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Feedbacks are important since it used for making crucial decisions in any business or organization. Feedback control can be implemented in modern electronic and electromechanical systems to improve business performance.

This [course_title] is designed to help you understand how electronic feedback system works and to utilize it easier to accomplish tasks faster. You are provided in this course ways on improving the performance and reliability of different electronic feedback systems.


This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.


Edukite courses are free to study. To successfully complete a course you must submit all the assignment of the course as part of the assessment. Upon successful completion of a course, you can choose to make your achievement formal by obtaining your Certificate at a cost of £49.

Having an Official Edukite Certification is a great way to celebrate and share your success. You can:

  • Add the certificate to your CV or resume and brighten up your career
  • Show it to prove your success


Course Credit: MIT

Course Curriculum

Module: 01
Lecture 1: Introduction and Basic Concepts 00:51:00
Lecture 2: Effects of Feedback on Noise and Nonlinearities 00:52:00
Lecture 3: Introduction to Systems with Dynamics 00:50:00
Lecture 4: Stability 00:41:00
Lecture 5: Root Locus 00:52:00
Lecture 6: More Root Locus 00:52:00
Lecture 7: Stability via Frequency Response 00:48:00
Module: 02
Lecture 8: Compensation 00:46:00
Lecture 9: More Compensation 00:43:00
Lecture 10: Compensation Example 00:56:00
Lecture 11: Feedback Compensation 00:41:00
Lecture 12: Feedback Compensation of an Operational Amplifier 00:48:00
Lecture 13: Operational Amplifier Compensation (cont.) 00:57:00
Lecture 14: Linearized Analysis of Nonlinear Systems 00:57:00
Module: 03
Lecture 15: Describing Functions 00:41:00
Lecture 16: Describing Functions (cont.) 00:52:00
Lecture 17: Conditional Stability 00:59:00
Lecture 18: Oscillators (Intentional) 00:53:00
Lecture 19: Phase-locked Loops 00:42:00
Lecture 20: Model Train Speed Control 00:49:00
Submit Your Assignment 00:00:00
Certification 00:00:00

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