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Design of Analog Filters
 
 
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Design of Analog Filters (Hardcover)
by Rolf Schaumann (Author), Mac E. Van Valkenburg (Author) "In this chapter we introduce the operational amplifier (opamp), the main device used to provide gain in the design of active filters..." (more)
Key Phrases: plotter scales, stopband corner, passband corner, New York, Electronics Workbench, Englewood Cliffs (more...)
  3.6 out of 5 stars 7 customer reviews (7 customer reviews)  

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Buy this book with Electronic Filter Design Handbook, Fourth Edition (McGraw-Hill Handbooks) by Arthur Williams today!

Design of Analog Filters Electronic Filter Design Handbook, Fourth Edition (McGraw-Hill Handbooks)
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Editorial Reviews
Review
"This is a beautifully written book by renowned authors who treat the subject of active analog filter design. This is a most appropriate book for anyone planning to work in today's personal (wireless) communications field. I strongly recommend the text to the serious student." --Walter M. Nunn, Florida Institute of Technology

Product Description
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; 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; transconductance-C filters; and switched-capacitor filters.

Features
* Includes a wealth of examples, all of which have been tested on simulators or in actual industrial use
* Employs MATLAB to minimize algebraic and other computational needs
* Uses Electronics Workbench to help students simulate actual experimental behavior
* Provides sample design tables and design and performance curves
* Avoids sophisticated mathematics wherever possible in favor of algebraic or intuitive derivations

See all Editorial Reviews

Product Details

Inside This Book (learn more)
First Sentence:
In this chapter we introduce the operational amplifier (opamp), the main device used to provide gain in the design of active filters. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
plotter scales, stopband corner, passband corner, arbitrary transmission zeros, allpass circuits, noninverting lossy integrator, practical component values, bilinear transfer function, general impedance converter, integrator losses, lowpass domain, lowpass prototype circuit, opamp effects, operational simulation method, unswitched capacitors, real opamps, practical element values, equiripple delay, nonideal opamps, opamp model, finite opamp gain, opamp parameters, opamp input nodes, maximally flat function, two transmission zeros
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, Electronics Workbench, Englewood Cliffs, Prentice Hall, John Wiley, Circuit Theory, Handbook of Filter Synthesis, Q-enhanced Delyiannis-Friend, Use Table, Vout Figure, Analog Integrated Circuit Design, Circuits Syst, Monte Carlo, Parameter Choice,