Licence:
Course Description:
This course is designed to serve as a first course in an undergraduate electrical engineering (EE), or electrical engineering and computer science (EECS) curriculum. The course introduces the fundamentals of the lumped circuit abstraction. Topics covered include: resistive elements and networks; independent and dependent sources; switches and MOS transistors; digital abstraction; amplifiers; energy storage elements; dynamics of first- and second-order networks; design in the time and frequency domains; and analog and digital circuits and applications. Design and lab exercises are also significant components of the course. The course content was created collaboratively by Profs. Anant Agarwal and Jeffrey H. Lang.
Lectures:
Lecture 1 - Introduction and Lumped Abstraction
Lecture 2 - Basic circuit analysis method (KVL and KCL mMethod)
Lecture 3 - Superposition, Thevenin and Norton
Lecture 4 - The digital abstraction
Lecture 5 - Inside the digital gate
Lecture 6 - Nonlinear analysis
Lecture 7 - Incremental analysis
Lecture 8 - Dependent sources and amplifiers
Lecture 9 - MOSFET amplifier large signal analysis, Part 1
Lecture 10 - MOSFET amplifier large signal analysis, Part 2
Lecture 11 - Amplifiers - small signal model
Lecture 12 - Small signal circuits
Lecture 13 - Capacitors and first-order systems
Lecture 14 - Digital circuit speed
Lecture 15 - State and memory
Lecture 16 - Second-order systems, Part 1
Lecture 17 - Second-order systems, Part 2
Lecture 18 - Sinusoidal steady state
Lecture 19 - The impedance model
Lecture 20 - Filters
Lecture 21 - The operational amplifier abstraction
Lecture 22 - Operational amplifier circuits
Lecture 23 - Op amps positive feedback
Lecture 24 - Energy and power
Lecture 25 - Energy, CMOS
Lecture 26 - Violating the abstraction barrier
Source: http://academicearth.org/courses/circuits-and-electronics