Design of Analog Filters
Sorozatcím: The Oxford Series in Electrical and Computer Engineering;
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A termék adatai:
- Kiadás sorszáma 2 Rev ed
- Kiadó OUP USA
- Megjelenés dátuma 2001. február 15.
- ISBN 9780195118773
- Kötéstípus Keménykötés
- Terjedelem752 oldal
- Méret 234x189x38 mm
- Súly 1437 g
- Nyelv angol
- Illusztrációk numerous line figures and graphs 0
Kategóriák
Rövid leírás:
The text is an extensive revision of Mac Van Valkenburg's classic book, Analog Filter Design. Design of Analog Filters builds on the practical presentation and style of its predecessor, updating it to meet the needs of today's engineering students. Theory and design are integrated throughout the text, providing a pratical-how to approach to modern analog filter design. Computer tools (MATLAB and Electronics Workbench SPICE simulator) are used consistently to
minimize alegbraic and other computational needs, and to simulate "real" experimental performance and point out practical behavior. Sample design tables and design and performance curves are provided. The test is intended for senior level students in electrical engineering. Schaumann was formerly Department Head at
the University of Minnesota before moving to Portland State and is a former student and colleague of Mac Van Valkenburg, who passed away in 1997.
Hosszú leírás:
Modern Design of Filters builds on the practical presentation and style of Mac Van Valkenburg's classic text, Analog Filter Design. Updated to meet the needs of today's engineering students, this text provides a practical how-to approach to modern filters. Theory and design are integrated thoughout the text. Computer tools are used consistently to minimize algebraic and other computational needs (MatLab), and to simulate "real" experimental performance and point
out practical behavior (Electronics Workbench). Sample design tables and design and performance curves are also provided.
"This book is remarkable with its numerous working examples and application exercises. It provides up-to-date analysis and design methods ... The intuitive approach makes the understanding of most techniques simple. I strongly recommend this book to undergraduate and graduate students alike." A. Saidane, Ecole Normale Superieure d'Enseignement Technique, Algeria
Tartalomjegyzék:
Preface
Introduction
Fundamentals
Types of Filters and Descriptive Terminology
Why We Use Analog Filters
Problems
Operational Amplifiers
Operational Amplifier Models
Op-Amp Slew Rate
The Operational Amplifier with Resistive Feedback-Non-Inverting and Inverting Amplifiers
Analysis Op-Amp Circuits
Block Diagrams and Feedback
The Voltage Follower
Addition and Subtraction
Applications of Op-Amp Resistor Circuits
Problems
First-Order Filters: Bilinear Transfer Functions and Frequency Response
Bilinear Transfer Functions and Its Parts
Realization with Passive Elements
Bode Plots
Active Realizations
The Effect of A(s)
Cascade Design
And Now Design
Problems
Second-Order Lowpass and Bandpass Filters
Design Parameters - Q and W
The Second-Order Circuits
Frequency Response of Lowpass and Bandpass Circuits
Integrators -- The Effects of A(s)
Other Biquads
Problems
Second-Order Filters with Arbitrary Transmission Zeroes
Using Summing
By Voltage FeedForward
Cascade Design Revisited
Problems
Lowpass Filters with Maximally Flat Magnitude
The Ideal Lowpass Filter
Butterworth Response
Butterworth Pole Locations
Lowpass Filter Specifications
Arbitrary Transmission Zeroes
Problems
Lowpass Filters with Maximally Flat Magnitude
Lissajou Figures
The Chebyshev Magnitude Response
Location of Chebyshev Poles
Comparison of Maximally Flat and Equal-Ripple Responses
Chebyshev Filter Design
Problems
Inverse Chebyshev and Cauer Filters
The Inverse Chebyshev Response
From Specifications to Pole and Zero Locations
Cauer Magnitude Response
Chebyshev Rational Functions
Cauer Filter Design
Comparison of the Classical Filter Responses
Problems
Frequency Transmission
Lowpass-to-Highpass Transformation
Lowpass-to-Highpass Transformation
Lowpass-to-Band-Elimination Transformation
Lowpass-to-Multiple Passband Transformation
The Foster Reactance Function
Problems
Delay Filters
Time Delay and Transfer Functions
Bessel-Thomson Response
Bessel Polynomials
Further Comparisons of Responses
Design of Bessel-Thomson Filters
Equal-Ripple Delay Response
Approxmating an Ideal Delay Function
Improving High-Frequency Attenuation Generating Gain Boosts
Problems
Delay Equalization
Equalization Procedures
Equalization with First-Order Modules
Equalization with Second-Order Modules
Estimating the Number of Sections Needed for Equalization
Problems
Sensitivity
Definition of Bode Sensitivity
Second-Order Sections
High-Order Filters
Problems
LC Ladder Filters
Some Properties of Lossless Ladders
A Synthesis Strategy
Tables for Other Responses
General Ladder Design Methods
Frequency Transformation
Design of Passive Equalizers
Problems
Ladder Simulations by Element Replacement
The General Impedance Converter
Optimal Design of the GIC
Realizing Simple Ladders
Gorski-Popiel's Embedding Technique
Bruton's FDNR Technique
Creativing Negative Components
Problems
Operational Simulations of Ladders
Simulation of Lowpass Ladder
Design of General Ladders
Bandpass Ladders
Problems
Oscillators
Unintentional Oscillators
The Oscillator Feedback Loop
Automatic Gain Control
The Wein Bridge Oscillator
The RC Phase Shift Oscillator
The Active-Bandpass-Filter Oscillator
Problems
Transconductance-C Filters
Transconducting Cells
Elementary Transconductor Building Blocks
First- and Second-Order Filters
High-Order Filters
Automatic Tuning
Problems
Switched-Capacitor Filters
The Moss Switch
The Switched Capacitor
First-Order Building Blocks
Second-Order Building Blocks
Sampled-Data Operation
Switched-Capacitor First- and Second-Order Sections
The Bilinear Transformation
Design of Switched-Capacitor Cascade Filters
Design of Switched-Capacitor Ladder Filters
Problems
References
Appendices
Introduction to MATLAB
Introduction to Electronics Workbench