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Design of analog filters

Author: Rolf Schaumann; M E Van Valkenburg
Publisher: New York : Oxford University Press, 2001.
Series: Oxford series in electrical and computer engineering.
Edition/Format:   Book : EnglishView all editions and formats
Database:WorldCat
Summary:
"Written for advanced undergraduate and first-year graduate courses in analog filter design and signal processing, Design of Analog Filters integrates theory and practice to provide a modern and practical "how-to" approach to design. A complete revision of Mac 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  Read more...
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Details

Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Rolf Schaumann; M E Van Valkenburg
ISBN: 0195118774 9780195118773
OCLC Number: 41476859
Notes: Revised edition of: Analog filters design / M.E. Van Valkenburg. c1982.
Description: xiii, 737 pages : illustrations ; 25 cm.
Contents: Introduction --
Operational amplifiers --
First-order filters: bilinear transfer functions and frequency response --
Second-order lowpass and bandpass filters --
Second-order filters with arbitrary transmission zeros --
Lowpass filters with maximally flat magnitude --
Lowpass filters with equal-ripple (Chebyshev) magnitude response --
Inverse Chebyshev and Cauer filters --
Frequency transformation --
Delay filters --
Delay equalization --
Sensitivity --
LC ladder filters --
Ladder simulations by element replacement --
Operational simulation of ladders --
Transconductance-C filters --
Switched-capacitor filters.
Series Title: Oxford series in electrical and computer engineering.
Responsibility: Rolf Schaumann, Mac E. Van Valkenburg.
More information:

Abstract:

"Written for advanced undergraduate and first-year graduate courses in analog filter design and signal processing, Design of Analog Filters integrates theory and practice to provide a modern and practical "how-to" approach to design. A complete revision of Mac 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. Reflecting recent developments in the field and emphasizing intuitive understanding, it provides readers with an up-to-date introduction and design guidelines and also helps them to develop a "feel" for analog circuit behavior." "Design of Analog Filters moves beyond the simple treatment of active filters built with opamps to discuss the more recent design of filters based on transconductors. Topics covered include fundamental concepts; opamps; first- and second-order filters; second-order filters with arbitrary transmission zeros; filter 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; transconductance-C filters; and switched-capacitor filters."--Jacket.

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schema:reviewBody""Written for advanced undergraduate and first-year graduate courses in analog filter design and signal processing, Design of Analog Filters integrates theory and practice to provide a modern and practical "how-to" approach to design. A complete revision of Mac 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. Reflecting recent developments in the field and emphasizing intuitive understanding, it provides readers with an up-to-date introduction and design guidelines and also helps them to develop a "feel" for analog circuit behavior." "Design of Analog Filters moves beyond the simple treatment of active filters built with opamps to discuss the more recent design of filters based on transconductors. Topics covered include fundamental concepts; opamps; first- and second-order filters; second-order filters with arbitrary transmission zeros; filter 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; transconductance-C filters; and switched-capacitor filters."--Jacket."
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