Switch-Mode Power Supplies: SPICE Simulations and Practical Designs
by: Christophe Basso
Abstract: Switch-Mode Power Supplies: SPICE Simulations and Practical Designs is a comprehensive resource on using SPICE as a power conversion design companion. This book uniquely bridges analysis and market reality to teach the development and marketing of state-of-the art switching converters. Invaluable to both the graduating student and the experienced design engineer, this guide explains how to derive founding equations of the most popular converters; design safe, reliable converters through numerous practical examples; and utilize SPICE simulations to virtually breadboard a converter on the PC before using the soldering iron.
Full details
Table of Contents
- A. ABOUT THE AUTHOR
- B. FOREWORD
- C. PREFACE
- D. NOMENCLATURE
- 1. INTRODUCTION TO POWER CONVERSION
- 2. SMALL-SIGNAL MODELING
- 3. FEEDBACK AND CONTROL LOOPS
- 4. BASIC BLOCKS AND GENERIC SWITCHED MODELS
- 5. SIMULATIONS AND PRACTICAL DESIGNS OF NONISOLATED CONVERTERS
- 6. SIMULATIONS AND PRACTICAL DESIGNS OF OFF-LINE CONVERTERS—THE FRONT END
- 7. SIMULATIONS AND PRACTICAL DESIGNS OF FLYBACK CONVERTERS
- 8. SIMULATIONS AND PRACTICAL DESIGNS OF FORWARD CONVERTERS
- A. CONCLUSION
Tools & Media
Expanded Table of Contents
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A.
ABOUT THE AUTHOR
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B.
FOREWORD
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C.
PREFACE
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D.
NOMENCLATURE
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1.
INTRODUCTION TO POWER CONVERSION
- “DO YOU REALLY NEED TO SIMULATE?”
- WHAT YOU WILL FIND IN THE FOLLOWING PAGES
- WHAT YOU WILL NOT FIND IN THIS BOOK
- CONVERTING POWER WITH RESISTORS
- CONVERTING POWER WITH SWITCHES
- THE DUTY CYCLE FACTORY
- THE BUCK CONVERTER
- THE BOOST CONVERTER
- THE BUCK-BOOST CONVERTER
- INPUT FILTERING
- The RLC Filter
- WHAT I SHOULD RETAIN FROM CHAP. 1
- A RLC TRANSFER FUNCTION
- THE CAPACITOR EQUIVALENT MODEL
- POWER SUPPLY CLASSIFICATION BY TOPOLOGIES
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2.
SMALL-SIGNAL MODELING
- STATE-SPACE AVERAGING
- THE PWM SWITCH MODEL—THE VOLTAGE-MODE CASE
- THE PWM SWITCH MODEL—THE CURRENT-MODE CASE
- THE PWM SWITCH MODEL—PARASITIC ELEMENTS EFFECTS
- PWM SWITCH MODEL IN BORDERLINE CONDUCTION
- THE PWM SWITCH MODEL—A COLLECTION OF CIRCUITS
- OTHER AVERAGED MODELS
- WHAT I SHOULD RETAIN FROM CHAP. 2
- BASIC TRANSFER FUNCTIONS FOR CONVERTERS
- POLES, ZEROS, AND COMPLEX PLANE—A SIMPLE INTRODUCTION
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3.
FEEDBACK AND CONTROL LOOPS
- OBSERVATION POINTS
- STABILITY CRITERIA
- PHASE MARGIN AND TRANSIENT RESPONSE
- CHOOSING THE CROSSOVER FREQUENCY
- SHAPING THE COMPENSATION LOOP
- AN EASY STABILIZATION TOOL—THE K FACTOR
- FEEDBACK WITH THE TL431
- THE OPTOCOUPLER
- SHUNT REGULATORS
- SMALL-SIGNAL RESPONSES WITH PSIM AND SIMPLIS
- WHAT I SHOULD RETAIN FROM CHAP. 3
- AUTOMATED POLE-ZERO PLACEMENT
- A TL431 SPICE MODEL
- TYPE 2 MANUAL POLE-ZERO PLACEMENT
- UNDERSTANDING THE VIRTUAL GROUND IN CLOSED-LOOP SYSTEMS
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4.
BASIC BLOCKS AND GENERIC SWITCHED MODELS
- GENERIC MODELS FOR FASTER SIMULATIONS
- OPERATIONAL AMPLIFIERS
- SOURCES WITH A GIVEN FAN-OUT
- VOLTAGE-ADJUSTABLE PASSIVE ELEMENTS
- A HYSTERESIS SWITCH
- AN UNDERVOLTAGE LOCKOUT BLOCK
- LEADING EDGE BLANKING
- COMPARATOR WITH HYSTERESIS
- LOGIC GATES
- TRANSFORMERS
- ASTABLE GENERATOR
- GENERIC CONTROLLERS
- DEAD TIME GENERATION
- LIST OF GENERIC MODELS
- CONVERGENCE OPTIONS
- WHAT I SHOULD RETAIN FROM CHAP. 4
- AN INCOMPLETE REVIEW OF THE TERMINOLOGY USED IN MAGNETIC DESIGNS
- FEEDING TRANSFORMER MODELS WITH PHYSICAL VALUES
- 5. SIMULATIONS AND PRACTICAL DESIGNS OF NONISOLATED CONVERTERS
- 6. SIMULATIONS AND PRACTICAL DESIGNS OF OFF-LINE CONVERTERS—THE FRONT END
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7.
SIMULATIONS AND PRACTICAL DESIGNS OF FLYBACK CONVERTERS
- AN ISOLATED BUCK-BOOST
- FLYBACK WAVEFORMS, NO PARASITIC ELEMENTS
- FLYBACK WAVEFORMS WITH PARASITIC ELEMENTS
- OBSERVING THE DRAIN SIGNAL, NO CLAMPING ACTION
- CLAMPING THE DRAIN EXCURSION
- DCM, LOOKING FOR VALLEYS
- DESIGNING THE CLAMPING NETWORK
- TWO-SWITCH FLYBACK
- ACTIVE CLAMP
- SMALL-SIGNAL RESPONSE OF THE FLYBACK TOPOLOGY
- PRACTICAL CONSIDERATIONS ABOUT THE FLYBACK
- STANDBY POWER OF CONVERTERS
- A 20 W, SINGLE-OUTPUT POWER SUPPLY
- A 90 W, SINGLE-OUTPUT POWER SUPPLY
- A 35 W, MULTIOUTPUT POWER SUPPLY
- COMPONENT CONSTRAINTS FOR THE FLYBACK CONVERTER
- WHAT I SHOULD RETAIN FROM CHAP. 7
- READING THE WAVEFORMS TO EXTRACT THE TRANSFORMER PARAMETERS
- THE STRESS
- TRANSFORMER DESIGN FOR THE 90 W ADAPTER
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8.
SIMULATIONS AND PRACTICAL DESIGNS OF FORWARD CONVERTERS
- AN ISOLATED BUCK CONVERTER
- RESET SOLUTION 1, A THIRD WINDING
- RESET SOLUTION 2, A TWO-SWITCH CONFIGURATION
- RESET SOLUTION 3, THE RESONANT DEMAGNETIZATION
- RESET SOLUTION 4, THE RCD CLAMP
- RESET SOLUTION 5, THE ACTIVE CLAMP
- SYNCHRONOUS RECTIFICATION
- MULTIOUTPUT FORWARD CONVERTERS
- SMALL-SIGNAL RESPONSE OF THE FORWARD CONVERTER
- A SINGLE-OUTPUT 12 V, 250 W FORWARD DESIGN EXAMPLE
- COMPONENT CONSTRAINTS FOR THE FORWARD CONVERTER
- WHAT I SHOULD RETAIN FROM CHAP. 8
- HALF-BRIDGE DRIVERS USING THE BOOTSTRAP TECHNIQUE
- IMPEDANCE REFLECTIONS
- TRANSFORMER AND INDUCTOR DESIGNS FOR THE 250 W ADAPTER
- CD-ROM CONTENT
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A.
CONCLUSION
Book Details
Title: Switch-Mode Power Supplies: SPICE Simulations and Practical Designs
Publisher: : New York, Chicago, San Francisco, Lisbon, London, Madrid, Mexico City, Milan, New Delhi, San Juan, Seoul, Singapore, Sydney, Toronto
Copyright / Pub. Date: 2008 The McGraw-Hill Companies, Inc.
ISBN: 9780071508582
Authors:
Christophe Basso
is a technical engineer at ON Semiconductor (formerly Motorola Semiconductor) and
a frequent contributor to power electronics magazines and conferences.
Description: Switch-Mode Power Supplies: SPICE Simulations and Practical Designs is a comprehensive resource on using SPICE as a power conversion design companion. This book uniquely bridges analysis and market reality to teach the development and marketing of state-of-the art switching converters. Invaluable to both the graduating student and the experienced design engineer, this guide explains how to derive founding equations of the most popular converters; design safe, reliable converters through numerous practical examples; and utilize SPICE simulations to virtually breadboard a converter on the PC before using the soldering iron.
