Digital Design of Logic Circuits

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课程简介

课程名称:数字逻辑电路设计 概述:本课程旨在教授逻辑电路设计,适合所有背景的学习者。课程内容将涵盖逻辑电路设计的基础知识,包括数字系统和布尔代数的介绍。学员需要掌握数字系统,特别是二进制数以及布尔代数,因为后续的主题都建立在这两者之上。 课程将介绍布尔函数,并通过卡诺图讲解布尔函数的简化。逻辑门的概念也将被引入,布尔函数的简化是优化逻辑电路设计的关键。值得注意的是,每多用一个门电路,都会导致成本浪费和能源消耗增加,因此优化设计的重要性不亚于设计本身。 课程还将涵盖组合电路的设计,接着讲解同步电路的设计,并详细介绍特定逻辑设备的设计,比如寄存器、计数器和存储单元。学员应努力掌握课程中传授的设计理念。尽管学生通常对电路的功能感兴趣,然而,没有扎实的数学设计知识,难以进行创造性的设计。 此课程为学习者提供了一个全面的逻辑电路设计基础,助力未来的数字设计工作。

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In this course, we teach logic circuit design. There is no specific background required for this course. You will learn everything you need to master on the course.In this course, first number systems and Boolean algebra are explained. The student of this course should learn number systems, especially binary numbers, and Boolean algebra very well since the rest of the subjects lie on these two topics.We introduce Boolean functions and explain the simplification of Boolean functions using Karnaugh maps and introduce logic gates. Simplification of the Boolean functions is an important concept for the optimized design of logic circuits. Don't forget that every extra gate you use in your non-optimized design means a waste of money and extra energy use and low-speed functioning. For these reasons, optimizing your design is as important as performing a design. The design of combinational circuits is covered in the course. Following the combinational circuit design topic, we explain the design of clocked or synchronous circuits. Then the design of specific logic devices such as registers, counters, and memory units are explained. The student of this course should try to get the design philosophy taught in this course. Students usually are interested in the functioning of the circuits and try to avoid to master on mathematical design concepts, however, without good mathematical design knowledge, one cannot do creative designs.

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