Electronic Filter Design Handbook, Fourth Edition
by: Arthur B. Williams, Fred J. Taylor
Abstract: Keep up with major developments in Electronic Filter Design, including the latest advances in both analog and digital filters. Long-established as “The Bible" of practical electronic filter design, McGraw-Hill’s classic Electronic Filter Design Handbook has now been completely revised and updated for a new generation of design engineers. The Fourth Edition includes the most recent advances in both analog and digital filter design; plus a new CD for simplifying the design process, ensuring accuracy of design, and saving hours of manual computation.
Full details
Table of Contents
- A. ABOUT THE AUTHORS
- B. PREFACE
- 1. INTRODUCTION TO MODERN NETWORK THEORY
- 2. SELECTING THE RESPONSE CHARACTERISTIC
- 3. LOW-PASS FILTER DESIGN
- 4. HIGH-PASS FILTER DESIGN
- 5. BANDPASS FILTERS
- 6. BAND-REJECT FILTERS
- 7. NETWORKS FOR THE TIME DOMAIN
- 8. REFINEMENTS IN LC FILTER DESIGN AND THE USE OF RESISTIVE NETWORKS
- 9. DESIGN AND SELECTION OF INDUCTORS FOR LC FILTERS
- 10. COMPONENT SELECTION FOR LC AND ACTIVE FILTERS
- 11. NORMALIZED FILTER DESIGN TABLES
- 12. INTRODUCTION TO DIGITAL FILTERS
- 13. FINITE IMPULSE-RESPONSE FILTERS
- 14. INFINITE IMPULSE-RESPONSE FILTERS
- 15. MULTIRATE DIGITAL FILTERS
- 16. DIGITAL FILTER TECHNOLOGY
- 17. SWITCHED-CAPACITOR FILTERS
- 18. INTRODUCTION TO MICROWAVE FILTERS
- A. DISCRETE SYSTEMS MATHEMATICS
- A. SOFTWARE SUMMARY
Tools & Media
Expanded Table of Contents
-
A.
ABOUT THE AUTHORS
-
B.
PREFACE
- 1. INTRODUCTION TO MODERN NETWORK THEORY
- 2. SELECTING THE RESPONSE CHARACTERISTIC
- 3. LOW-PASS FILTER DESIGN
- 4. HIGH-PASS FILTER DESIGN
- 5. BANDPASS FILTERS
- 6. BAND-REJECT FILTERS
- 7. NETWORKS FOR THE TIME DOMAIN
- 8. REFINEMENTS IN LC FILTER DESIGN AND THE USE OF RESISTIVE NETWORKS
- 9. DESIGN AND SELECTION OF INDUCTORS FOR LC FILTERS
- 10. COMPONENT SELECTION FOR LC AND ACTIVE FILTERS
-
11.
NORMALIZED FILTER DESIGN TABLES
-
12.
INTRODUCTION TO DIGITAL FILTERS
- INTRODUCTION TO SIGNAL PROCESSING
- INTRODUCTION TO DIGITAL SIGNAL PROCESSING (DSP)
- THE RELATION TO ANALOG FILTERS
- SIGNAL REPRESENTATION
- DIGITAL DATA REPRESENTATION
- SAMPLING THEOREM
- SIGNAL RECONSTRUCTION
- PRACTICAL INTERPOLATORS
- SAMPLING MODALITIES
- ALIASING
- DATA CONVERSION
- FINITE WORDLENGTH EFFECTS
- MATHEMATICAL SIGNAL AND SYSTEM REPRESENTATION
- SPECTRAL REPRESENTATION
-
13.
FINITE IMPULSE-RESPONSE FILTERS
- DIGITAL FILTERS
- FIR DIGITAL FILTERS
- STABILITY
- LINEAR-PHASE BEHAVIOR
- NON–LINEAR-PHASE BEHAVIOR
- MINIMUM PHASE BEHAVIOR
- FIR DESIGN METHODS
- WINDOW DESIGN METHOD
- NON-RECTANGULAR WINDOW DESIGN METHOD
- LEAST SQUARES FIR DESIGN
- EQUIRIPPLE FIR DESIGN
- EQUIRIPPLE HILBERT FIR DESIGN
- EQUIRIPPLE DIFFERENTIATOR FIR DESIGN
- SPECIAL CASE FIR DIGITAL FILTERS
- MULTIPLIER-FREE FIR FILTERS
- L-BAND FIR FILTERS
- MIRROR AND COMPLEMENT FIR FILTERS
- FREQUENCY SAMPLING FIR FILTERS
- SAVITZKY-GOLAY FIR FILTERS
- RAISED FIR FILTERS
- MATLAB FIR SUPPORT
- FIR ARCHITECTURES
- DIRECT FORM FIR
- TRANSPOSE FORM FIR
- SYMMETRIC FORM FIR
- LATTICE FORM FIR
- DISTRIBUTED ARITHMETIC
- CANONIC SIGNED DIGIT (CSD)
- FINITE WORDLENGTH EFFECT
- COEFFICIENT ROUNDING
- ARITHMETIC ERROR
- SCALING
- MULTIPLE MAC ARCHITECTURE
-
14.
INFINITE IMPULSE-RESPONSE FILTERS
- INTRODUCTION
- CLASSIC ANALOG FILTERS
- MATLAB ANALOG FILTER PRODUCTION
- IMPULSE INVARIANT IIR
- BILINEAR Z-TRANSFORM IIR
- MATLAB CLASSIC IIR SUPPORT
- OTHER IIR MODELS
- COMPARISON OF FIR AND IIR FILTERS
- STATE VARIABLE FILTER MODEL
- ARCHITECTURE
- DIRECT II ARCHITECTURE
- MATLAB DIRECT II ARCHITECTURE
- CASCADE ARCHITECTURE
- THE MATLAB CASCADE ARCHITECTURE
- PARALLEL ARCHITECTURE
- LATTICE / LADDER ARCHITECTURE
- MATLAB LADDER/LATTICE SUPPORT
- NORMAL ARCHITECTURE
- STABILITY
- FINITE WORDLENGTH EFFECTS
- OVERFLOW ARITHMETIC
- REGISTER OVERFLOW
- ARITHMETIC ERRORS
- COEFFICIENT ROUNDING ERRORS
- SCALING
- ZERO INPUT LIMIT CYCLING
- 15. MULTIRATE DIGITAL FILTERS
-
16.
DIGITAL FILTER TECHNOLOGY
- INTRODUCTION TO SIGNAL PROCESSING
- PROCESSOR FORMS
- GENERAL-PURPOSE MICROPROCESSORS (μps)
- DSP PROCESSOR (DSP μp)
- DSP ADDRESSING MODES
- CIRCULAR BUFFERING
- DSP PROCESSOR FEATURES
- DSP PROCESSOR PARALLELISM
- FIXED-POINT VERSUS FLOATING-POINT
- DSP BENCHMARKS
- ADC/DAC OPERATION
- ADC METRICS
- ADC TECHNOLOGY ISSUES
- ADC APPLICATIONS
- ADC ENHANCEMENTS
- DAC TECHNOLOGY
- DSP SOFTWARE
- DIGITAL FILTER IMPLEMENTATION
- 17. SWITCHED-CAPACITOR FILTERS
- 18. INTRODUCTION TO MICROWAVE FILTERS
- A. DISCRETE SYSTEMS MATHEMATICS
-
A.
SOFTWARE SUMMARY
- THE FLTRFORM.XLS SPREADSHEET OF FORMULAS
- FILTER SOLUTIONS (BOOK VERSION) SOFTWARE FOR THE DESIGN OF ELLIPTIC-FUNCTION LOW-PASS FILTERS
- ELI 1.0 FOR THE DESIGN OF ODD-ORDER ELLIPTIC-FUNCTION LOW-PASS FILTERS UP TO THE 31ST ORDER
- FILTERCAD 3.0 FOR THE DESIGN OF SWITCHED CAPACITOR FILTERS
- TX LINE FOR THE DESIGN OF MICROSTRIP, STRIPLINE, AND OTHER STRUCTURES FOR MICROWAVE FILTERS
Book Details
Title: Electronic Filter Design Handbook, Fourth Edition
Publisher: McGRAW-HILL: New York, Chicago, San Francisco, Lisbon, London, Madrid, Mexico City, Milan, New Delhi, San Juan, Seoul, Singapore, Sydney, Toronto
Copyright / Pub. Date: 2006 The McGraw-Hill Companies, Inc.
ISBN: 9780071471718
Authors:
Arthur B. Williams
Arthur Williams is the Chief Scientist at Telebyte, Inc., a developer and manufacturer
of broadband test equipment and data communication products. Previously, he was Senior
Staff Engineer and Manager of Engineering for Tellabs, Inc. Author of five books and
holder of eleven patents, Mr. Williams has served as a consultant to the industry
and is currently the Chairman of the IEEE Circuits and Systems (CAS) chapter on Long
Island.
Fred J. Taylor
Dr. Fred J. Taylor is co-founder and Chairman of the Board of the Athena Group, a
DSP semiconductor silicon intellectual property company and education technology innovator.
He is also professor of electrical and computer engineering, and computer and information
science engineering at the University of Florida. Author of ten books and holder of
three patents, Dr. Taylor serves as a consultant to Fortune 500 companies and government
agencies.
Description: Keep up with major developments in Electronic Filter Design, including the latest advances in both analog and digital filters. Long-established as “The Bible" of practical electronic filter design, McGraw-Hill’s classic Electronic Filter Design Handbook has now been completely revised and updated for a new generation of design engineers. The Fourth Edition includes the most recent advances in both analog and digital filter design; plus a new CD for simplifying the design process, ensuring accuracy of design, and saving hours of manual computation.
