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Analog Circuits

Analog Circuits. Instructor: Prof. Jayanta Mukherjee, Department of Electrical Engineering, IIT Bombay. This course is designed as the introductory course on analog circuits for undergraduate students. It covers the basic components and methodologies used for analog design. Most of the portion deals with OPAMP based circuits. Later in the course some BJT and MOSFET based circuits are discussed. (from nptel.ac.in)

Lecture 37 - Zener Effect, Rectifiers


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Lecture 01 - Introduction
Lecture 02 - Poles and Zeros
Lecture 03 - Op-Amps
Lecture 04 - Application of Op-Amps
Lecture 05 - Inverting Amplifier and Noninverting Amplifier
Lecture 06 - Non-idealities in Op-Amp (Finite Gain, Finite Bandwidth and Slew Rate)
Lecture 07 - Non-idealities in Op-Amp (Offset Voltage and Bias Current)
Lecture 08 - Bode Plot
Lecture 09 - Frequency Response
Lecture 10 - Frequency Response (High Frequency Response)
Lecture 11 - Frequency Response Example
Lecture 12 - Feedback
Lecture 13 - Effects of Feedback
Lecture 14 - Tutorial 1 and 2
Lecture 15 - Effect of Feedback and Stability
Lecture 16 - Stability
Lecture 17 - Stability and Pole Location
Lecture 18 - Stability and Pole Location (cont.)
Lecture 19 - Tutorial 3
Lecture 20 - Gain Margin - An Example
Lecture 21 - Frequency Compensation
Lecture 22 - Filters
Lecture 23 - Filter Prototypes
Lecture 24 - Tutorial 4
Lecture 25 - Tutorial 5
Lecture 26 - Tutorial 6
Lecture 27 - Chebyshev Prototype, Filter Transformation
Lecture 28 - Filter Transformation (cont.)
Lecture 29 - Active Filters
Lecture 30 - Nonlinear Applications of Op-Amps
Lecture 31 - Limiter, Diodes
Lecture 32 - Oscillators
Lecture 33 - Oscillator Amplitude Control, Quadrature Oscillator
Lecture 34 - Multivibrators
Lecture 35 - Multivibrators (cont.)
Lecture 36 - Monostable Multivibrator
Lecture 37 - Zener Effect, Rectifiers
Lecture 38 - Rectifiers
Lecture 39 - Clamper, Peak Rectifier, Super Didoes
Lecture 40 - BJT DC Circuits
Lecture 41 - Current Mirror