139,99 €
As electronic devices become increasingly prevalent in everyday life, digital circuits are becoming even more complex and smaller in size. This book presents the basic principles of digital electronics in an accessible manner, allowing the reader to grasp the principles of combinational and sequential logic and the underlying techniques for the analysis and design of digital circuits. Providing a hands-on approach, this work introduces techniques and methods for establishing logic equations and designing and analyzing digital circuits. Each chapter is supplemented with practical examples and well-designed exercises with worked solutions.
This second of three volumes focuses on sequential and arithmetic logic circuits. It covers various aspects related to the following topics: latch and flip-flop; binary counters; shift registers; arithmetic and logic circuits; digital integrated circuit technology; semiconductor memory; programmable logic circuits.
Along with the two accompanying volumes, this book is an indispensable tool for students at a bachelors or masters level seeking to improve their understanding of digital electronics, and is detailed enough to serve as a reference for electronic, automation and computer engineers.
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Seitenzahl: 291
Veröffentlichungsjahr: 2016
Cover
Title
Copyright
Preface
P.1. Summary
P.2. The reader
1 Latch and Flip-Flop
1.1. Introduction
1.2. General overview
1.3. Gated SR latch
1.4. Gated D latch
1.5. Basic JK flip-flop
1.6. T flip-flop
1.7. Master-slave and edge-triggered flip-flop
1.8. Flip-flops with asynchronous inputs
1.9. Operational characteristics of flip-flops
1.10. Exercises
1.11. Solutions
2 Binary Counters
2.1. Introduction
2.2. Modulo 4 counter
2.3. Modulo 8 counter
2.4. Modulo 16 counter
2.5. Counter with parallel load
2.6. Down counter
2.7. Synchronous reversible counter
2.8. Decoding a down counter
2.9. Exercises
2.10. Solutions
3 Shift Register
3.1. Introduction
3.2. Serial-in shift register
3.3. Parallel-in shift register
3.4. Bidirectional shift register
3.5. Register file
3.6. Shift register based counter
3.7. Exercises
3.8. Solutions
4 Arithmetic and Logic Circuits
4.1. Introduction
4.2. Adder
4.3. Comparator
4.4. Arithmetic and logic unit
4.5. Multiplier
4.6. Divider
4.7. Exercises
4.8. Solutions
5 Digital Integrated Circuit Technology
5.1. Introduction
5.2. Characteristics of the technologies
5.3. TTL logic family
5.4. CMOS logic family
5.5. Open drain logic gates
5.6. Other logic families
5.7. Interfacing circuits of different technologies
5.8. Exercises
5.9. Solutions
6 Semiconductor Memory
6.1. Introduction
6.2. Memory organization
6.3. Operation of a memory
6.4. Types of memory
6.5. Applications
6.6. Other types of memory
6.7. Exercises
6.8. Solutions
7 Programmable Logic Circuits
7.1. General overview
7.2. Programmable logic device
7.3. Applications
7.4. Programmable logic circuits (CPLD and FPGA)
7.5. References
7.6. Exercises
7.7. Solutions
Appendix: Digital Integrated Circuits and Software
A1.1. Combinational circuit
A1.2. Sequential circuit
A1.3. Memory and programmable circuit
A1.4. Computer-aided design software
Bibliography
Index
End User License Agreement
Cover
Table of Contents
Begin Reading
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