《数字电子技术第九版英文改编版》是2006年电子工业出版社出版的图书,作者是弗洛伊德、余璆。
本书是关于数字电子技术的经典教材,内容涉及数字电子的基本概念、数制、逻辑门、布尔代数和逻辑化简、组合逻辑分析、组合逻辑的作用、计数器、移位寄存器、存储器、可编程逻辑与软件、集成电路技术等。全书的特色在于示例与习题丰富、图解清晰、语言流畅、写作风格简约。
本书可作为高等院校电子信息类专业本科生的教材,也可供相关技术、科研管理人员使用,或作为继续教育的参考书。
目录
- 1 Digital Concepts
- 1-1 Digital and Analog Quantities
- 1-2 Binary Digits, Logic Levels, and Digital Waveforms
- 2 Number Systems, Operations, and Codes
- 2-1 Decimal Numbers
- 2-2 Binary Numbers
- 2-3 Decimal-to-Binary Conversion
- 2-4 Binary Arithmetic
- 2-5 1’s and 2’s Complements of Binary Numbers
- 2-6 Signed Numbers
- 2-7 Arithmetic Operations with Signed Numbers
- 2-8 Hexadecimal Numbers
- 2-9 Octal Numbers
- 2-10 Binary Coded Decimal (BCD)
- 2-11 Digital Codes
- 2-12 Error Detection and Correction Codes
- 3 Logic Gates
- 3-1 The Inverter
- 3-2 The AND Gate
- 3-3 The OR Gate
- 3-4 The NAND Gate
- 3-5 The NOR Gate
- 3-6 The Exclusive-OR and Exclusive-NOR Gates
- 4 Boolean Algebra and Logic Simplification
- 4-1 Boolean Operations and Expressions
- 4-2 Laws and Rules of Boolean Algebra
- 4-3 DeMorgan’s Theorem
- 4-4 Boolean Analysis of Logic Circuits
- 4-5 Simplification Using Boolean Algebra
- 4-6 Standard Forms of Boolean Expressions
- 4-7 Boolean Expressions and Truth Tables
- 4-8 The Karnaugh Map
- 4-9 Karnaugh Map SOP Minimization
- 4-10 Karnaugh Map POS Minimization
- 5 Combinational Logic Analysis
- 5-1 Basic Combinational Logic Circuits
- 5-2 Implementing Combinational Logic
- 5-3 The Universal Property of NAND and NOR Gates
- 5-4 Combinational Logic Using NAND and NOR Gates
- 5-5 Logic Circuit Operation with Pulse Waveform Inputs
- 6 Functions of Combinational Logic
- 6-1 Basic Adders
- 6-2 Parallel Binary Adders
- 6-3 Ripple Carry versus Look-Ahead Carry Adders
- 6-4 Comparators
- 6-5 Decoders
- 6-6 Encoders
- 6-7 Code Converters
- 6-8 Multiplexers (Data Selectors)
- 6-9 Demultiplexers
- 6-10 Parity Generators/Checkers
- 7 Latches, Flip-Flops, and Timers
- 8 Counters
- 9 Shift Registers
- 10 Memory and Storage
- 11 Introduction to Digital Signal Processing
- 12 Integrated Circuit Technologies
- Answers to Odd-Numbered Problems