- Course Highlights
Gain the skills and credentials to kickstart a successful career and learn from the experts with this step-by-step training course. This Power Electronics for Electrical Engineering has been specially designed to help learners gain a good command of Power Electronics for Electrical Engineering, providing them with a solid foundation of knowledge to become a qualified professional.
Through this Power Electronics for Electrical Engineering, you will gain both practical and theoretical understanding of Power Electronics for Electrical Engineering that will increase your employability in this field, help you stand out from the competition and boost your earning potential in no time.
Not only that, but this training includes up-to-date knowledge and techniques that will ensure you have the most in-demand skills to rise to the top of the industry. This qualification is fully accredited, broken down into several manageable modules, ideal for aspiring professionals.
- Learning outcome
- Get a deep understanding of the Power Electronics for Electrical Engineering just in hours not years
- Familiar yourself with the recent development and updates of the relevant industry
- Know how to use your theoretical and practical knowledge to adapt in any working environment
- Get help from our expert tutors anytime you need
- Access to course contents that are designed and prepared by industry professionals
- Study at your convenient time and from wherever you want
- Requirements
- No formal qualifications required, anyone from any academic background can take this course.
- Access to any internet-enabled smart device.
- Why should I take this course?
- Affordable premium-quality E-learning content, you can learn at your own pace.
- You will receive a completion certificate upon completing the course.
- Internationally recognized Accredited Qualification will boost up your resume.
- You will learn the researched and proven approach adopted by successful people to transform their careers.
- You will be able to incorporate various practical techniques successfully and understand your customers better.
Course Curriculum
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Module 1- Introduction to Power Electronics00:13:00
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Module 2- Uncontrolled Switches00:17:00
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Module 3- What is the Benefit of Diode00:06:00
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Module 4- Semi-Controlled Switches Part 100:09:00
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Module 5- Semi-Controlled Switches Part 200:14:00
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Module 6- Semi-Controlled Switches Part 300:05:00
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Module 7- What is the Benefit of Thyristor00:05:00
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Module 8- Fully Controlled Switches Part 100:17:00
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Module 9- Fully Controlled Switches Part 200:10:00
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Module 10- Fully Controlled Switches Part 300:12:00
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Module 1- Overview on Rectifiers00:02:00
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Module 2- Rectifier Definition00:01:00
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Module 3- Half Wave Uncontrolled Rectifier with R Load00:21:00
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Module 4- Example on Half Wave Uncontrolled Rectifier with R Load Part 100:06:00
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Module 5- Example on Half Wave Uncontrolled Rectifier with R Load Part 200:07:00
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Module 6- Half Wave Uncontrolled Rectifier with RL Load00:10:00
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Module 7- Derivation of the Discontinuous Current in R-L Load00:08:00
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Module 8- Freewheeling Diode (Commutation Diode)00:03:00
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Module 9- Half Wave R-L Load with FWD00:09:00
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Module 10- Difference Between Continuous and Discontinuous Mode in RL Load00:07:00
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Module 11- Half Wave RL Load with FWD Continuous Mode00:06:00
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Module 12- Example on Half Wave Rectifier with FWD00:07:00
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Module 13- Bridge Full Wave Uncontrolled Rectifier Part 100:07:00
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Module 14- Bridge Full Wave Uncontrolled Rectifier Part 200:05:00
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Module 15- Quick Revision on Bridge Full Wave Uncontrolled Rectifier00:06:00
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Module 16- Firing Angle00:02:00
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Module 17- Half Wave Controlled Rectifier R Load00:05:00
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Module 18- Half Wave Controlled Rectifier R-L Load00:04:00
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Module 19- Half Controlled R-L Load with FWD00:06:00
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Module 20- Example 100:07:00
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Module 21- Example 200:08:00
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Module 22- Example 300:13:00
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Module 23- Example 400:09:00
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Module 24- Example 500:05:00
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Module 25- Fully Controlled Bridge Rectifier Part 100:06:00
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Module 26- Fully Controlled Bridge Rectifier Part 200:06:00
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Module 27- Quick Revision on Bridge Full Wave Controlled Rectifier00:02:00
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Module 28- Example 600:08:00
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Module 29- Half Controlled Bridge Rectifier00:08:00
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Module 30- Half Controlled Bridge Rectifier with FWD00:05:00
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Module 31- Example 700:06:00
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Module 32- Example 800:07:00
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Module 33- Performance Parameters00:04:00
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Module 34- Power Factor00:04:00
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Module 1- Introduction to AC Choppers00:02:00
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Module 2- Definition of AC Choppers00:05:00
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Module 3- Switching Techniques in AC Choppers00:06:00
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Module 4- Applications on AC Choppers00:03:00
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Module 5- Types of AC Choppers00:02:00
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Module 6- AC Chopper with R Load00:14:00
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Module 7- Example 1 on AC Chopper with R Load00:06:00
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Module 8- Example 2 on AC Chopper with R Load00:04:00
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Module 9- AC Chopper with L Load Part 100:13:00
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Module 10- AC Chopper with L Load Part 200:06:00
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Module 11- Example on AC Chopper with L Load00:08:00
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Module 12- AC Chopper with RL Series Load00:20:00
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Module 13- Example on AC Chopper with RL Series Load00:07:00
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Module 14- AC Chopper with RL Parallel Load00:25:00
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Module 15- Example on AC Chopper with RL Parallel Load00:06:00
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Module 16- AC Chopper with Pure Capacitive Load00:14:00
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Module 17- Example on AC Chopper with Pure Capacitive Load00:04:00
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Module 18- AC Chopper Loaded by Heavy Rectifier00:06:00
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Module 19- AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf00:12:00
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Module 20- Example on AC Chopper Loaded by an AC Motor with Sinusoidal Back Emf00:08:00
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Module 21- Integral Cycle Control00:11:00
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Module 22- Example on Integral Cycle Control00:04:00
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Module 1- Introduction to DC Choppers00:02:00
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Module 2- Definition and Application of DC Choppers00:05:00
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Module 3- Step down DC Chopper with R Load00:12:00
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Module 4- Example on Step Dwon DC Chopper with R Load00:08:00
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Module 5- Generation of Duty Cycle00:09:00
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Module 6- Switching Techniques00:03:00
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Module 7- Step Down DC Chopper with RLE Load Part 100:19:00
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Module 8- Step Down DC Chopper with RLE Load Part 200:15:00
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Module 9- Example 1 on Step Down DC Chopper with RLE Load00:13:00
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Module 10- Example 2 on Step Down DC Chopper with RLE Load00:02:00
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Module 11- Step Up DC Chopper with R or RL Load00:09:00
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Module 12- Step Up DC Chopper with RE Load00:15:00
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Module 13- Example on Step Up DC Chopper with RE Load00:20:00
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Module 14- Buck Regulator Part 100:16:00
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Module 15- Buck Regulator Part 200:17:00
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Module 16- Example on Buck Regulator00:03:00
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Module 17- Boost Regulator00:23:00
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Module 18- Example on Boost Regulator00:06:00
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Module 19- Buck Boost Converter00:17:00
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Module 20- Example on Buck-Boost Converter00:05:00
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Module 1- Introduction to Inverters00:02:00
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Module 2- Definition of Inverters00:04:00
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Module 3- Importance and Applications of Inverters00:08:00
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Module 4- Single Phase Half Bridge R-Load00:15:00
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Module 5- Single Phase Half Bridge RL- Load00:08:00
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Module 6- Performance Parameters of an Inverter00:05:00
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Module 7- Example on Single Phase Half Bridge00:10:00
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Module 8- Single Phase Bridge Inverter R- Load00:06:00
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Module 9- Single Phase Bridge Inverter RL- Load00:07:00
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Module 10- Example on Single Phase Bridge Inverter00:06:00
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Module 11- Three Phase Inverters and Obtaining the Line Voltages00:15:00
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Module 12- Threee Phase Inverters and Obtaining The Phase Voltages00:17:00
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Module 13- Example on Three Phase Inverters00:16:00
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Module 14- Single Pulse Width Modulation00:13:00
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Module 15- Multiple Pulse Width Modulation00:13:00
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Module 16- Example on Multiple Pulse Width Modulation00:04:00
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Module 17- Sinusoidal Pulse Width Modulation00:16:00
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Module 18- Industrial Inverter00:03:00
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Assignment – Power Electronics for Electrical Engineering
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Duration:15 hours, 1 minute
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Access:1 Year
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Units:105
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