Digital and Microprocessor Fundamentals: Theory and Applications (4th Edition): Theory and Applications (4th Edition)

Author: Kleit
Publisher:
Publish Date: 2004-08-01
Features: With the development of science and technology and the improvement of craftsmanship, modern information technology has achieved remarkable accomplishments. The fruits of information technology development are permeating every corner of today's society. As the foundation of modern information technology, digital and microprocessor technology has also made significant progress. Originally, digital circuits, microcontrollers, and microprocessor technology were fundamental courses for electronic and information engineering majors, but they have now become compulsory courses for the majority of engineering disciplines in China. How to integrate the achievements of modern information technology development into the teaching of digital and microprocessor technology courses is not only an urgent issue for teachers of electronic and information engineering majors in Chinese universities but also a goal for teaching staff in other engineering disciplines (such as electrical engineering, mechatronics, and electromechanical integration). This book is a summary of Professor William Kleitz's many years of teaching and research. It covers two main parts: digital circuits and microprocessor technology. The digital circuits section includes basic theories and applications of various gate circuits and combinational logic, flip-flops and sequential logic, and interface circuits with analog signals, with a particular focus on the application of various digital circuits in microprocessor systems. The microprocessor section primarily introduces system hardware composition, bus methods, instruction sets, and interfaces using the 8085A 8-bit microprocessor. Finally, it uses the 8051 8-bit microcontroller as an example to explain the differences between microcontrollers and microprocessors, as well as their system composition, interfaces, instruction sets, and practical applications. Each chapter includes a summary of its content and provides readers with common professional terms and exercises (with answers to some exercises provided at the end of the book) to enhance their understanding of the material. The content of this book is both in-depth and accessible, aiming to cultivate and improve readers' practical design skills in digital and microprocessor technology. Based on the content of the previous three editions, this book has added new technologies in digital and microprocessor technology in an appendix, such as computer magnetic/optical storage, programmable logic devices CPLD and FPGA, and microprocessor simulation. The accompanying CD-ROM provides readers with useful learning tools. This book covers two main parts: digital circuits and microprocessor technology. The digital circuits section includes basic theories and applications of various gate circuits and combinational logic, flip-flops and sequential logic, and interface circuits with analog signals, with a particular focus on the application of various digital circuits in subsequent chapters. The microprocessor section primarily introduces system hardware composition, bus methods, instruction sets, and interfaces using the 8085A 8-bit microprocessor. Finally, it uses the 8051 8-bit microcontroller as an example to explain the differences between microcontrollers and microprocessors, as well as their system composition, interfaces, instruction sets, and practical applications. The content of this book is both in-depth and accessible, aiming to cultivate and improve readers' practical design skills in digital and microprocessor technology. This book can be used as a textbook for digital circuits and microprocessor technology courses in electrical engineering majors, as well as a self-study textbook and reference book for non-electrical engineering majors and other engineering professionals in the field of digital circuits and microprocessor systems.

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