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Electronics and Engineering Personal Development

Power Electronics for Electrical Engineering

The Power Electronics for Electrical Engineering course teaches you everything on the topic thoroughly from scratch so you can achieve a professional ...

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104 Lesson

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15hr 1min

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4 students enrolled

The Power Electronics for Electrical Engineering course teaches you everything on the topic thoroughly from scratch so you can achieve a professional certificate for free to showcase your achievement in professional life. This Power Electronics for Electrical Engineering training is a comprehensive, instructor-guided course, designed to provide a detailed understanding of the nature of the related sector and your key roles within it. To become successful in your profession, you must have a specific set of skills to succeed in today’s competitive world. In this in-depth training course, you will develop the most in-demand skills to kickstart your career, as well as upgrade your existing knowledge & skills. The training materials of this Power Electronics for Electrical Engineering course are available online for you to learn at your own pace and fast-track your career with ease.
  • Accredited by CPD
  • Complies with The Health and Safety (First-Aid) Regulations 1981
  • Instant e-certificate
  • Fully online, interactive course with Professional voice-over
  • Developed by qualified first aid professionals
  • Self paced learning and laptop, tablet, smartphone friendly
  • 24/7 Learning Assistance
  • Discounts on bulk purchases

Sneak Peek Of Power Electronics for Electrical Engineering Course

Who Should Take The Power Electronics for Electrical Engineering Course

Anyone with a knack for learning new skills can take this Power Electronics for Electrical Engineering training. While this comprehensive training is popular for preparing people for job opportunities in the relevant fields, it also helps to advance your career for promotions.

Certification

Once you’ve successfully completed your Power Electronics for Electrical Engineering training course, you will immediately be sent a digital certificate. Our certifications have no expiry dates, although we do recommend that you renew them every 12 months.

Accreditation

All of our courses, including this Power Electronics for Electrical Engineering training course, are fully accredited, providing you with up-to-date skills and knowledge and helping you to become more competent and effective in your chosen field.

Assessment

At the end of the course, there will be an online assessment, which you will need to pass to complete the course. Answers are marked instantly and automatically, allowing you to know straight away whether you have passed. If you haven’t, there’s no limit on the number of times you can take the final exam. All this is included in the one-time fee you paid for the course itself.

Course Curriculum

Unit 1- Introduction to Power Electronics Components Unit 2- Fundamentals of Rectifier Circuits Unit 3- Fundamentals of AC Choppers Unit 4- Fundamentals of DC Choppers Unit 5- Fundamentals of Inverters
Course Content
104 Lectures 15hr 1min
  • ImgModule 1- Introduction to Power Electronics

  • ImgModule 2- Uncontrolled Switches

  • ImgModule 3- What is the Benefit of Diode

  • ImgModule 4- Semi-Controlled Switches Part 1

  • ImgModule 5- Semi-Controlled Switches Part 2

  • ImgModule 6- Semi-Controlled Switches Part 3

  • ImgModule 7- What is the Benefit of Thyristor

  • ImgModule 8- Fully Controlled Switches Part 1

  • ImgModule 9- Fully Controlled Switches Part 2

  • ImgModule 10- Fully Controlled Switches Part 3

  • ImgModule 1- Overview on Rectifiers

  • ImgModule 2- Rectifier Definition

  • ImgModule 3- Half Wave Uncontrolled Rectifier with R Load

  • ImgModule 4- Example on Half Wave Uncontrolled Rectifier with R Load Part 1

  • ImgModule 5- Example on Half Wave Uncontrolled Rectifier with R Load Part 2

  • ImgModule 6- Half Wave Uncontrolled Rectifier with RL Load

  • ImgModule 7- Derivation of the Discontinuous Current in R-L Load

  • ImgModule 8- Freewheeling Diode (Commutation Diode)

  • ImgModule 9- Half Wave R-L Load with FWD

  • ImgModule 10- Difference Between Continuous and Discontinuous Mode in RL Load

  • ImgModule 11- Half Wave RL Load with FWD Continuous Mode

  • ImgModule 12- Example on Half Wave Rectifier with FWD

  • ImgModule 13- Bridge Full Wave Uncontrolled Rectifier Part 1

  • ImgModule 14- Bridge Full Wave Uncontrolled Rectifier Part 2

  • ImgModule 15- Quick Revision on Bridge Full Wave Uncontrolled Rectifier

  • ImgModule 16- Firing Angle

  • ImgModule 17- Half Wave Controlled Rectifier R Load

  • ImgModule 18- Half Wave Controlled Rectifier R-L Load

  • ImgModule 19- Half Controlled R-L Load with FWD

  • ImgModule 20- Example 1

  • ImgModule 21- Example 2

  • ImgModule 22- Example 3

  • ImgModule 23- Example 4

  • ImgModule 24- Example 5

  • ImgModule 25- Fully Controlled Bridge Rectifier Part 1

  • ImgModule 26- Fully Controlled Bridge Rectifier Part 2

  • ImgModule 27- Quick Revision on Bridge Full Wave Controlled Rectifier

  • ImgModule 28- Example 6

  • ImgModule 29- Half Controlled Bridge Rectifier

  • ImgModule 30- Half Controlled Bridge Rectifier with FWD

  • ImgModule 31- Example 7

  • ImgModule 32- Example 8

  • ImgModule 33- Performance Parameters

  • ImgModule 34- Power Factor

  • ImgModule 1- Introduction to AC Choppers

  • ImgModule 2- Definition of AC Choppers

  • ImgModule 3- Switching Techniques in AC Choppers

  • ImgModule 4- Applications on AC Choppers

  • ImgModule 5- Types of AC Choppers

  • ImgModule 6- AC Chopper with R Load

  • ImgModule 7- Example 1 on AC Chopper with R Load

  • ImgModule 8- Example 2 on AC Chopper with R Load

  • ImgModule 9- AC Chopper with L Load Part 1

  • ImgModule 10- AC Chopper with L Load Part 2

  • ImgModule 11- Example on AC Chopper with L Load

  • ImgModule 12- AC Chopper with RL Series Load

  • ImgModule 13- Example on AC Chopper with RL Series Load

  • ImgModule 14- AC Chopper with RL Parallel Load

  • ImgModule 15- Example on AC Chopper with RL Parallel Load

  • ImgModule 16- AC Chopper with Pure Capacitive Load

  • ImgModule 17- Example on AC Chopper with Pure Capacitive Load

  • ImgModule 18- AC Chopper Loaded by Heavy Rectifier

  • ImgModule 19- AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf

  • ImgModule 20- Example on AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf

  • ImgModule 21- Integral Cycle Control

  • ImgModule 22- Example on Integral Cycle Control

  • ImgModule 1- Introduction to DC Choppers

  • ImgModule 2- Definition and Application of DC Choppers

  • ImgModule 3- Step down DC Chopper with R Load

  • ImgModule 4- Example on Step Dwon DC Chopper with R Load

  • ImgModule 5- Generation of Duty Cycle

  • ImgModule 6- Switching Techniques

  • ImgModule 7- Step Down DC Chopper with RLE Load Part 1

  • ImgModule 8- Step Down DC Chopper with RLE Load Part 2

  • ImgModule 9- Example 1 on Step Down DC Chopper with RLE Load

  • ImgModule 10- Example 2 on Step Down DC Chopper with RLE Load

  • ImgModule 11- Step Up DC Chopper with R or RL Load

  • ImgModule 12- Step Up DC Chopper with RE Load

  • ImgModule 13- Example on Step Up DC Chopper with RE Load

  • ImgModule 14- Buck Regulator Part 1

  • ImgModule 15- Buck Regulator Part 2

  • ImgModule 16- Example on Buck Regulator

  • ImgModule 17- Boost Regulator

  • ImgModule 18- Example on Boost Regulator

  • ImgModule 19- Buck Boost Converter

  • ImgModule 20- Example on Buck-Boost Converter

  • ImgModule 1- Introduction to Inverters

  • ImgModule 2- Definition of Inverters

  • ImgModule 3- Importance and Applications of Inverters

  • ImgModule 4- Single Phase Half Bridge R-Load

  • ImgModule 5- Single Phase Half Bridge RL- Load

  • ImgModule 6- Performance Parameters of an Inverter

  • ImgModule 7- Example on Single Phase Half Bridge

  • ImgModule 8- Single Phase Bridge Inverter R- Load

  • ImgModule 9- Single Phase Bridge Inverter RL- Load

  • ImgModule 10- Example on Single Phase Bridge Inverter

  • ImgModule 11- Three Phase Inverters and Obtaining the Line Voltages

  • ImgModule 12- Threee Phase Inverters and Obtaining The Phase Voltages

  • ImgModule 13- Example on Three Phase Inverters

  • ImgModule 14- Single Pulse Width Modulation

  • ImgModule 15- Multiple Pulse Width Modulation

  • ImgModule 16- Example on Multiple Pulse Width Modulation

  • ImgModule 17- Sinusoidal Pulse Width Modulation

  • ImgModule 18- Industrial Inverter