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DSP Filter Cookbook

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ISBN-10: 0790612046

ISBN-13: 9780790612041

Edition: 2000

Authors: John Lane, Ed Martinez

List price: $175.95
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Description:

Digital filters and real-time processing of digital signals have traditionally been beyond the reach of most, due partially to hardware cost as well as complexity of design. In recent years, low-cost digital signal processor (DSP) development boards have put this within reach. This book will break down this design complexity barrier by means of simplified tutorials, step-by-step instructions, along with a collection of audio projects. Design formulas are presented to build the digital equivalent of standard audio filters: lowpass, highpass, and bandpass.
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Book details

List price: $175.95
Copyright year: 2000
Publisher: Delmar Cengage Learning
Publication date: 12/1/2000
Binding: Hardcover
Pages: 352
Size: 7.75" wide x 9.50" long x 1.00" tall
Weight: 1.342
Language: English

John Lane is the author of a dozen books of poetry and prose, including My Paddle to the Sea; Begin with Rock, End with Water; and most recently Abandoned Quarry: New and Selected Poems, winner of the 2012 Southeastern Independent Booksellers Alliance Book Award for Poetry. A professor of English and director of the Goodall Environmental Studies Center at Wofford College in Spartanburg, South Carolina, Lane is a 2014 inductee into the South Carolina Academy of Authors.

 EDWARD MARTINEZ has illustrated several children's books. He lives in Connecticut.

Introduction
Filter Design Formulas
Filter Design Basics
Low-Pass Filter
High-Pass Filter
Bandpass Filter
Band-stop Filter
Peaking Filter
Shelving Filter
Digital Basics
Analog versus Digital
Sampling Theorem, Aliasing, and Quantization
Mathematical Transforms
Digital Filter
Unit Circle
Digital Signal Processing Operations
Types of Digital Filters
Comparison of IIR and FIR Filters
The Biquad Section
Returning Back to the Analog Domain
First-Order Low-Pass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
First-Order High-Pass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Second-Order Low-Pass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Second-Order High-Pass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Second-Order Bandpass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Second-Order Band-Stop Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Peaking Filter
Digital Filter Network
Difference Equation
Shelving Filter
Low-Pass IIR
Digital Filter Network
Difference Equation
High-Pass IIR
Digital Filter Network
Difference Equation
Cascaded Low-Pass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Cascaded High-Pass Filter
Analog Filter Network
Digital Filter Network
Difference Equation
Cascaded Bandpass Filter
Digital Filter Network
Difference Equation
Cascaded Band-Stop Filter
Digital Filter Network
Difference Equation
Filter Projects
Introduction
Overview
Project Outline
Tone Control
Design Requirements
Filter Overview
Functional Block Diagram
Flow Diagram Descriptions
Software Description
60 Hz Hum Eliminator
Design Requirements
Band-Stop Filter Overview
Functional Block Diagram
Implementation
31-Band Graphic EQ-I
Design Requirements
Peaking Filter Overview
Functional Block Diagram
Flow Diagram Descriptions
Software Description
31-Band Graphic EQ-II
Design Requirements
Bandpass Filter Overview
Functional Block Diagram
Flow Diagram Descriptions
Software Description
4-Band Parametric EQ
Design Requirements
Filter Overview
Functional Block Diagram
Flow Diagram Descriptions
Software Description
Digital Crossover
Which Filters Should be Considered in Crossover Designs?
Design Requirements
Filter Overview
Functional Blocks
Control Flow Descriptions
Software Description
Odd-Order Filters
Digital Low-Pass Filter
Digital High-Pass Filter
Difference Equations
Index
References