Electrical Engineering 105: Microelectronic Devices and Circuits (Fall 2012, UC Berkeley). Instructor: Professor Bernhard E. Boser.

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This course covers the fundamental circuit and device concepts needed to understand analog integrated circuits. After an overview of the basic properties of semiconductors, the p-n junction and MOS capacitors are described and the MOSFET is modeled as a large-signal device. Two port small-signal amplifiers and their realization using single stage and multistage CMOS building blocks are discussed.

Course Currilcum

  • Lecture 01 – Overview Unlimited
  • Lecture 02 – Semiconductors Unlimited
  • Lecture 03 – PN Junctions, Diodes Unlimited
  • Lecture 04 – Bipolar Junction Transistors (BJTs) Unlimited
  • Lecture 05 – Large and Small Signals, Amplifier Design Unlimited
  • Lecture 06 – BJT Small Signal Model, Biasing Unlimited
  • Lecture 07 – Common-Emitter Amplifier: Input & Output Resistance, Small-Signal Model Unlimited
  • Lecture 08 – Common-Emitter Amplifier: Emitter Degeneration Unlimited
  • Lecture 09 – The Perfect Amplifier, Common-Base Amplifier Unlimited
  • Lecture 10 – CB Amplifier, Common-Collector Amplifier (Emitter-Follower) Unlimited
  • Lecture 11 – NMOS Transistor Unlimited
  • Lecture 12 – Frequency Response Unlimited
  • Lecture 13 – Transistor HF Models & Miller Approximation Unlimited
  • Lecture 14 – Miller Approximation (cont.) Unlimited
  • Lecture 15 – Miller Approximation (cont.) Unlimited
  • Lecture 16 – Common Source Amplifier Unlimited
  • Lecture 17 – Common Drain Amplifier (Source Follower) Unlimited
  • Lecture 18 – Differential Amplifiers Unlimited
  • Lecture 19 – Differential Amplifiers: Differential Pair, Design Examples Unlimited
  • Lecture 20 – Operational Amplifiers Unlimited
  • Lecture 21 – Operational Amplifiers and Review Unlimited
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