
Microwave Solid-State Circuits and Applications
Kai Chang(Author)
Wiley (Publisher)
1st Edition
Published on 6. May 1994
Book
Hardback
456 pages
978-0-471-54044-1 (ISBN)
Shipment within 10-20 days
Description
Focuses on the basic operating principles and the techniques used to incorporate the devices into circuit applications. Part one reviews fundamental principles in transmission lines and circuits as well as semiconductor physics. Two-terminal solid-state devices, circuits and applications are covered in the second section. Part three discusses three-terminal solid-state devices, circuits and applications. Introduces noise figures and system parameters for receiver design. Includes numerous examples and problems.
More details
Series
Language
English
Place of publication
United States
Publishing group
John Wiley & Sons Inc
Target group
College/higher education
Professional and scholarly
Product notice
sewn/stitched
Cloth over boards
Dimensions
Height: 240 mm
Width: 161 mm
Thickness: 29 mm
Weight
853 gr
ISBN-13
978-0-471-54044-1 (9780471540441)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
New editions
Book
11/2025
2nd Edition
Wiley-Blackwell
€122.00
The article will not be published
Person
KAI CHANG is a professor in the Electrical Engineering Department of Texas A&M University where he teaches and performs research in microwave devices and circuits. Previously he was a section head at TRW, Inc. where he was responsible for millimeter-wave integrated circuit component and subsystem development. Prior to this, Dr. Chang was a supervisor at Hughes Aircraft Company, where he was involved in the development of microwave circuits, millimeter-wave oscillators, and power combiners. Dr. Chang is the author of a number of book chapters and has published over 90 technical papers on microwave circuits, components, and subsystems. He earned his PhD in electrical engineering at the University of Michigan.
Content
Transmission Lines and Waveguides.
S Parameters and Circuit Representations.
Review of Semiconductor Physics.
Varactor Devices and Circuits.
Detector and Mixed Devices and Circuits.
Receiver Noise Figure and Dynamic Range.
p-i-n Diodes and Control Devices.
Oscillator and Amplifier Circuits Using Two-Terminal Devices.
Transferred Electron Devices and Circuits.
IMPATT Devices and Circuits.
Field-Effect Transistors.
Bipolar Transistors, HEMTs, and HBTs.
Transistor Amplifiers.
Transistor Oscillators.
Transistor Mixers, Switches, Phase Shifters, and Multipliers.
Appendices.
S Parameters and Circuit Representations.
Review of Semiconductor Physics.
Varactor Devices and Circuits.
Detector and Mixed Devices and Circuits.
Receiver Noise Figure and Dynamic Range.
p-i-n Diodes and Control Devices.
Oscillator and Amplifier Circuits Using Two-Terminal Devices.
Transferred Electron Devices and Circuits.
IMPATT Devices and Circuits.
Field-Effect Transistors.
Bipolar Transistors, HEMTs, and HBTs.
Transistor Amplifiers.
Transistor Oscillators.
Transistor Mixers, Switches, Phase Shifters, and Multipliers.
Appendices.