Design of Analog Filters, Second Edition, International Edition
Oxford University Press Inc
Published on 23. December 2010
Book
Paperback/Softback
832 pages
978-0-19-538055-2 (ISBN)
Description
Ideal for advanced undergraduate and first-year graduate courses in analog filter design and signal processing, Design of Analog Filters integrates theory and practice in order to provide a modern and practical "how-to" approach to design. A complete revision of Mac E. Van Valkenburg's classic work, Analog Filter Design (1982), this text builds on the presentation and style of its predecessor, updating it to meet the needs of today's engineering students and practicing
engineers. Reflecting recent developments in the field and emphasizing intuitive understanding, it provides students with an up-to-date introduction and design guidelines and also helps them to develop a "feel" for analog circuit behaviour
Design of Analog Filters, Second Edition, moves beyond the elementary treatment of active filters built with opamps. The book discusses fundamental concepts; opamps; first- and second-order filters; second-order filters with arbitrary transmission zeros; filters with maximally flat magnitude, with equal ripple (Chebyshev) magnitude, and with inverse Chebyshev and Cauer response functions; frequency transformation; cascade designs; delay filters and delay equalization; sensitivity;
LC ladder filters; ladder simulations by element replacement and by operational simulation; in addition, high-frequency filters based on transconductance-C concepts and on designs using spiral inductors are covered; as are switched-capacitor filters, and noise issues.
engineers. Reflecting recent developments in the field and emphasizing intuitive understanding, it provides students with an up-to-date introduction and design guidelines and also helps them to develop a "feel" for analog circuit behaviour
Design of Analog Filters, Second Edition, moves beyond the elementary treatment of active filters built with opamps. The book discusses fundamental concepts; opamps; first- and second-order filters; second-order filters with arbitrary transmission zeros; filters with maximally flat magnitude, with equal ripple (Chebyshev) magnitude, and with inverse Chebyshev and Cauer response functions; frequency transformation; cascade designs; delay filters and delay equalization; sensitivity;
LC ladder filters; ladder simulations by element replacement and by operational simulation; in addition, high-frequency filters based on transconductance-C concepts and on designs using spiral inductors are covered; as are switched-capacitor filters, and noise issues.
More details
Language
English
Place of publication
New York
United States
Target group
College/higher education
Dimensions
Height: 235 mm
Width: 192 mm
Thickness: 37 mm
Weight
1408 gr
ISBN-13
978-0-19-538055-2 (9780195380552)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Persons
Rolf Schaumann is Professor Emeritus of Electrical and Computer Engineering at Portland State University.
Haiqiao Xiao is Senior Member of Technical Staff at Vitesse Semiconductor Corporation.
Mac E. Van Valkenburg was Distinguished Professor of Electrical Engineering at the University of Illinois.
Haiqiao Xiao is Senior Member of Technical Staff at Vitesse Semiconductor Corporation.
Mac E. Van Valkenburg was Distinguished Professor of Electrical Engineering at the University of Illinois.
Author
Professor Emeritus, Electrical and Computer Engineering,Portland State University
Senior Member of Technical Staff,Vitesse Semiconductor Corporation
Distinguished Professor, Electrical Engineering, University of Illinois
Content
1. Introduction ; 2. Operational Amplifiers ; 3. First - order Filters: Bilinear Transfer Functions and Frequency Response ; 4. Second - Order Lowpass and Bandpass Filters ; 5. Second - Order Filters with Arbitrary Transmission Zeros ; 6. Lowpass filters with maximally flat magnitude ; 7. Lowpass Filters with Equal - Ripple (Chebyshev) Magnitude Response ; 8. Inverse Chebyshev and Cauer Filters ; 9. Frequency Transformation ; 10. Delay Filters ; 11. Delay Equalization ; 12. Sensitivity ; 13. LC Ladder Filters ; 14. Ladder Simulations by Element Replacement ; 15. Operational Simulation of Ladders ; 16. High - Frequency Filters ; 17. Switched - Capacitor Filters ; 18. Noise