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Updated in [July 18th, 2023]
This course, An Entry-Level Course on Analog and Digital Microelectronics, provides an insightful understanding of the basics of analog and digital electronics. It is comprised of sixteen sessions, each taking around 40-45 minutes, and covers the design, simulation, and layout of metal-oxide-semiconductor (MOS) transistors, basic analog amplifiers, and basic digital logic circuits. The course provides a step-by-step analysis and design of widely used analog amplifiers including common-source, common-gate, source follower, and cascode stages as well as an analysis of gain and input/output impedances. It also covers logic circuits including CMOS inverters, NAND, NOR, and general Boolean functions as well as introduction to performance parameters such as noise margin and propagation delay. For each circuit being covered, the design tips and the layout will be provided. All the concepts will be clarified by many examples. The course is intended for junior- and senior-level students in the field of electrical and computer engineering, engineers in other engineering fields who are interested in gaining knowledge of microelectronics, and graduate students from different engineering fields who are interested in learning about semiconductor devices and circuits.
Course Syllabus
Introduction
Section 2 - Overview of Semiconductor Technology; Integrated Circuit Design
Section 3 - Basics of Digital and Analog Design
Section 4 - Basics of an MOS Transistor
Section 5 - Study of MOS Transistor During Strong Inversion
Section 6 - MOS Operation in Triode and Saturation Regions
Section 7 - MOS Electrical Modeling in Saturation and Triode Regions
Section 8
Section 9 - Biasing in MOS Amplifiers and Basics of CMOS Inverters
Section 10 - Layout, Simulation of CMOS Inverter - Common-Source Amplifier
Section 11 - Common Source Amplifier Design
Section 12 - Cadence Simulation of Common-Source Amplifier
Section 13 - MOS Common-Gate Amplifier
Section 14 - MOS Cascode Amplifier
Section 15 - Static and Dynamic Characteristics of CMOS Inverter
Section 16 - CMOS Logic Circuits