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Our courses have helped 2000+ students not only to understand the concept theoretically but also to design many mini projects based on the concepts which they studied in the respective courses.
You will get to learn some new skills plus software in each and every course. Till now we launched 4 different courses.

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Course-1:- Learn Current Electricity in-depth & Basics of DC Circuits

I divided this course into two parts. In the first part, you will be learning some basic concepts of current electricity in great depth and an introduction to thinkercad software. After completing 1st part you will start 2nd part and in that, you will be learning the complex circuitry and its simulation on the thinkercad software. I will not only teach you the traditional methods to solve complex circuitry but at the same time, I will also provide you with some shortcut tricks which help you to solve that circuit quickly.

Part-1:- Current Electricity and introduction to the Thinkercad software

1) Difference between conductors and insulators

2) What is a current?

3) What is a resistor and how to find its value?

4) What is Voltage?

5) What is power and how we can calculate it?

6) Difference between Ac and Dc Circuits?

7) Ohm's Law with experiment

8) Series and Parallel circuits + Numericals

After lecture 7th you will be introduced to the thinkercad software.

Part 2:- Electrical Circuits and its simulation in Thinkercad software

1) What are nodes meshes and loops?

2) KVL and KCL rule

3) Mesh analysis

4) Supermesh analysis

5) Nodal analysis

6) Voltage and Current divider rule

7) Thevenin's Law

8) Norton's Law

@ Roadmap:-

  1. Introduction to semiconductors

  2. Difference between conductors, semiconductors, and an insulators

  3. Energy band diagram for sodium and silicon atoms

  4. Valence band and Conduction band diagram for sodium and silicon atoms

  5. Forbidden Energy Gap

  6. Intrinsic and Extrinsic Semiconductors

  7. Internal structure or internal working of the p-n junction diode (Application part)

@ Roadmap of the course:-
  1. Revision of diodes (studied in course 2)

  2. The behavior of diode in reverse bias and in forward bias condition

  3. Introduction to Electric circuit studio software (Available on mobile and on Desktop as well)

  4. Diode characteristics and Shockley's equation

  5. Modeling of diode

  6. Working of diodes and diode circuits (Basic and challenging circuits)

  7. Clipper Circuits (diode as full-wave and half-wave rectifier)

  8. Tips and tricks to solve complex diode circuits

  9. Capacitors and it's uses in-circuit designing

  10. Clamper circuits

  11. Working of Zener diode and its uses in-circuit

 @ Roadmap:-

  1. Importance of Transistor

  2. Definition of Transistor

  3. Types of Transistors

  4. Understanding the basics of BJT transistors.

  5. Types of BJT transistors

  6. Why NPN is preferred over PNP

  7. Why area of the collector region is greater than the emitter region?

  8. Characteristics of BJT

  9. What is biasing and the need for biasing transistors?

  10. Different biasing techniques of transistors

  11. Stability factor

  12. Numericals + Simulation of circuits on proteus software

  13. BJT as a switch

  14. BJT as an amplifier

  15. 3-Mini projects

@ Outcome:-

  1. BJT circuits

  2. 20+ Numericals

  3. Simulation of circuits on proteus software

  4. Three Mini projects simulated on proteus software

  5. Free PDFs are available after each video session for revision purposes


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