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Microelectronic Circuit Designby Richard C. Jaeger
Synopses & Reviews
Richard Jaeger and Travis Blalock present a balanced coverage of analog and digital circuits; students will develop a comprehensive understanding of the basic techniques of modern electronic circuit design, analog and digital, discrete and integrated.
A broad spectrum of topics are included in Microelectronic Circuit Design which gives the professor the option to easily select and customize the material to satisfy a two-semester or three-quarter sequence in electronics. Jaeger/Blalock emphasizes design through the use of design examples and design notes. Excellent pedagogical elements include chapter opening vignettes, chapter objectives, “Electronics in Action” boxes, a problem-solving methodology, and "Design Note” boxes.
The use of the well-defined problem-solving methodology presented in this text can significantly enhance an engineers ability to understand the issues related to design. The design examples assist in building and understanding the design process.
About the Author
Richard Jaeger earned his bachelor's, master's, and doctoral degrees in electrical engineering from the University of Florida. Professor Jaeger was one of the first three faculty members appointed Distinguished University Professor by Auburn University. His teaching awards include the Birdsong Merit Teaching Award and selection by ECE undergraduate students as Outstanding Electrical Engineering Faculty Member. In 1995 he was named Distinguished Graduate Faculty Lecturer. His current research interests include solid-state circuits and devices, electronic packaging, piezoresistive stress sensors, high heat flux cooling, low temperature electronics, VLSI design, and noise in electronic devices and circuits.Travis Blalock is an Associate Professor in the Department of Electrical and Computer Engineering at University of Virginia.
Table of Contents
Part I - Solid State Electronics and Devices
Chapter 2 Solid-State Electronics
Chapter 4 Field-Effect Transistors
Part II - Digital Electronics
Chapter 7 Complementary MOS (CMOS) Logic Design
Chapter 9 Bipolar Logic Circuits
Chapter 10 Analog Systems and Ideal Operational Amplifiers
Chapter 12 Operational Amplifier Applications
Chapter 14 Single Transistor Amplifiers
Chapter 16 Analog Integrated Circuit Design Techniques
Chapter 18 Transistor Feedback Amplifiers and Oscillators
A: Standard Component Values
C: Two-Port Review