The analysis and design of linear circuits. (2023)
- Record Type:
- Book
- Title:
- The analysis and design of linear circuits. (2023)
- Main Title:
- The analysis and design of linear circuits.
- Authors:
- Thomas, Roland E, 1930-
Rosa, Albert J, 1942-
Toussaint, Gregory J - Contents:
- CHAPTER 1 INTRODUCTION 1–1 About This Book 1–2 Symbols and Units 1–3 Circuit Variables 1–4 Computational and Simulation Software Introduction SUMMARY Problems Integrating Problems CHAPTER 2 BASIC CIRCUIT ANALYSIS 2–1 Element Constraints 2–2 Connection Constraints 2–3 Combined Constraints 2–4 Equivalent Circuits 2–5 Voltage and Current Division 2–6 Circuit Reduction 2–7 Computer–Aided Circuit Analysis SUMMARY Problems Integrating Problems CHAPTER 3 CIRCUIT ANALYSIS TECHNIQUES 3–1 Node–Voltage Analysis 3–2 Mesh–Current Analysis 3–3 Linearity Properties 3–4 Thévenin and Norton Equivalent Circuits 3–5 Maximum Signal Transfer 3–6 Interface Circuit Design SUMMARY Problems Integrating Problems CHAPTER 4 ACTIVE CIRCUITS 4–1 Linear Dependent Sources 4–2 Analysis of Circuits with Dependent Sources 4–3 The Operational Amplifier 4–4 OP AMP Circuit Analysis 4–5 OP AMP Circuit Design 4–6 OP AMP Circuit Applications SUMMARY Problems Integrating Problems CHAPTER 5 SIGNAL WAVEFORMS 5–1 Introduction 5–2 The Step Waveform 5–3 The Exponential Waveform 5–4 The Sinusoidal Waveform 5–5 Composite Waveforms 5–6 Waveform Partial Descriptors SUMMARY Problems Integrating Problems CHAPTER 6 CAPACITANCE AND INDUCTANCE 6–1 The Capacitor 6–2 The Inductor 6–3 Dynamic OP AMP Circuits 6–4 Equivalent Capacitance and Inductance SUMMARY Problems Integrating Problems CHAPTER 7 FIRST– AND SECOND–ORDER CIRCUITS 7–1 RC and RL Circuits 7–2 First–Order Circuit Step Response 7–3 Initial and Final Conditions 7–4CHAPTER 1 INTRODUCTION 1–1 About This Book 1–2 Symbols and Units 1–3 Circuit Variables 1–4 Computational and Simulation Software Introduction SUMMARY Problems Integrating Problems CHAPTER 2 BASIC CIRCUIT ANALYSIS 2–1 Element Constraints 2–2 Connection Constraints 2–3 Combined Constraints 2–4 Equivalent Circuits 2–5 Voltage and Current Division 2–6 Circuit Reduction 2–7 Computer–Aided Circuit Analysis SUMMARY Problems Integrating Problems CHAPTER 3 CIRCUIT ANALYSIS TECHNIQUES 3–1 Node–Voltage Analysis 3–2 Mesh–Current Analysis 3–3 Linearity Properties 3–4 Thévenin and Norton Equivalent Circuits 3–5 Maximum Signal Transfer 3–6 Interface Circuit Design SUMMARY Problems Integrating Problems CHAPTER 4 ACTIVE CIRCUITS 4–1 Linear Dependent Sources 4–2 Analysis of Circuits with Dependent Sources 4–3 The Operational Amplifier 4–4 OP AMP Circuit Analysis 4–5 OP AMP Circuit Design 4–6 OP AMP Circuit Applications SUMMARY Problems Integrating Problems CHAPTER 5 SIGNAL WAVEFORMS 5–1 Introduction 5–2 The Step Waveform 5–3 The Exponential Waveform 5–4 The Sinusoidal Waveform 5–5 Composite Waveforms 5–6 Waveform Partial Descriptors SUMMARY Problems Integrating Problems CHAPTER 6 CAPACITANCE AND INDUCTANCE 6–1 The Capacitor 6–2 The Inductor 6–3 Dynamic OP AMP Circuits 6–4 Equivalent Capacitance and Inductance SUMMARY Problems Integrating Problems CHAPTER 7 FIRST– AND SECOND–ORDER CIRCUITS 7–1 RC and RL Circuits 7–2 First–Order Circuit Step Response 7–3 Initial and Final Conditions 7–4 First-Order Circuit Response to Exponential and Sinusoidal Inputs 7–5 The Series RLC Circuit 7–6 The Parallel RLC Circuit 7–7 Second–Order Circuit Step Response SUMMARY Problems Integrating Problems CHAPTER 8 SINUSOIDAL STEADY–STATE RESPONSE 8–1 Sinusoids and Phasors 8–2 Phasor Circuit Analysis 8–3 Basic Phasor Circuit Analysis and Design 8–4 Circuit Theorems with Phasors 8–5 General Circuit Analysis with Phasors 8–6 Energy and Power SUMMARY Problems Integrating Problems CHAPTER 9 LAPLACE TRANSFORMS 9–1 Signal Waveforms and Transforms 9-2 Basic Properties and Pairs 9–3 Pole–Zero Diagrams 9–4 Inverse Laplace Transforms 9–5 Circuit Response Using Laplace Transforms 9–6 Initial and Final Value Properties SUMMARY Problems Integrating Problems CHAPTER 10 S–DOMAIN CIRCUIT ANALYSIS 10–1 Transformed Circuits 10–2 Basic Circuit Analysis in the s Domain 10–3 Circuit Theorems in the s Domain 10–4 Node-Voltage Analysis in the s Domain 10–5 Mesh-Current Analysis in the s Domain 10–6 Summary of s-Domain Circuit Analysis SUMMARY Problems Integrating Problems CHAPTER 11 NETWORK FUNCTIONS 11–1 Definition of a Network Function 11–2 Network Functions of One- and Two-Port Circuits 11–3 Network Functions and Impulse Response 11–4 Network Functions and Step Response 11–5 Network Functions and Sinusoidal Steady-State Response 11–6 Impulse Response and Convolution 11–7 Network Function Design and Evaluation SUMMARY Problems Integrating Problems CHAPTER 12 FREQUENCY RESPONSE 12–1 The Electromagnetic Spectrum and Frequency–Response Descriptors 12–2 Bode Diagram Descriptors 12–3 First–Order Low–Pass and High–Pass Responses 12–4 Bandpass and Bandstop Responses 12–5 The Frequency Response of RLC Circuits 12–6 Bode Diagrams 12–7 Frequency Response and Step Response SUMMARY Problems Integrating Problems CHAPTER 13 FOURIER SERIES 13–1 Overview of Fourier Series 13–2 Fourier Coefficients 13–3 Waveform Symmetries 13–4 Circuit Analysis Using the Fourier Series 13–5 RMS Value and Average Power SUMMARY Problems Integrating Problems CHAPTER 14 ACTIVE FILTER DESIGN 14–1 Active Filters 14–2 Second-Order Low-Pass and High-Pass Filters 14–3 Second-Order Bandpass and Bandstop Filters 14–4 Low-Pass Filter Design 14–5 Low-Pass Filter Evaluation 14–6 High-Pass Filter Design and Evaluation 14–7 Bandpass and Bandstop Filter Design SUMMARY Problems Integrating Problems CHAPTER 15 MUTUAL INDUCTANCE AND TRANSFORMERS 15–1 Coupled Inductors 15–2 The Dot Convention 15–3 Energy Analysis 15–4 The Ideal Transformer 15–5 Linear Transformers SUMMARY Problems Integrating Problems CHAPTER 16 AC POWER SYSTEMS 16–1 Average and Reactive Power 16–2 Complex Power 16–3 Single–Phase Circuit Analysis 16–4 Single–Phase Power Flow 16–5 Balanced Three-Phase Circuits 16–6 Three-Phase Circuit Analysis 16–7 Three-Phase Power Flow SUMMARY Problems Integrating Problems CHAPTER 17 TWO–PORT NETWORKS 17–1 Introduction 17–2 Impedance Parameters 17–3 Admittance Parameters 17–4 Hybrid Parameters 17–5 Transmission Parameters 17–6 Two–Port Conversions and Connections SUMMARY Problems Integrating Problems CHAPTER 18 FOURIER TRANSFORMS 18–1 Introduction to Fourier Transforms 18–2 Circuit Analysis Using Fourier Transforms 18–3 Impulse Response and Convolution 18–4 Parseval’s Theorem SUMMARY Problems Integrating Problems APPENDIX A SOLUTION OF LINEAR EQUATIONS APPENDIX B BUTTERWORTH AND CHEBYSHEV POLES APPENDIX C BEHAVIORALLY MOTIVATED LEARNING APPENDIX D COMPUTER TOOLS APPENDIX E SOLUTIONS TO EXERCISES APPENDIX F COMPLEX NUMBERS APPENDIX G STANDARD VALUES AND REFERENCES APPENDIX H ANSWERS TO SELECTED PROBLEMS INDEX … (more)
- Edition:
- Tenth edition
- Publisher Details:
- Hoboken : John Wiley & Sons, Inc
- Publication Date:
- 2023
- Extent:
- 1 online resource (1248 pages), illustrations
- Subjects:
- 621.3192
Electric circuits, Linear -- Design and construction
Electric circuit analysis
Electric circuits, Linear -- Design and construction -- Problems, exercises, etc
Electric circuit analysis -- Problems, exercises, etc - Languages:
- English
- ISBNs:
- 9781119913443
- Related ISBNs:
- 9781119913023
- Notes:
- Note: Description based on CIP data; resource not viewed.
- Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.769649
- Ingest File:
- 19_012.xml