Mod-04 Lec-16 Feedback in amplifiers, Feedback Configurations and multi stage amplifiers
17
Mod-04 Lec-17 Reduction in non-linear distortion
18
Mod-04 Lec-18 Input/Output impedances in negative feedback amplifiers (Contd.)
19
Mod-04 Lec-19 RC Coupled Amplifiers
20
Mod-04 Lec-20 RC Coupled Amplifiers (Contd.)
21
Mod-04 Lec-21 RC Coupled Amplifiers (Contd..)
22
Mod-05 Lec-22 FETs ans MOSFET
23
Mod-05 Lec-23 FETs ans MOSFET (Contd.)
24
Mod-05 Lec-24 Depletion - MOSFET
25
Mod-05 Lec-25 Drain and transfer characteristic of E - MOSFET
26
Mod-05 Lec-26 Self Bias (Contd.) Design Procedure
27
Mod-05 Lec-27 FET/MOSFET Amplifiers and their Analysis
28
Mod-05 Lec-28 CMOS Inverter
29
Mod-05 Lec-29 CMOS Inverter (contd.)
30
Mod-06 Lec-30 Power Amplifier
31
Mod-06 Lec-31 Power Amplifier (contd.)
32
Mod-06 Lec-32 Power Amplifier (contd..)
33
Mod-06 Lec-33 Power Amplifier (contd...)
34
Mod-07 Lec-34 Differential and Operational Amplifier
35
Mod-07 Lec-35 Differential and Operational Amplifier (Contd.) dc and ac analysis
36
Mod-07 Lec-36 Differential and Operational Amplifier dc and ac analysis (Contd.)
37
Mod-07 Lec-37 Operational Amplifiers
38
Mod-07 Lec-38 Operational amplifiers in open loop (Contd.)
39
Mod-07 Lec-39 Summing Amplifiers
40
Mod-07 Lec-40 Frequency response of an intigration
41
Mod-07 Lec-41 Lecture-41- Filters
42
Mod-07 Lec-42 Lecture-42-Specification of OP Amplifiers
Description:
Instructor: Professor D. C. Dube, Department of Physics, IIT Delhi.
It is a basic introductory course on Electronics and its Principles. It starts with the basics of p-n junctions leading to diodes and transistors. The circuit applications of transistors as amplifiers of various kind and their analysis is followed by an understanding of junction FET and MOSFET. In the end, the characteristics of differential and operational amplifiers leading to linear and nonlinear applications are discussed.