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This text provides basic concepts reinforced by plentiful illustrations, examples, exercises, and applications.

Applied Logic features, Implementation features, troubleshooting sections, programmable logic and PLD programming, integrated circuit technologies, and the special topics of signal conversion and processing, data transmission, and data processing and control are included in addition to the core fundamentals. New topics and features have been added to this edition, and many other topics have been enhanced. The approach used in Digital Fundamentals allows students to master the all-important fundamental concepts before getting into more advanced or optional topics.

The range of topics provides the flexibility to accommodate a variety of program requirements. For example, some of the design-oriented or application-oriented topics may not be appropriate in some courses. First bit 1 is shifted serially into the 1 0 0 0 register.

Second bit 0 is shifted serially into 01 0 1 0 0 register and first bit is shifted right. Third bit 1 is shifted into register and 0 1 0 1 0 the first and second bits are shifted right.

Fourth bit 0 is shifted into register and 0 1 0 1 the first, second, and third bits are shifted right. The register now stores all four bits and is full. The circuit is wired using DIP chips and tested. DIP chips In this case, testing can be done by a computer connected to the system.

The logic can be programmed for a specific purpose. In general, they cost less and use less board space that fixed function devices. Digital Related to digits or discrete quantities; having a set of discrete values. Binary Having two values or states; describes a number system that has a base of two and utilizes 1 and 0 as its digits. Bit A binary digit, which can be a 1 or a 0. Pulse A sudden change from one level to another, followed after a time, called the pulse width, by a sudden change back to the original level.

NOT A basic logic function that performs inversion. Programmable A category of digital integrated circuits capable of logic being programmed to perform specified functions. The book harmonizes basic digital electronic theory and the latest developments in digital technology. There are no specific prerequisites to understand this text, although a basic knowledge of electronics is required.

The text is suitable for undergraduate students studying in several branches of engineering, which include electronics and communication, electrical and electronics, telecommunications, computer science, instrumentation, biomedical, and information technology. It can also be used by science students who study electronics as a part of their curriculum, as well as the MCA students. The book is great for self-study too.

The text is grounded in practicality, so as to help students relate theory to applications. Fundamentals Of Digital Circuits contains a discussion of the concepts of Boolean Algebra and how these can be applied to digital circuitry. Both sequential and combination circuits are then elaborately discussed. There are 19 chapters in all, an appendix, glossary, and answers form the three extra sections towards the end.

Each of these questions, along with their answers, can be found across chapters. New exercises, examples, and illustrations have also been added.

Table of Contents: 1. Introduction 2. Number Systems 3. Binary Codes 4.



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