Search icon
Search icon

Technical Courses

Soft-Skills Trainings

Seminar & Conferences

Articles & Blogs

Jobs / Hiring

Internship Options

Project Based Freelancing

Communities & Consultation

Product image
Preview this course

Digital Control in Switched Mode Power Converters and FPGA-based Prototyping

Engineering Academy

Engineering Academy

Learn Without Limits: Free Engineering Courses

FREE

Product image
Preview this course

Digital Control in Switched Mode Power Converters and FPGA-based Prototyping

  • Trainers feedback

    4

    (6 reviews)

    Engineering Academy

    Engineering Academy

    Learn Without Limits: Free Engineering Courses

  • Course type

    Watch to learn anytime

  • Course duration

    483 Min

  • Course start date & time

    Access anytime

  • Language

    English

Why enroll

Participants should join this course to gain in-demand skills in digital control and FPGA-based power converter design. It helps students, teachers, and industry professionals stay updated with latest industry trends and prepare for research, development, and advanced power electronics careers.

Opportunities that awaits you!

Certificate thumbnail

Earn a course completion certificate

Add this credential to your LinkedIn profile, resume, or CV. Share it on social media and in your performance review

Career opportunities

Course content

The course is readily available, allowing learners to start and complete it at their own pace.

Video info icon

Digital Control in Switched Mode Power Converters and FPGA-based Prototyping

25 Lectures

483 min

  • Lesson icon

    Digital Control in Switched Mode Power Converters and FPGA-based Prototyping

    Preview icon

    Preview

    6 min

  • Lesson icon

    Digital Control in Switched Mode Power Converters – Course Introduction

    21 min

  • Lesson icon

    Digital Control of SMPCs – Course Instructions, Guidelines & Resources

    22 min

  • Lesson icon

    Examples of Some Commercial Digital Control Solutions

    20 min

  • Lesson icon

    Overview of Digital Control Implementation Platforms

    27 min

  • Lesson icon

    Introducing Basic Digitization in Power Electronic Converters

    14 min

  • Lesson icon

    Recap of Feedback and Feedforward Control Methods in SMPCs

    20 min

  • Lesson icon

    Recap of Fixed and Variable Frequency Modulation Techniques

    27 min

  • Lesson icon

    Levels of Digitization in Single-loop Feedback Control in SMPCs

    18 min

  • Lesson icon

    Levels of Digitization in Multi-loop Feedback Control in SMPCs.

    24 min

  • Lesson icon

    SMPC Topologies and Power Stage Design for Hardware Demonstrations

    21 min

  • Lesson icon

    Basics of Sampling under Fixed and Variable Frequency Modulation

    27 min

  • Lesson icon

    Voltage Mode Digital Pulse Width Modulators and Sampling Methods

    7 min

  • Lesson icon

    Overview of Digital Pulse Width Modulator Architectures

    17 min

  • Lesson icon

    Sampling Methods under Fixed Frequency Current Mode Control

    14 min

  • Lesson icon

    Overview of Fixed Frequency Current Mode Control Architectures

    13 min

  • Lesson icon

    Sampling Methods under Constant On/Off- Time Digital Modulation

    25 min

  • Lesson icon

    Constant On/Off- Time Mixed-Signal Current Mode Control Architectures

    19 min

  • Lesson icon

    Sampling Methods under Digital Hysteresis Control Methods

    15 min

  • Lesson icon

    Overview of Digital Hysteresis Control Architectures

    16 min

  • Lesson icon

    Summary of Digital Current Mode Control Architectures

    22 min

  • Lesson icon

    Recap of Voltage and Current Mode Control Implementation using MATLAB

    19 min

  • Lesson icon

    MATLAB Model Development for Basic Digital Control Blocks

    28 min

  • Lesson icon

    MATLAB Model Development for Fixed Frequency Digital Control

    11 min

  • Lesson icon

    MATLAB Models for Digital Controllers using Difference Equations

    30 min

Course details

This course introduces digital control techniques used in modern switched mode power converters. It explains why industries are moving from analog control to digital control to achieve better performance, efficiency, safety, and flexibility. Learners will understand the advantages of digital control in handling EMI, hot swapping, scalability, and smart communication. The course covers different modulation methods and digital control architectures in a clear and practical manner. Modeling and analysis of power converters are explained using MATLAB and SIMPLIS tools. Students will learn systematic design and tuning methods for digital controllers. The course also introduces embedded control platforms used in real products. Basics of Verilog HDL and fixed-point implementation are taught for hardware realization. Hands-on aspects such as FPGA-based implementation and prototyping are included. Real-world reference designs, case studies, and practical demonstrations help bridge the gap between theory and industry practice.

Source:
NPTEL IIT Kharagpur [ Youtube Channel]

Course suitable for

  • Automotive
  • Electrical
  • Engineering & Design
  • Project Management
  • Research & Developmnet

Key topics covered

• Digital Control in Switched Mode Power Converters and FPGA-based Prototyping

• Digital Control in Switched Mode Power Converters – Course Introduction

• Digital Control of SMPCs – Course Instructions, Guidelines & Resources

• Examples of Some Commercial Digital Control Solutions

• Overview of Digital Control Implementation Platforms

• Introducing Basic Digitization in Power Electronic Converters

• Recap of Feedback and Feedforward Control Methods in SMPCs

• Recap of Fixed and Variable Frequency Modulation Techniques

• Levels of Digitization in Single-loop Feedback Control in SMPCs

• Levels of Digitization in Multi-loop Feedback Control in SMPCs

• SMPC Topologies and Power Stage Design for Hardware Demonstrations

• Basics of Sampling under Fixed and Variable Frequency Modulation

• Voltage Mode Digital Pulse Width Modulators and Sampling Methods

• Overview of Digital Pulse Width Modulator Architectures

• Sampling Methods under Fixed Frequency Current Mode Control

• Overview of Fixed Frequency Current Mode Control Architectures

• Sampling Methods under Constant On/Off-Time Digital Modulation

• Constant On/Off-Time Mixed-Signal Current Mode Control Architectures

• Sampling Methods under Digital Hysteresis Control Methods

• Overview of Digital Hysteresis Control Architectures

• Summary of Digital Current Mode Control Architectures

• Recap of Voltage and Current Mode Control Implementation using MATLAB

• MATLAB Model Development for Basic Digital Control Blocks

• MATLAB Model Development for Fixed Frequency Digital Control

• MATLAB Models for Digital Controllers using Difference Equations

Our Alumni Work At

wood/Bharath Engineering CollegeKBR/IRTTwood/Bharath Engineering CollegeMaryMount California UniversityKBR/IRTTGenser Energy Ghana LtdAeroDef Nexus LLPInventor Engineering solutionsEx-Tata Steel , Precision Engineering Division , West Bengal universityAssystem StupEEProCAD tech solutonsATKINSREALISMangalam college of EngineeringSearching for jobGulf Engineering & Consultant Gazprom International LimitedNAAir ProductsSPES Consultancy Tecnimont Spa Abu DhabiNIT SilcharJabalpur Engineering College Wex Technologies Pvt.LtdGARGI MEMORIAL INSTITUTE OF TECHNOLOGYSlimane DridiabdWhatispiping.comHoly Angel UniversityCYIENTEnergoprojektifluids engineering

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities—all in a flexible and supportive environment.

Engineering Academy

Engineering Academy

Learn Without Limits: Free Engineering Courses

Questions and Answers

Empty state icon

No questions yet - Be the first one to ask!