Learn how to design digital logic circuits, specifically combinational and sequential circuits, with DIGITAL LOGIC AND MICROPROCESSOR DESIGN WITH INTERFACING, 2E. This book teaches you how to put these two types of circuits together to form both dedicated and general-purpose microprocessors. This books unique approach combines the use of logic principles with the building of individual components to create data paths and control units. With this book you are able to design simple microprocessors, implement them in real hardware, and interface them to real-world devices. Watch the exciting process as your own microprocessor comes to life in real hardware using the knowledge and skills you gain from DIGITAL LOGIC AND MICROPROCESSOR DESIGN WITH INTERFACING, 2E.
See more
Current price
€88.34
Original price
€92.99
Save 5%
Delivery/Collection within 10-20 working days
Product Details
Weight: 885g
Dimensions: 189 x 234mm
Publication Date: 01 Jan 2017
Publisher: Cengage Learning Inc
Publication City/Country: United States
Language: English
ISBN13: 9781305859470
About Enoch HwangEnoch O. Hwang
Dr. Enoch Hwang has a Ph.D. in Computer Science from the University of California Riverside. He currently serves as a Professor of Computer Science at La Sierra University in Southern California teaching digital logic and microprocessor design. In 2015 Dr. Hwang was invited to serve as a visiting professor to Zhejiang University in Hangzhou China where he taught their Digital Systems Design course. Many new ideas from that class have been incorporated into this edition of the book. From as early as childhood Dr. Hwang was fascinated with electronic circuits. In one of his first experiments he attempted to connect a microphone to the speaker inside a portable radio through the earphone plug. Instead of hearing sound from the microphone through the speaker smoke was seen coming out of the radio. Thus ended that experiment and his familys only radio. He now continues on his interest in digital circuits with research in embedded microprocessor systems controller automation power optimization and robotics.