Introduction to Microelectronic Circuits

Introduction to Microelectronic Circuits

UC Berkeley Spring 2006      Visit Main Site

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Lecture Details

Lecture 1: Introduction,
Lecture 2: Definition Current, Voltage, KCL and KVL
Lecture 3: Circuit Element, Model, KCL and KVL
Lecture 4: Resistor in Parallel, Series, Node Analysis
Lecture 5: Node Analysis with Dependent Sources; Mesh Analysis
Lecture 6: Mesh Analysis, Superposition, Thevenin and Norton Equivalent Circuits, Max Power Transfer
Lecture 7: Potential Plots, Water Model, Capacitor, Inductor
Lecture 8: First Order Circuits; Transient Response to First Order Circuits; Modeling of Digital Logic Gate
Lecture 9: Second Order Circuits
Lecture 10: Steady State Sinusoidal Analysis; Phasors; Complex Impedance
Lecture 11: Review of Complex Numbers
Lecture 12: Circuit Analysis with Complex impedance
Lecture 13: Filters
Lecture 14: Op Amp Example; Inverter Amp; Summing Amp; Non-Inverting Amp; Differential Amp; I-to-V Converter
Lecture 15: Semiconductor Materials; Si; Doping
Lecture 16: Diodes
Lecture 17: Diodes
Lecture 18: MOSFET
Lecture 19: MOSFET
Lecture 20: MOSFET; MOSFET Curcuit
Lecture 21: Small signal Analysis; Common Amplifiers
Lecture 22: Source Follower and Common Gate Amplifier
Lecture 23: Review of midterm2
Lecture 24: Logic
Lecture 25: Synthesis of Logic Circuits
Lecture 26: Microfabrication
Lecture 27: Nano-X World: is it Emperor's New Clothes?
Lecture 28: Final Review Session