provides professional training that employers are looking for in today's workplaces.
The Power Electronics for Electrical Engineering Course is one of the most prestigious training offered at StudyHub and is highly valued by employers for good reason. This Power Electronics for Electrical Engineering Course has been designed by industry experts to provide our learners with the best learning experience possible to increase their understanding of their chosen field.
This Power Electronics for Electrical Engineering Course, like every one of Study Hub's courses, is meticulously developed and well researched. Every one of the topics is divided into elementary modules, allowing our students to grasp each lesson quickly.
At StudyHub, we don't just offer courses; we also provide a valuable teaching process. When you buy a course from StudyHub, you get unlimited Lifetime access with 24/7 dedicated tutor support.
Why buy this Power Electronics for Electrical Engineering?
Unlimited access to the course for forever
Digital Certificate, Transcript, student ID all included in the price
Absolutely no hidden fees
Directly receive CPD accredited qualifications after course completion
Receive one to one assistance on every weekday from professionals
Immediately receive the PDF certificate after passing
Receive the original copies of your certificate and transcript on the next working day
Easily learn the skills and knowledge from the comfort of your home
Certification
After studying the course materials of the Power Electronics for Electrical Engineering there will be a written assignment test which you can take either during or at the end of the course. After successfully passing the test you will be able to claim the pdf certificate for £5.99. Original Hard Copy certificates need to be ordered at an additional cost of £9.60.
Who is this course for?
This Power Electronics for Electrical Engineering course is ideal for
Students
Recent graduates
Job Seekers
Anyone interested in this topic
People already working in the relevant fields and want to polish their knowledge and skill.
Prerequisites
This Power Electronics for Electrical Engineering does not require you to have any prior qualifications or experience. You can just enrol and start learning.This Power Electronics for Electrical Engineering was made by professionals and it is compatible with all PC's, Mac's, tablets and smartphones. You will be able to access the course from anywhere at any time as long as you have a good enough internet connection.
Career path
As this course comes with multiple courses included as bonus, you will be able to pursue multiple occupations. This Power Electronics for Electrical Engineering is a great way for you to gain multiple skills from the comfort of your home.
Course Curriculum
Unit 1- Introduction to Power Electronics Components
Module 1- Introduction to Power Electronics 00:13:00
Module 2- Uncontrolled Switches 00:17:00
Module 3- What is the Benefit of Diode 00:06:00
Module 4- Semi-Controlled Switches Part 1 00:09:00
Module 5- Semi-Controlled Switches Part 2 00:14:00
Module 6- Semi-Controlled Switches Part 3 00:05:00
Module 7- What is the Benefit of Thyristor 00:05:00
Module 8- Fully Controlled Switches Part 1 00:17:00
Module 9- Fully Controlled Switches Part 2 00:10:00
Module 10- Fully Controlled Switches Part 3 00:12:00
Unit 2- Fundamentals of Rectifier Circuits
Module 1- Overview on Rectifiers 00:02:00
Module 2- Rectifier Definition 00:01:00
Module 3- Half Wave Uncontrolled Rectifier with R Load 00:21:00
Module 4- Example on Half Wave Uncontrolled Rectifier with R Load Part 1 00:06:00
Module 5- Example on Half Wave Uncontrolled Rectifier with R Load Part 2 00:07:00
Module 6- Half Wave Uncontrolled Rectifier with RL Load 00:10:00
Module 7- Derivation of the Discontinuous Current in R-L Load 00:08:00
Module 8- Freewheeling Diode (Commutation Diode) 00:03:00
Module 9- Half Wave R-L Load with FWD 00:09:00
Module 10- Difference Between Continuous and Discontinuous Mode in RL Load 00:07:00
Module 11- Half Wave RL Load with FWD Continuous Mode 00:06:00
Module 12- Example on Half Wave Rectifier with FWD 00:07:00
Module 13- Bridge Full Wave Uncontrolled Rectifier Part 1 00:07:00
Module 14- Bridge Full Wave Uncontrolled Rectifier Part 2 00:05:00
Module 15- Quick Revision on Bridge Full Wave Uncontrolled Rectifier 00:06:00
Module 16- Firing Angle 00:02:00
Module 17- Half Wave Controlled Rectifier R Load 00:05:00
Module 18- Half Wave Controlled Rectifier R-L Load 00:04:00
Module 19- Half Controlled R-L Load with FWD 00:06:00
Module 20- Example 1 00:07:00
Module 21- Example 2 00:08:00
Module 22- Example 3 00:13:00
Module 23- Example 4 00:09:00
Module 24- Example 5 00:05:00
Module 25- Fully Controlled Bridge Rectifier Part 1 00:06:00
Module 26- Fully Controlled Bridge Rectifier Part 2 00:06:00
Module 27- Quick Revision on Bridge Full Wave Controlled Rectifier 00:02:00
Module 28- Example 6 00:08:00
Module 29- Half Controlled Bridge Rectifier 00:08:00
Module 30- Half Controlled Bridge Rectifier with FWD 00:05:00
Module 31- Example 7 00:06:00
Module 32- Example 8 00:07:00
Module 33- Performance Parameters 00:04:00
Module 34- Power Factor 00:04:00
Unit 3- Fundamentals of AC Choppers
Module 1- Introduction to AC Choppers 00:02:00
Module 2- Definition of AC Choppers 00:05:00
Module 3- Switching Techniques in AC Choppers 00:06:00
Module 4- Applications on AC Choppers 00:03:00
Module 5- Types of AC Choppers 00:02:00
Module 6- AC Chopper with R Load 00:14:00
Module 7- Example 1 on AC Chopper with R Load 00:06:00
Module 8- Example 2 on AC Chopper with R Load 00:04:00
Module 9- AC Chopper with L Load Part 1 00:13:00
Module 10- AC Chopper with L Load Part 2 00:06:00
Module 11- Example on AC Chopper with L Load 00:08:00
Module 12- AC Chopper with RL Series Load 00:20:00
Module 13- Example on AC Chopper with RL Series Load 00:07:00
Module 14- AC Chopper with RL Parallel Load 00:25:00
Module 15- Example on AC Chopper with RL Parallel Load 00:06:00
Module 16- AC Chopper with Pure Capacitive Load 00:14:00
Module 17- Example on AC Chopper with Pure Capacitive Load 00:04:00
Module 18- AC Chopper Loaded by Heavy Rectifier 00:06:00
Module 19- AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf 00:12:00
Module 20- Example on AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf 00:08:00
Module 21- Integral Cycle Control 00:11:00
Module 22- Example on Integral Cycle Control 00:04:00
Unit 4- Fundamentals of DC Choppers
Module 1- Introduction to DC Choppers 00:02:00
Module 2- Definition and Application of DC Choppers 00:05:00
Module 3- Step down DC Chopper with R Load 00:12:00
Module 4- Example on Step Dwon DC Chopper with R Load 00:08:00
Module 5- Generation of Duty Cycle 00:09:00
Module 6- Switching Techniques 00:03:00
Module 7- Step Down DC Chopper with RLE Load Part 1 00:19:00
Module 8- Step Down DC Chopper with RLE Load Part 2 00:15:00
Module 9- Example 1 on Step Down DC Chopper with RLE Load 00:13:00
Module 10- Example 2 on Step Down DC Chopper with RLE Load 00:02:00
Module 11- Step Up DC Chopper with R or RL Load 00:09:00
Module 12- Step Up DC Chopper with RE Load 00:15:00
Module 13- Example on Step Up DC Chopper with RE Load 00:20:00
Module 14- Buck Regulator Part 1 00:16:00
Module 15- Buck Regulator Part 2 00:17:00
Module 16- Example on Buck Regulator 00:03:00
Module 17- Boost Regulator 00:23:00
Module 18- Example on Boost Regulator 00:06:00
Module 19- Buck Boost Converter 00:17:00
Module 20- Example on Buck-Boost Converter 00:05:00
Unit 5- Fundamentals of Inverters
Module 1- Introduction to Inverters 00:02:00
Module 2- Definition of Inverters 00:04:00
Module 3- Importance and Applications of Inverters 00:08:00
Module 4- Single Phase Half Bridge R-Load 00:15:00
Module 5- Single Phase Half Bridge RL- Load 00:08:00
Module 6- Performance Parameters of an Inverter 00:05:00
Module 7- Example on Single Phase Half Bridge 00:10:00
Module 8- Single Phase Bridge Inverter R- Load 00:06:00
Module 9- Single Phase Bridge Inverter RL- Load 00:07:00
Module 10- Example on Single Phase Bridge Inverter 00:06:00
Module 11- Three Phase Inverters and Obtaining the Line Voltages 00:15:00
Module 12- Threee Phase Inverters and Obtaining The Phase Voltages 00:17:00
Module 13- Example on Three Phase Inverters 00:16:00
Module 14- Single Pulse Width Modulation 00:13:00
Module 15- Multiple Pulse Width Modulation 00:13:00
Module 16- Example on Multiple Pulse Width Modulation 00:04:00
Module 17- Sinusoidal Pulse Width Modulation 00:16:00
Module 18- Industrial Inverter 00:03:00
Assignment
Assignment - Power Electronics for Electrical Engineering 00:00:00
Delivered Online On DemandOn-demand course15 hours 1 minutes
Overview
Uplift Your Career & Skill Up to Your Dream Job - Learning Simplified From Home!
Kickstart your career & boost your employability by helping you discover your skills, talents and interests with our special Electrical Machines for Electrical Engineering Course. You'll create a pathway to your ideal job as this course is designed to uplift your career in the relevant industry. It provides professional training that employers are looking for in today's workplaces.
The Electrical Machines for Electrical Engineering Course is one of the most prestigious training offered at StudyHub and is highly valued by employers for good reason. This Electrical Machines for Electrical Engineering Course has been designed by industry experts to provide our learners with the best learning experience possible to increase their understanding of their chosen field.
This Electrical Machines for Electrical Engineering Course, like every one of Study Hub's courses, is meticulously developed and well researched. Every one of the topics is divided into elementary modules, allowing our students to grasp each lesson quickly.
At StudyHub, we don't just offer courses; we also provide a valuable teaching process. When you buy a course from StudyHub, you get unlimited Lifetime access with 24/7 dedicated tutor support.
Why buy this Electrical Machines for Electrical Engineering?
Unlimited access to the course for forever
Digital Certificate, Transcript, student ID all included in the price
Absolutely no hidden fees
Directly receive CPD accredited qualifications after course completion
Receive one to one assistance on every weekday from professionals
Immediately receive the PDF certificate after passing
Receive the original copies of your certificate and transcript on the next working day
Easily learn the skills and knowledge from the comfort of your home
Certification
After studying the course materials of the Electrical Machines for Electrical Engineering there will be a written assignment test which you can take either during or at the end of the course. After successfully passing the test you will be able to claim the pdf certificate for £5.99. Original Hard Copy certificates need to be ordered at an additional cost of £9.60.
Who is this course for?
This Electrical Machines for Electrical Engineering course is ideal for
Students
Recent graduates
Job Seekers
Anyone interested in this topic
People already working in the relevant fields and want to polish their knowledge and skill.
Prerequisites
This Electrical Machines for Electrical Engineering does not require you to have any prior qualifications or experience. You can just enrol and start learning.This Electrical Machines for Electrical Engineering was made by professionals and it is compatible with all PC's, Mac's, tablets and smartphones. You will be able to access the course from anywhere at any time as long as you have a good enough internet connection.
Career path
As this course comes with multiple courses included as bonus, you will be able to pursue multiple occupations. This Electrical Machines for Electrical Engineering is a great way for you to gain multiple skills from the comfort of your home.
Course Curriculum
Unit 1: Introduction to Electric Machines
Module 1- Introduction to Electric Machines 00:03:00
Module 2- Types of Electric Machines and Principle of Electrical Generation 00:09:00
Unit 2: DC Machines
Module 1- Importance and Construction of DC Machines 00:26:00
Module 2- Armature Winding and EMF Equation 00:40:00
Module 3-Solved Example 1 00:05:00
Module 4-Solved Example 2 00:04:00
Module 5-Solved Example 3 00:07:00
Module 6-Solved Example 4 00:06:00
Module 7-Separately Excited DC Machine 00:21:00
Module 8-Shunt and Series DC Machines 00:25:00
Module 9-Solved Example 1 on Separately Excited DC Machine 00:07:00
Module 10-Solved Example 2 on Separately Excited DC Machine 00:07:00
Module 11-Solved Example 3 on Shunt Generator 00:04:00
Module 12-Solved Example 4 on Shunt Generator 00:07:00
Module 13-Solved Example 5 on Series DC Generator 00:06:00
Module 14-Types and Applications of Compound DC Motors 00:07:00
Module 15- Torque-Speed Characteristics and Speed Control of Separately Excited DC Motor 00:33:00
Module 16- Torque-Speed Characteristics of Series DC Motor 00:08:00
Module 17-Solved Example 1 on Speed Control 00:08:00
Module 18-Solved Example 2 on Speed Control 00:06:00
Module 19- Starting of DC Machine 00:14:00
Module 20- Armature Reaction in DC Machines 00:10:00
Module 21-Losses in DC Machines 00:04:00
Unit 3: Construction of Transformers
Module 1- What is a Transformer 00:02:00
Module 2- Importance of Transformer 00:04:00
Module 3-Iron Core of Transformer 00:04:00
Module 4- Magnetic Circuit Inside Transformer 00:05:00
Module 5- Windings of Transformer 00:03:00
Module 6- Why are Windings Made of Copper 00:01:00
Module 7- Classification of Windings 00:05:00
Module 8- Insulating Material and Transformer Oil 00:02:00
Module 9- Conservator of Transformer 00:03:00
Module 10- Breather of Transformer 00:04:00
Module 11- Bushings of Transformer 00:04:00
Module 12- Tap Changer of Transformer 00:03:00
Module 13- Cooling Tubes of Transformer 00:01:00
Module 14- Buchholz Relay of Transformer 00:02:00
Module 15- Explosion Vent 00:02:00
Module 16- Methods of Cooling 00:03:00
Module 17-Types of Transformers 00:03:00
Module 18- Power Transformer and Distribution Transformer 00:05:00
Module 19- Single Phase Core Type Transformer 00:04:00
Module 20-Single Phase Shell Type Transformer 00:05:00
Module 21- 3 Phase Core Type 00:02:00
Module 22- 3 Phase Shell Type 00:01:00
Module 23- Comparison between Shell and Core CSA 00:01:00
Module 24- Comparison between Shell and Core Type 00:01:00
Module 25- Notes 00:03:00
Module 26-Video Explaining The Components in 3D and Real Life 00:05:00
Unit 4: Fundamentals of Magnetic Circuits
Module 1- Introduction to Magnetic Circuits 00:02:00
Module 2- Induced Emf and Current 00:04:00
Module 3- Ampere Right Hand Rule 00:04:00
Module 4- Magnetic Circuit and Important Definitions 00:06:00
Module 5- Linear and Non Linear Materials 00:03:00
Module 6-Flux Linkage and Reluctance 00:04:00
Module 7- Analogy between Electric and Magnetic Circuits 00:06:00
Module 8- Fringing Effect 00:02:00
Module 9- Example 1 Magnetic Circuits 00:07:00
Module 10- Example 2 00:03:00
Module 11- Example 3 00:06:00
Module 12- Application on Magnetic Circuit - Transformers 00:04:00
Unit 5: Theoretical Part on Transformers
Module 1- Introduction to Transformers 00:02:00
Module 2- Construction of Transformer 00:02:00
Module 3-Theory of Operation 00:04:00
Module 4- Ideal Transformer 00:05:00
Module 5-Non Ideal Transformer 00:02:00
Module 6- Effect of Loading on Transformer 00:03:00
Module 7- Transformer Regulation 00:03:00
Module 8- Transformer Losses 00:03:00
Module 9- Transformer Efficiency 00:05:00
Module 10- Transformer Rating 00:02:00
Module 11- Question 1 00:01:00
Module 12- Question 2 00:02:00
Module 13- Question 3 00:01:00
Module 14- Example 1 00:01:00
Module 15- Voltage Relation of Transformer 00:04:00
Module 16- Transformer Exact Equivalent Circuit 00:06:00
Module 17- Concept of Refereeing 00:04:00
Module 18- Approximate Equivalent Circuit 00:02:00
Unit 6: Synchronous Machines
Module 1- Construction and Principle of Operation of Synchronous Generator 00:29:00
Module 2- Principle of Operation of Synchronous Motor 00:24:00
Module 3- Equivalent Circuit and Phasor Diagram of Non Salient Synchronous Machine 00:29:00
Module 4-Solved Example 1 on Non Salient Machine 00:05:00
Module 5-Solved Example 2 on Non Salient Machine 00:11:00
Module 6-Solved Example 3 on Non Salient Machine 00:07:00
Module 7- Solved Example 4 on Non Salient Machine 00:04:00
Module 8-Solved Example 5 on Non Salient Machine 00:07:00
Module 9-Solved Example 6 on Non Salient Machine 00:03:00
Module 10- Equivalent Circuit and Phasor Diagram of Salient Synchronous Machine 00:39:00
Module 11-Solved Example 1 on Salient Machine 00:09:00
Module 12- Solved Example 2 on Salient Machine 00:05:00
Module 13-Solved Example 3 on Salient Machine 00:10:00
Module 14- Parallel Operation of Two Generators 00:17:00
Module 15- Synchronization of Machine with Grid 00:10:00
Unit 7: Induction Machines
Module 1- Construction and Theory of Operation of Induction Machines 00:27:00
Module 2- Equivalent Circuit and Power Flow in Induction Motor 00:23:00
Module 3- Torque-Speed Characteristics of Induction Motor 00:20:00
Module 4- Solved Example 1 on Induction Motor 00:08:00
Module 5-Solved Example 2 on Induction Motor 00:06:00
Module 6-Solved Example 3 on Induction Motor 00:06:00
Module 7-Solved Example 4 on Induction Motor 00:18:00
Module 8-Solved Example 5 on Induction Motor 00:13:00
Module 9- Methods of Speed Control of Induction Motor 00:27:00
Module 10- Methods of Starting of Induction Motor 00:21:00
Module 11-Solved Example on Motor Starter 00:15:00
Module 12- Principle of Operation of Doubly Fed Induction Generator 00:11:00
Module 13-Self Excited Induction Generator 00:08:00
Assignment
Assignment - Electrical Machines for Electrical Engineering 00:00:00
Delivered Online On DemandOn-demand course14 hours 20 minutes
Overview
This Power Electronics for Electrical Engineering course will unlock your full potential and will show you how to excel in a career in Power Electronics for Electrical Engineering. So upskill now and reach your full potential. Everything you need to get started in Power Electronics for Electrical Engineering is available in this course.
Learning and progressing are the hallmarks of personal development. This Power Electronics for Electrical Engineering will quickly teach you the must-have skills needed to start in the relevant industry.
In This Power Electronics for Electrical Engineering Course, You Will:
Learn strategies to boost your workplace efficiency.
Hone your Power Electronics for Electrical Engineering skills to help you advance your career.
Acquire a comprehensive understanding of various Power Electronics for Electrical Engineering topics and tips from industry experts.
Learn in-demand Power Electronics for Electrical Engineering skills that are in high demand among UK employers, which will help you to kickstart your career.
This Power Electronics for Electrical Engineering course covers everything you must know to stand against the tough competition in the Power Electronics for Electrical Engineering field.
The future is truly yours to seize with this Power Electronics for Electrical Engineering. Enrol today and complete the course to achieve a Power Electronics for Electrical Engineering certificate that can change your professional career forever.
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Study online - whenever and wherever you want.
One-to-one support from a dedicated tutor throughout your course.
Certificate immediately upon course completion
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Enrolling in the Power Electronics for Electrical Engineering course can assist you in getting into your desired career quicker than you ever imagined. So without further ado, start now.
Process of Evaluation
After studying the Power Electronics for Electrical Engineering course, your skills and knowledge will be tested with a MCQ exam or assignment. You must get a score of 60% to pass the test and get your certificate.
Certificate of Achievement
Upon successfully completing the Power Electronics for Electrical Engineering course, you will get your CPD accredited digital certificate immediately. And you can also claim the hardcopy certificate completely free of charge. All you have to do is pay a shipping charge of just £3.99.
Who Is This Course for?
This Power Electronics for Electrical Engineering is suitable for anyone aspiring to start a career in Power Electronics for Electrical Engineering; even if you are new to this and have no prior knowledge on Power Electronics for Electrical Engineering, this course is going to be very easy for you to understand.
And if you are already working in the Power Electronics for Electrical Engineering field, this course will be a great source of knowledge for you to improve your existing skills and take them to the next level.
Taking this Power Electronics for Electrical Engineering course is a win-win for you in all aspects.
This course has been developed with maximum flexibility and accessibility, making it ideal for people who don't have the time to devote to traditional education.
Requirements
This Power Electronics for Electrical Engineering course has no prerequisite.
You don't need any educational qualification or experience to enrol in the Power Electronics for Electrical Engineering course.
Do note: you must be at least 16 years old to enrol.
Any internet-connected device, such as a computer, tablet, or smartphone, can access this online Power Electronics for Electrical Engineering course.
Moreover, this course allows you to learn at your own pace while developing transferable and marketable skills.
Course Curriculum
Unit 1- Introduction to Power Electronics Components
Module 1- Introduction to Power Electronics 00:13:00
Module 2- Uncontrolled Switches 00:17:00
Module 3- What is the Benefit of Diode 00:06:00
Module 4- Semi-Controlled Switches Part 1 00:09:00
Module 5- Semi-Controlled Switches Part 2 00:14:00
Module 6- Semi-Controlled Switches Part 3 00:05:00
Module 7- What is the Benefit of Thyristor 00:05:00
Module 8- Fully Controlled Switches Part 1 00:17:00
Module 9- Fully Controlled Switches Part 2 00:10:00
Module 10- Fully Controlled Switches Part 3 00:12:00
Unit 2- Fundamentals of Rectifier Circuits
Module 1- Overview on Rectifiers 00:02:00
Module 2- Rectifier Definition 00:01:00
Module 3- Half Wave Uncontrolled Rectifier with R Load 00:21:00
Module 4- Example on Half Wave Uncontrolled Rectifier with R Load Part 1 00:06:00
Module 5- Example on Half Wave Uncontrolled Rectifier with R Load Part 2 00:07:00
Module 6- Half Wave Uncontrolled Rectifier with RL Load 00:10:00
Module 7- Derivation of the Discontinuous Current in R-L Load 00:08:00
Module 8- Freewheeling Diode (Commutation Diode) 00:03:00
Module 9- Half Wave R-L Load with FWD 00:09:00
Module 10- Difference Between Continuous and Discontinuous Mode in RL Load 00:07:00
Module 11- Half Wave RL Load with FWD Continuous Mode 00:06:00
Module 12- Example on Half Wave Rectifier with FWD 00:07:00
Module 13- Bridge Full Wave Uncontrolled Rectifier Part 1 00:07:00
Module 14- Bridge Full Wave Uncontrolled Rectifier Part 2 00:05:00
Module 15- Quick Revision on Bridge Full Wave Uncontrolled Rectifier 00:06:00
Module 16- Firing Angle 00:02:00
Module 17- Half Wave Controlled Rectifier R Load 00:05:00
Module 18- Half Wave Controlled Rectifier R-L Load 00:04:00
Module 19- Half Controlled R-L Load with FWD 00:06:00
Module 20- Example 1 00:07:00
Module 21- Example 2 00:08:00
Module 22- Example 3 00:13:00
Module 23- Example 4 00:09:00
Module 24- Example 5 00:05:00
Module 25- Fully Controlled Bridge Rectifier Part 1 00:06:00
Module 26- Fully Controlled Bridge Rectifier Part 2 00:06:00
Module 27- Quick Revision on Bridge Full Wave Controlled Rectifier 00:02:00
Module 28- Example 6 00:08:00
Module 29- Half Controlled Bridge Rectifier 00:08:00
Module 30- Half Controlled Bridge Rectifier with FWD 00:05:00
Module 31- Example 7 00:06:00
Module 32- Example 8 00:07:00
Module 33- Performance Parameters 00:04:00
Module 34- Power Factor 00:04:00
Unit 3- Fundamentals of AC Choppers
Module 1- Introduction to AC Choppers 00:02:00
Module 2- Definition of AC Choppers 00:05:00
Module 3- Switching Techniques in AC Choppers 00:06:00
Module 4- Applications on AC Choppers 00:03:00
Module 5- Types of AC Choppers 00:02:00
Module 6- AC Chopper with R Load 00:14:00
Module 7- Example 1 on AC Chopper with R Load 00:06:00
Module 8- Example 2 on AC Chopper with R Load 00:04:00
Module 9- AC Chopper with L Load Part 1 00:13:00
Module 10- AC Chopper with L Load Part 2 00:06:00
Module 11- Example on AC Chopper with L Load 00:08:00
Module 12- AC Chopper with RL Series Load 00:20:00
Module 13- Example on AC Chopper with RL Series Load 00:07:00
Module 14- AC Chopper with RL Parallel Load 00:25:00
Module 15- Example on AC Chopper with RL Parallel Load 00:06:00
Module 16- AC Chopper with Pure Capacitive Load 00:14:00
Module 17- Example on AC Chopper with Pure Capacitive Load 00:04:00
Module 18- AC Chopper Loaded by Heavy Rectifier 00:06:00
Module 19- AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf 00:12:00
Module 20- Example on AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf 00:08:00
Module 21- Integral Cycle Control 00:11:00
Module 22- Example on Integral Cycle Control 00:04:00
Unit 4- Fundamentals of DC Choppers
Module 1- Introduction to DC Choppers 00:02:00
Module 2- Definition and Application of DC Choppers 00:05:00
Module 3- Step down DC Chopper with R Load 00:12:00
Module 4- Example on Step Dwon DC Chopper with R Load 00:08:00
Module 5- Generation of Duty Cycle 00:09:00
Module 6- Switching Techniques 00:03:00
Module 7- Step Down DC Chopper with RLE Load Part 1 00:19:00
Module 8- Step Down DC Chopper with RLE Load Part 2 00:15:00
Module 9- Example 1 on Step Down DC Chopper with RLE Load 00:13:00
Module 10- Example 2 on Step Down DC Chopper with RLE Load 00:02:00
Module 11- Step Up DC Chopper with R or RL Load 00:09:00
Module 12- Step Up DC Chopper with RE Load 00:15:00
Module 13- Example on Step Up DC Chopper with RE Load 00:20:00
Module 14- Buck Regulator Part 1 00:16:00
Module 15- Buck Regulator Part 2 00:17:00
Module 16- Example on Buck Regulator 00:03:00
Module 17- Boost Regulator 00:23:00
Module 18- Example on Boost Regulator 00:06:00
Module 19- Buck Boost Converter 00:17:00
Module 20- Example on Buck-Boost Converter 00:05:00
Unit 5- Fundamentals of Inverters
Module 1- Introduction to Inverters 00:02:00
Module 2- Definition of Inverters 00:04:00
Module 3- Importance and Applications of Inverters 00:08:00
Module 4- Single Phase Half Bridge R-Load 00:15:00
Module 5- Single Phase Half Bridge RL- Load 00:08:00
Module 6- Performance Parameters of an Inverter 00:05:00
Module 7- Example on Single Phase Half Bridge 00:10:00
Module 8- Single Phase Bridge Inverter R- Load 00:06:00
Module 9- Single Phase Bridge Inverter RL- Load 00:07:00
Module 10- Example on Single Phase Bridge Inverter 00:06:00
Module 11- Three Phase Inverters and Obtaining the Line Voltages 00:15:00
Module 12- Threee Phase Inverters and Obtaining The Phase Voltages 00:17:00
Module 13- Example on Three Phase Inverters 00:16:00
Module 14- Single Pulse Width Modulation 00:13:00
Module 15- Multiple Pulse Width Modulation 00:13:00
Module 16- Example on Multiple Pulse Width Modulation 00:04:00
Module 17- Sinusoidal Pulse Width Modulation 00:16:00
Module 18- Industrial Inverter 00:03:00
Delivered Online On DemandOn-demand course15 hours 1 minutes
£11
Electrical Engineering - Electrical Machines Complete Online Training
Electrical Engineering - Electrical Machines Complete Training Overview
Are you looking to begin your electrical machines career or want to develop more advanced skills in electrical machines? Then this electrical engineering - electrical machines complete online training course will set you up with a solid foundation to become a confident electrical engineer and help you to develop your expertise in electrical machines.
This electrical engineering - electrical machines complete online training course is accredited by the CPD UK & IPHM. CPD is globally recognised by employers, professional organisations and academic intuitions, thus a certificate from CPD Certification Service creates value towards your professional goal and achievement. CPD certified certificates are accepted by thousands of professional bodies and government regulators here in the UK and around the world.
Whether you are self-taught and you want to fill in the gaps for better efficiency and productivity, this electrical engineering - electrical machines complete online training course will set you up with a solid foundation to become a confident electrical engineer and develop more advanced skills. Gain the essential skills and knowledge you need to propel your career forward as a electrical engineer.
The electrical engineering - electrical machines complete online training course will set you up with the appropriate skills and experience needed for the job and is ideal for both beginners and those currently working as a electrical engineer.
This comprehensive electrical engineering - electrical machines complete online training course is the perfect way to kickstart your career in the field of electrical machines. This electrical engineering - electrical machines complete online training course will give you a competitive advantage in your career, making you stand out from all other applicants and employees.
If you're interested in working as a electrical engineer or want to learn more skills on electrical machines but unsure of where to start, then this electrical engineering - electrical machines complete online training course will set you up with a solid foundation to become a confident electrical engineer and develop more advanced skills.
As one of the leading course providers and most renowned e-learning specialists online, we're dedicated to giving you the best educational experience possible. This electrical engineering - electrical machines complete online training course is crafted by industry expert, to enable you to learn quickly and efficiently, and at your own pace and convenience.
Who should take this course?
This comprehensive electrical engineering - electrical machines complete online training course is suitable for anyone looking to improve their job prospects or aspiring to accelerate their career in this sector and want to gain in-depth knowledge of electrical machines.
Entry Requirements
There are no academic entry requirements for this electrical engineering - electrical machines complete online training course, and it is open to students of all academic backgrounds.
As long as you are aged seventeen or over and have a basic grasp of English, numeracy and ICT, you will be eligible to enrol.
Career path
This electrical engineering - electrical machines complete online training course opens a brand new door for you to enter the relevant job market and also provides you with the chance to accumulate in-depth knowledge at the side of needed skills to become flourishing in no time. You will also be able to add your new skills to your CV, enhance your career and become more competitive in your chosen industry.
Course Curriculum
Course Content
Introduction to Electric Machines
Types of Electric Machines and Principle of Electricity Generation
DC Machines
Importance and Construction of DC Machines
Armature Winding and EMF Equation
Solved Example 1
Solved Example 2
Solved Example 3
Solved Example 4
Shunt and Series DC Machines
Solved Example 1 on Separately Excited DC Machine
Solved Example 2 on Separately Excited DC Machine
Solved Example 3 on Shunt Generator
Solved Example 4 on Shunt Generator
Solved Example 5 on Series DC Generator
Types and Applications of Compound DC Motors
Torque-Speed Characteristics and Speed Control of Separately Excited DC Motor
Torque-Speed Characteristics of Series DC Motor
Solved Example 1 on Speed Control
Solved Example 2 on Speed Control
Starting of DC Machine
Armature Reaction in DC Machines
Losses in DC Machines
Construction of Transformer
Magnetic Circuit Inside Transformer
Windings of Transformer
Why are Windings Made of Copper
Why are Windings Made of Copper
Insulating Material and Transformer Oil
Conservator of Transformer
Breather of Transformer
Bushings of Transformer
Tap Changer of Transformer
Cooling Tubes of Transformer
Buchholz Relay of Transformer
Explosion Vent
Methods of Cooling
Types of Transformers
Power Transformer and Distribution Transformer
Single Phase Core Type Transformer
Single Phase Shell Type Transformer
Three Phase Core Type Transformer
Three Phase Shell Type Transformer
Comparison between Shell and Core CSA
Comparison between Shell and Core Type
Notes
Video Explaining The Components in 3D and Real Life
Fundamentals of Magnetic Circuits for Electrical Engineering
Magnetic Circuit and Important Definitions
Linear and Non Linear Materials
Flux Linkage and Reluctance
Analogy between Electric and Magnetic Circuits
Fringing Effect
Example 1 Magnetic Circuits
Example 2
Example 3
Application on Magnetic Circuit - Transformers
Theoretical Part on Transformers
Introduction to Transformers
Construction of Transformer
Theory of Operation
Ideal Transformer
Non Ideal Transformer
Effect of Loading on Transformer
Transformer Regulation
Transformer Losses
Transformer Efficiency
Transformer Rating
Question 1
Question 2
Question 3
Example 1
Voltage Relation of Transformer
Transformer Exact Equivalent Circuit
Concept of Refereeing
Approximate Equivalent Circuit
Synchronous Machines
Construction and Principle of Operation of Synchronous Generator
rinciple of Operation of Synchronous Motor
Equivalent Circuit and Phasor Diagram of Non Salient Synchronous Machine
Solved Example 1 on Non Salient Machine
Solved Example 2 on Non Salient Machine
Solved Example 3 on Non Salient Machine
Solved Example 4 on Non Salient Machine
lved Example 5 on Non Salient Machine
Solved Example 6 on Non Salient Machine
Equivalent Circuit and Phasor Diagram of Salient Synchronous Machine
Solved Example 1 on Salient Machine
Solved Example 2 on Salient Machine
Solved Example 3 on Salient Machine
Parallel Operation of Two Generators
Synchronization of Machine with Grid
Induction Machines
Construction and Theory of Operation of Induction Machines
Equivalent Circuit and Power Flow in Induction Motor
Torque-Speed Characteristics of Induction Motor
Solved Example 1 on Induction Motor
Solved Example 2 on Induction Motor
Solved Example 3 on Induction Motor
Solved Example 4 on Induction Motor
Solved Example 5 on Induction Motor
Methods of Speed Control of Induction Motor
Methods of Starting of Induction Motor
Solved Example on Motor Starter
Self Excited Induction Generator
Recognised Accreditation
CPD Certification Service
This course is accredited by continuing professional development (CPD). CPD UK is globally recognised by employers, professional organisations, and academic institutions, thus a certificate from CPD Certification Service creates value towards your professional goal and achievement.
CPD certificates are accepted by thousands of professional bodies and government regulators here in the UK and around the world. Many organisations look for employees with CPD requirements, which means, that by doing this course, you would be a potential candidate in your respective field.
Certificate of Achievement
Certificate of Achievement from Lead Academy
After successfully passing the MCQ exam you will be eligible to order your certificate of achievement as proof of your new skill. The certificate of achievement is an official credential that confirms that you successfully finished a course with Lead Academy. Certificate can be obtained in PDF version at a cost of £12, and there is an additional fee to obtain a printed copy certificate which is £35.
High-intensity electromagnetic Technology (HIEMT)/ EMS
High-intensity electromagnetic technology (HIEMT) is an acronym for high-intensity electromagnetic technology.
HIEMT contracts muscles in a specific location with a powerful but safe form of electromagnetic stimulation.
These magnetic fields generate electrical currents, which are then transferred to the muscles, where they contract often enough to develop muscle and burn fat.
Results, which can be as dramatic as looking to be equal to six months of dieting and workouts,
COURSE CONTENT:
* Health and safety
* Sterilisation and disinfection
* Appearance of the therapist
* Ergonomics
* Handwashing
* Cellulite
* Anatomy and physiology
* Hiemt vs EMS
* The consultation process
* Machines explained
* Treatment protocols
* Aftercare
TRAINING KIT:
Please get in touch if you wish to purchase a machine
HOW DO ONLINE COURSES WORK?
http://www.kbhtrainingacademy.com/online-courses
DURATION OF THE COURSE?
You will have 3 months to complete the course before it expires
WILL I REQUIRE A MODEL?
Yes, usually 1 model is required to complete all of the required case studies
ARE THERE VIDEO TUTORIALS?
Yes, you will have links to YouTube and training videos to watch the treatment being performed
ARE THERE ANY PREREQUISITES?
We’re pleased to offer courses to people with lots of different experiences. However, previous experience nor qualifications are not necessary if you would like to enrol on our Course.
CERTIFICATE:
You will receive an end of course certificate which is accredited by the cpd group and allows you to work on public
Delivered Online On DemandOn-demand course12 weeks