Microelectronic Circuits Analysis and Design (3版)
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【簡介】
【目錄】
PART I
1. Introduction to Electronics and Design.
2. Introduction to Operational Amplifiers and Applications.
3. Semiconductors and pn Junction Characteristics.
4. Semiconductor Diodes and Rectifiers.
5. Bipolar Junction Transistors and Amplifiers.
6. Metal Oxide Semiconductor Field-Effect Transistors.
7. Bipolar Versus MOS Transistors and Amplifiers.
PART II Electronic Circuits and Applications
8. Frequency Response of BJT and Mosfet Amplifiers.
9. Feedback Amplifiers.
10. Power Amplifiers.
11. Active Filters Pp-Amp.
12. Oscillators.
PART III Digital and Analog Integrated Circuits
13. Introduction to Digital Electronics.
14. Basic Structure of Differential Amplifiers.
15. Differential Amplifiers.
16. Operational Amplifiers.
17. Integrated Analog Circuits and Applications.
Appendix A: Introduction to Orcad.
Appendix B: Review of Basic Circuits.
Appendix C: Low Frequency Hybrid BJT Model.
Appendix D: Ebers-Moll Model of Bipolar Junction Transistors.
Appendix E: Passive Components.
Appendix F: Design Problems.
Appendix G: Miller's Capacitor Method.
Appendix H: High-Frequency Transfer Function Method.
Ansers to Selected Problems
Index
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Microelectronics: Circuit Analysis and Design (4版)
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【簡介】
PHILOSOPHY AND GOALS
Microelectronics: Circuit Analysis and Design is intended as a core text in electronics for undergraduate electrical and computer engineering students. The purpose of the fourth edition of the book is to continue to provide a foundation for analyzing and designing both analog and digital electronic circuits. A goal is to make this book very readable and student-friendly.
Most electronic circuit design today involves integrated circuits (ICs), in which the entire circuit is fabricated on a single piece of semiconductor material. The IC can contain millions of semiconductor devices and other elements and can perform complex functions. The microprocessor is a classic example of such a circuit. The ultimate goal of this text is to clearly present the operation, characteristics, and limitations of the basic circuits that form these complex integrated circuits. Although most engineers will use existing ICs in specialized design applications, they must be aware of the fundamental circuit's characteristics in order to understand the operation and limitations of the IC.
Initially, discrete transistor circuits are analyzed and designed. The complexity of circuits being studied increases throughout the text so that, eventually, the reader should be able to analyze and design the basic elements of integrated circuits, such as linear amplifiers and digital logic gates.
This text is an introduction to the complex subject of electronic circuits. Therefore, more advanced material is not included. Specific technologies, such as
gallium arsenide, which is used in special applications, are also not included, although reference may be made to a few specialized applications. Finally, the
layout and fabrication of ICs are not covered, since these topics alone can warrant entire texts.
DESIGN EMPHASIS
Design is the heart of engineering. Good design evolves out of considerable experience with analysis. In this text, we point out various characteristics and properties of circuits as we go through the analysis. The objective is to develop an intuition that can be applied to the design process.
Many design examples, design exercise problems, and end-of-chapter design problems are included in this text. The end-of-chapter design problems are designated with a 'D'. Many of these examples and problems have a set of specifications that lead to a unique solution. Although engineering design in its truest sense does not lead to a unique solution, these initial design examples and problems are a first step, the author believes, in learning the design process. A separate section, Design Problems, found in the end-of-chapter problems, contains open-ended design problems.
【目錄】
PROLOGUE TO ELECTRONICS
PART 1 SEMICONDUCTOR DEVICES AND BASIC APPLICATIONS
Chapter 1 Semiconductor Materials and Diodes
Chapter 2 Diode Circuits
Chapter 3 The Field-Effect Transistor
Chapter 4 Basic FET Amplifiers
Chapter 5 The Bipolar Junction Transistor
Chapter 6 Basic BJT Amplifiers
Chapter 7 Frequency Response
Chapter 8 Output Stages and Power Amplifiers
PROLOGUE II PROLOGUE TO ELECTRONIC DESIGN
PART 2 ANALOG ELECTRONICS
Chapter 9 Ideal Operational Amplifiers and Op-Amp Circuits
Chapter 10 Integrated Circuit Biasing and Active Loads
Chapter 11 Differential and Multistage Amplifiers
Chapter 12 Feedback and Stability
Chapter 13 Operational Amplifier Circuits
Chapter 14 Nonideal Effects in Operational Amplifier Circuits
Chapter 15 Applications and Design of Integrated Circuits
PROLOGUE III PROLOGUE TO DIGITAL ELECTRONICS
PART 3 DIGITAL ELECTRONICS
Chapter 16 MOSFET Digital Circuits
Chapter 17 Bipolar Digital Circuits
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Microelectronic Circuits (8版)
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Microelectronic Circuits 8/e
+作者:Sedra/Smith
+年份:2021 年8 版
+ISBN:9780190853501
+書號:EE0490PC
+規格:平裝/套色
+頁數:1272
內容簡介
Microelectronic Circuits, Eighth Edition, is intended as a text for the core courses inelectronic circuits taught to majors in electrical and computer engineering. It shouldalso prove useful to engineers and other professionals wishing to update their knowledgethrough self-study.
As was the case with the first seven editions, the objective of this book is to develop inthe reader the ability to analyze and design electronic circuits, both analog and digital,discrete and integrated. While the application of integrated circuits is covered, emphasisis placed on transistor circuit design, This is done because of our belief that even if themajority of those studying this book were not to pursue a career in IC design, knowledgeof what is inside the IC package would enable intelligent and innovative application ofsuch chips. Furthermore, with the advances in VLSI technology and design methodology,IC design itself has become accessible to an increasing number of engineers.
目錄
PART I DEVICES AND BASIC CIRCUITS
1 Signals, Amplifiers, and Semiconductors
2 Operational Amplifiers
3 Diodes
4 Bipolar Junction Transistors (BJTs)
5 MOS Field-Effect Transistors (MOSFETs)
6 Transistor Amplifiers
PART II ANALOG INTEGRATED CIRCUITS
7 Building Blocks of Integrated-Circuit Amplifiers
8 Differential and Multistage Amplifiers
9 Frequency Response
10 Feedback
11 Output Stages and Power Amplifiers
12 Operational-Amplifier Circuits
13 Filters and Oscillators
PART Ill DIGITAL INTEGRATED CIRCUITS
14 CMOS Digital Logic Circuits
15 Digital Design: Power, Speed, and Area
16 Memory and Clocking Circuits
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