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1
INTRODUCTION
2
POLES AND ZEROS
3
OP-AMPS
4
APPLICATION OF OP-AMPS
5
INVERTING AMPLIFIER AND NON INVERTING AMPLIFIER
6
NON IDEALITIES IN OP-AMP (FINITE GAIN, FINITE BANDWIDTH AND SLEW RATE)
7
NON IDEALITIES IN OP-AMP (OFFSET VOLTAGE AND BIAS CURRENT)
8
BODE PLOT
9
FREQUENCY RESPONSE
10
FREQUENCY RESPONSE (HIGH FREQUENCY RESPONSE)
11
FREQUENCY RESPONSE EXAMPLE
12
FEEDBACK
13
EFFECTS OF FEEDBACK
14
Tutorial 1 and 2
15
EFFECT OF FEEDBACK AND STABILITY
16
STABILITY
17
STABILITY AND POLE LOCATION
18
STABILITY AND POLE LOCATION CONTINUATION
19
TUTORIAL 3
20
GAIN MARGIN AN EXAMPLE
21
FREQUENCY COMPENSATION
22
FILTERS
23
FILTER PROTOTYPES
24
Tutorial 4
25
Tutorial 5
26
Tutorial 6
27
CHEBYSHEV PROTOTYPE, FILTER TRANSFORMATION
28
FILTER TRANSFORMATIONS (CONTD...)
29
ACTIVE FILTERS
30
NON LINEAR APPLICATIONS OF OPAMPS
31
LIMITER, DIODES
32
OSCILLATORS
33
OSCILLATOR AMPLITUDE CONTROL , QUADRATURE OSCILLATOR
34
MULTIVIBATORS
35
MULTIVIBRATORS (CONTD..)
36
MONOSTABLE MULTIVIBATOR
37
ZENER EFFECT, RECTIFIERS
38
RECTIFIERS
39
CLAMPER, PEAK RECTIFIER, SUPER DIODES
40
BJT DC CIRCUITS
41
CURRENT MIRROR
Description:
INTENDED AUDIENCE: B.E/B.Tech,B.Sc COURSE OUTLINE: This course is designed as an 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.

Analog Circuits

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