Covers the design of low-power analog integrated circuits, focusing on operational transconductance amplifiers (OTAs) and operational amplifiers (OPAMPs).
Explores amplifier characteristics, models, feedback, stability, and frequency response, emphasizing the bandwidth-gain tradeoff and op-amp limitations.
Covers the design and analysis of basic two-stage operational amplifiers (OPAMPs) with a focus on small-signal analysis and offset reduction techniques.
Explores the design and performance of comparators in nonlinear analog circuits, emphasizing speed-resolution tradeoffs and the impact of positive feedback.
Covers the design and function of differential amplifiers, focusing on operational amplifiers and comparators, including their gain characteristics and circuit configurations.
Covers fundamental concepts in electronics design, including Maxwell's equations, Kirchoff's equations, active components, PCB fabrication, impedance matching, and ADC architectures.