IIT Madras EEC Lectures: Electrical and Electronic Circuits
EE110389 lectures12 weeks
Weeks
- Week 16 lecturesIntroduction to phasors | capacitor basics & real models · Phasor representations | sine & cosine waves as phasors · Phasor relationships for pure circuit elements · Phasor relationships for composite networks · Problem solving - phasors | Alternating Current analysis with impedance & phase · Complex power : part-1 | average power & power factor
- Week 24 lecturesComplex power : part -2 | active, reactive, and apparent power · Network theorems - Thevenin & Norton | alteranating & direct current circuit basics · Problem solving | Thevenin & Norton theorems | direct current superposition · Maximum power transfer theorem
- Week 37 lecturesProblem solving - nodal analysis on alteranating current | phasors & impedance · Problem solving - Thevenin theorem on alteranating current | source vs nodal method · Problem solving - superposition theorem on alternating current | phasor notation · Problem solving - maximum power transfer theorem on AC / DC reactance · Introduction to dependent sources | types, conductance & temperature effect · Problem solving - dependent sources | Kirchhoff's laws (KVL & KCL), nodal analysis · Problem solving - star delta transformation | simplify circuit
- Week 46 lecturesIntroduction to Laplace transform · Laplace transform of some simple signals | step, ramp & delay · Laplace transform of sinusoidal signals · Laplace transform of derivative functions | capacitor & inductor analysis · Laplace transform of integral functions · Summary of Laplace transform pairs | key signals & properties
- Week 57 lecturesLaplace transform of sinewave with a phase angle · Impulse signal & its Laplace transform · Some properties of Laplace transform | signal basics & table · Application of Laplace transform in analyzing electrical circuits · Analysis of circuits with more than one storage elements · Thevenin equivalent circuit in s - domain · Circuit models capturing the initial or final condition
- Week 68 lecturesIntroduction to p - n junction diode | doping , rectification · Operation of a p - n junction diode | photodiodes & knee voltage · Introduction to zener diode | reverse bias · Half wave rectifier · Series clipping circuits | practical diode with DC input · Shunt clipping circuits | diode circuit |input & output characteristics · Two level clipping circuits | diode with voltage sources & output shaping · Shunt clipping circuits with series diode resistance
- Week 710 lecturesFull wave rectifier · Negative clamping circuit | level shift using diode capacitor · Positive clamping circuit | AC shift using diode capacitor · Voltage doubler circuit using diodes & capacitors · Zener voltage regulator · Over voltage protection using zener diode |clipping & control · Introduction to bipolar junction transistor ( BJT ) | Transistors basics · Bipolar junction transistor(bjt) parameters · Bipolar junction transistor(bjt) i - v Characteristics · Bipolar junction transistor(bjt) biasing | Thevenin equivalent
- Week 88 lecturesBipolar junction transistor(bjt) - common emitter | dc analysis · Bipolar junction transistor(bjt) - common emitter | small signal analysis | voltage gain · Bipolar junction transistor(BJT) common emitter amplifier · BJT current source & current mirror | biasing & gain stability · BJT differential amplifier · BJT - emitter coupled logic | DC analysis of differential pair · BJT common base amplifier · BJT common collector amplifier | cascaded & unity gain amplifiers
- Week 91 lectureProblem solving on bipolar junction transistor
- Week 1012 lecturesIntroduction to metal-oxide-semiconductor field-effect transistor (MOSFET) (MOS) · MOSFET parameters & regions of operation · MOSFET I - V characteristics · MOSFET biasing for amplifier circuits simplified guide · Common source amplifier | DC analysis | inverter behaviour · Common source amplifier - small signal analysis | BJT comparison · MOSFET current mirror | current scaling techniques · MOSFET differential amplifier · Common gate and common drain amplifiers · CMOS inverter basing & small signal amplification · BJT / MOSFET device structures | current flow · Symmetric CMOS inverter basing & small signal amplification
- Week 1111 lecturesIntroduction to two port networks | black box modeling, analysis · Admittance (y) parameters of a two port network · Impedance (z) parameters of a two port network · Problem solving - two port networks · Transformer as a two port network · Mutual inductance in a transformer | dot convention, coupling · Electrical equivalent of a transformer · Impedance matching in a transformer | turns ratio, reflected resistance · Summary on diodes rectifiers, clampers, nonlinear circuits · Summary on bjt structure, operation, biasing · Summary on metal oxide semiconductor field effect transistor(MOSFET)
- Week 128 lecturesTransfer function of a linear system · Transfer function of RLC circuit · Impulse response of a linear system | Laplace transform · Poles & zeros of a transfer function · Introduction to bode plot | magnitude phase | low pass filter · Problem solving on bode plots part - 1 · Problem solving on bode plots part - 2 | gain, zeros & poles | phase plot · Transfer function from a given bode plot
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