
Digital Logic Circuit Analysis and Design
Pearson (Publisher)
Published on 19. April 1995
Book
Paperback/Softback
864 pages
978-0-13-463894-2 (ISBN)
Description
For introductory digital logic design or computer engineering courses in electrical and computer engineering or computer science at the sophomore- or junior-level. Many recent texts place instructors in the difficult position of chosing between authoritative, state-of-the art coverage and an approach that is highly supportive of student learning. This carefully developed text was widely praised by reviewers for both its great clarity and its rigor. The book balances theory and practice in depth without getting bogged down in excessive technical or mathematical language and has abundant coverage of current topics of interest, such as programmable devices, computer-aided design, and testability. An unusually large number of illustrations, examples, and problems help students gain a solid sense of how theory underlies practice.
More details
Language
English
Place of publication
United States
Publishing group
Pearson Education (US)
Target group
College/higher education
Dimensions
Height: 235 mm
Width: 205 mm
Thickness: 37 mm
Weight
1423 gr
ISBN-13
978-0-13-463894-2 (9780134638942)
Schweitzer Classification
Content
0. Introduction.
1. Number Systems and Codes.
2. Algebraic Methods for Analysis and Synthesis of Logic Circuits.
3. Simplification of Switching Functions.
4. Modular Combinational Logic.
5. Combinational Circuit Design with Programmable Logic Devices.
6. Introduction to Sequential Devices.
7. Modular Sequential Logic.
8. Analysis and Synthesis of Synchronous Sequential Circuits.
9. Simplification of Sequential Circuits.
10. Asychronous Sequential Circuits.
11. Sequential Circuits with Programmable Logic Devices.
12. Logic Circuit Testing and Testable Design.
13. Design Examples.
1. Number Systems and Codes.
2. Algebraic Methods for Analysis and Synthesis of Logic Circuits.
3. Simplification of Switching Functions.
4. Modular Combinational Logic.
5. Combinational Circuit Design with Programmable Logic Devices.
6. Introduction to Sequential Devices.
7. Modular Sequential Logic.
8. Analysis and Synthesis of Synchronous Sequential Circuits.
9. Simplification of Sequential Circuits.
10. Asychronous Sequential Circuits.
11. Sequential Circuits with Programmable Logic Devices.
12. Logic Circuit Testing and Testable Design.
13. Design Examples.