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Analog IC Design

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Preview this course
Self-paced Advanced

Analog IC Design

4(1581)
38 views
FREE
1263 min
Anytime
English
38 views
Team EveryEng
Team EveryEngMechanical Engineering
  • Lifetime access
  • Certificate of completion
  • Anytime Learning
  • Learn from Industry Expert
Volume pricing for groups of 5+

Why enroll

Participants should join this course to build a strong foundation in Analog IC Design, one of the core skills required in the semiconductor and VLSI industry. The course helps learners understand how analog circuits are designed, analyzed, and optimized for real-world applications. It is ideal for students and professionals who want to enhance their career opportunities in chip design, electronics, and semiconductor engineering.

Is this course for you?

You should take this if

  • You work in Electronics & Instrumentation
  • You're a Electrical Engineering / Electronics & Telecommunication professional
  • You have 3+ years of hands-on experience in this field
  • You prefer self-paced learning you can revisit

You should skip if

  • You're new to this field with no prior experience
  • You need a different specialisation outside Electrical Engineering
  • You need live interaction with an instructor

Course details

This course introduces the fundamentals of Analog Integrated Circuit (IC) Design using CMOS technology. It explains how analog circuits are designed and analyzed for real-world electronic systems. You will learn about MOS transistors, amplifiers, operational amplifiers (op-amps), feedback, noise, and circuit stability. The course also covers important concepts such as transistor mismatch, frequency response, and different amplifier configurations. Students will understand how to design efficient and reliable analog circuits at the transistor level. Practical design techniques and performance trade-offs are discussed throughout the course. It is suitable for students interested in VLSI, semiconductor, and analog circuit design. A basic understanding of electronic circuits and MOSFETs is recommended before starting the course. By the end of the course, learners will have a strong foundation in CMOS Analog IC Design and be prepared for advanced VLSI and chip design topics.

Source: nptelhrd [Youtube Channel]
Dr. Nagendra Krishnapura, Department of Electronics & Communication Engineering, IIT Madras

Course suitable for

Key topics covered

  • Introduction to Analog IC Design

  • Introduction to Analog IC Design

  • Negative Feedback Amplifier

  • Step Response and Sinusoidal Steady-State Response

  • Loop Gain and Unity Loop Gain Frequency; Opamp

  • Opamp Realization Using Controlled Sources; Delay in the Loop

  • Negative Feedback Amplifier with Ideal Delay – Small Delays

  • Negative Feedback Amplifier with Ideal Delay – Large Delays

  • Negative Feedback Amplifier with Parasitic Poles and Zeros

  • Negative Feedback Amplifier with Parasitic Poles and Zeros; Nyquist Criterion

  • Nyquist Criterion; Phase Margin

  • Phase Margin

  • Single Stage Opamp Realization

  • Two Stage Miller Compensated Opamp – 1

  • Two Stage Miller Compensated Opamp – 2

  • Two and Three Stage Miller Compensated Opamps; Feedforward Compensated Opamp

  • Differential Amplifier Basics

  • Three Stage Feedforward Compensated Opamp

  • Two Stage Feed Forward Opamp

  • Opamp Parameters

  • Components Available in a CMOS Process

  • MOS Transistors

  • MOS Transistors

  • Mismatch in MOS Circuits

  • Resistor Noise

  • Noise

Course content

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

25 lectures21 hr 3 min
  1. Introduction to Analog IC Design
    50 min
  2. Negative feedback amplifier
    50 min
  3. Step response, sinusoidal steady state response
    51 min
  4. Loop gain and unity loop gain frequency; Opamp
    49 min
  5. Opamp realization using controlled sources; Delay in the loop
    51 min
  6. Negative feedback amplifier with ideal delay-small delays
    49 min
  7. Negative feedback amplifier with ideal delay-large delays
    52 min
  8. Negative feedback amplifier with parasitic poles and zeros
    52 min
  9. Negative feedback amplifier with parasitic poles and zeros; Nyquist criterion
    48 min
  10. Nyquist criterion; Phase margin
    51 min
  11. Phase margin
    51 min
  12. Single stage opamp realization
    51 min
  13. Two stage miller compensated opamp-1
    49 min
  14. Two stage miller compensated opamp-2
    49 min
  15. Two and three stage miller compensated opamps; Feedforward compensated opamp
    48 min
  16. Differential Amplifier Basics
    49 min
  17. Three Stage FeedForward Compensated Opamp
    47 min
  18. Two Stage Feed Forward Opamp
    49 min
  19. Opamp Parameters
    63 min
  20. Components Available in a CMOS Process
    49 min
  21. MOS Transistors
    49 min
  22. MOS Transistors.
    48 min
  23. Mismatch In MOS Circuits
    54 min
  24. Resistor Noise
    53 min
  25. Noise
    51 min

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