Week 1: Non-linear circuit analysis, diodes, load line concepts, introduction to the
MOSFET
Week 2: DC operating point, biasing the MOSFET, small signal model of the
MOSFET, small signal analysis
Week 3: Thevenin and Norton models, common source, common gate, common drain
Circuits
Week 4: Source degenerated common source amplifier, cascode and cascaded circuits
Week 5: Current sources and current mirrors, biasing with current sources, constant
gm circuits
Week 6: Differential amplifiers, common mode and differential mode gains, CMRR,
structure of a complete amplifier
Week 7: Folded cascode differential amplifier, self-biased active-load differential
Amplifier
Week 8: Feedback: examples of feedback amplifiers, current and voltage sensing,
current and voltage feedback; op-amps and op-amp circuits
Week 9: High frequency model of the MOSFET, revision of common-gate, common-
source, common-drain circuits; poles and zeros in the transfer function
Week 10: Poles and zeros of cascode amplifier, Miller theorem, phase margin, unity
gain bandwidth, compensation of the cascaded amplifier
Week 11: Voltage regulators, LDOs, stability of regulators, power supply rejection,bandwidth
Week 12: Power amplifiers, audio power amplifier, class-A/class-AB/class-B/class-C;
push-pull class-AB power amplifier
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