| 1. Effect of frequency.mp4 | 327.6 MB | ||
| 1. Effect of frequency.srt | 11.5 KB | ||
| 1. Ideal VCVS.mp4 | 319.3 MB | ||
| 1. Ideal VCVS.srt | 11 KB | ||
| 1. Introduction.mp4 | 40.9 MB | ||
| 1. Introduction.srt | 1.9 KB | ||
| 1. Z parameter equivalent circuit.mp4 | 88.9 MB | ||
| 1. Z parameter equivalent circuit.srt | 3.4 KB | ||
| 10. Continuation with the example.mp4 | 139.6 MB | ||
| 10. Continuation with the example.srt | 5.2 KB | ||
| 2. Amplifier analysis by Z parameter.mp4 | 250.4 MB | ||
| 2. Amplifier analysis by Z parameter.srt | 8.7 KB | ||
| 2. Analysis of practical VCVS.mp4 | 201.8 MB | ||
| 2. Analysis of practical VCVS.srt | 7.7 KB | ||
| 2. Classification of amplifiers.mp4 | 79.3 MB | ||
| 2. Classification of amplifiers.srt | 3.3 KB | ||
| 2. Y parameter equivalent circuit.mp4 | 86.7 MB | ||
| 2. Y parameter equivalent circuit.srt | 3.1 KB | ||
| 2. Z parameter.mp4 | 200.8 MB | ||
| 2. Z parameter.srt | 8.9 KB | ||
| 3. 2. Amplifier analysis by Y parameter.mp4 | 268.6 MB | ||
| 3. 2. Amplifier analysis by Y parameter.srt | 9.7 KB | ||
| 3. An example.mp4 | 151.3 MB | ||
| 3. An example.srt | 3.2 KB | ||
| 3. Y parameter.mp4 | 201.3 MB | ||
| 3. Y parameter.srt | 8.2 KB | ||
| 3. h parameter equivalent circuit.mp4 | 103.9 MB | ||
| 3. h parameter equivalent circuit.srt | 3.4 KB | ||
| 4. Cascading.mp4 | 75.4 MB | ||
| 4. Cascading.srt | 3.1 KB | ||
| 4. Ideal CCCS.mp4 | 132.3 MB | ||
| 4. Ideal CCCS.srt | 4.8 KB | ||
| 4. g parameter equivalent circuit.mp4 | 35.2 MB | ||
| 4. g parameter equivalent circuit.srt | 1.7 KB | ||
| 5. Example on CCCS.mp4 | 239.4 MB | ||
| 5. Example on CCCS.srt | 5.2 KB | ||
| 5. h parameter.mp4 | 179.7 MB | ||
| 5. h parameter.srt | 6.8 KB | ||
| 6. Other two types of amplifier.mp4 | 228.4 MB | ||
| 6. Other two types of amplifier.srt | 6.3 KB | ||
| 6. g parameter.mp4 | 58.9 MB | ||
| 6. g parameter.srt | 2.3 KB | ||
| 7. A short note.mp4 | 74.8 MB | ||
| 7. A short note.srt | 3.1 KB | ||
| 8. Concept of Cascading.mp4 | 201.1 MB | ||
| 8. Concept of Cascading.srt | 7.2 KB | ||
| 9. Example on Cascading.mp4 | 142.1 MB | ||
| 9. Example on Cascading.srt | 3.6 KB | ||
| Bonus Resources.txt | 307.2 B | ||
| Get Bonus Downloads Here.url | 204.8 B | ||
| ▲ 54 total files | |||
Electronics : Amplifier - Let's clear the basics
Created by Sumanta kumar Pal | Last updated 7/2021
Duration: 3h 2m | 6 sections | 26 lectures | Video: 1280x720, 44 KHz | 3.86 GB
Genre: eLearning | Language: English + Sub
Learn the fundamentals of an Amplifier. This course will greatly help the students to understand transistors, FETs etc
What you'll learn
Understand the fundamentals of Amplifiers
Analysis of different types of Ideal amplifiers, i.e. Voltage Controlled Voltage Source, Voltage Controlled Current Source, Current Controlled Voltage Source and Current Controlled Current Source
Understand each type of amplifiers through proper examples
Discussion on Cascading
Analysis of Input output relations of an amplifier by defining Z parameter, Y parameter, h parameter and g parameter
Equivalent circuits of an amplifier for different parameters
Properties of a general amplifier i.e. Current gain, Voltage gain, Power gain, Input impedance and output impedance
Requirements
Basic knowledge of science,High school mathematicsFundamental ideas of current, voltage and electrical circuits
Description
Learn the fundamentals of an amplifier. This course will greatly help the students (especially students of first and second year of engineering) to understand transistors, FETs etc. Finally, the course is so designed that if anyone goes from lecture 1 to last lecture the entire subject can be thoroughly understood easily. So let's have a highlight of the entire course quickly-
Understand the fundamentals of Amplifiers.
Analysis of different types of Ideal amplifiers, i.e. Voltage Controlled Voltage Source (VCVS), Voltage Controlled Current Source (VCCS), Current Controlled Voltage Source (CCVS) and Current Controlled Current Source (CCCS).
Understand each type of amplifiers through proper examples.
Discussion on Cascading. It is really interesting to know how cascading increases the amplification factor for an amplifier.
Analysis of Input output parameter relations of an amplifier by defining Z parameter, Y parameter, h parameter and g parameter. Here, we will learn that every amplifier can be represented by one of these parameters.
Equivalent circuits of an amplifier for different parameters. The pictorial representations will be extremely helpful for the students.
Properties of a general amplifier i.e. Current gain, Voltage gain, Power gain, Input impedance and output impedance. This is thoroughly discussed through different parameters such as Z parameter, Y parameter etc.
The effect of frequency on an amplifier has thoroughly been discussed.
Classification of Amplifiers based on range of operation in frequency.
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