Digital Logic Circuits and Design

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课程简介

课程名称:数字逻辑电路与设计 课程概述:完成本课程后,您将能够掌握数字电路设计的基本概念和技能,包括以下几个方面:1. 理解数制及其转换基础知识。2. 逻辑电路的功能及其设计方法。3. 分类组合逻辑与时序逻辑。4. 根据特定场景设计组合逻辑电路,实现最少逻辑门的使用。5. 应用各种标准技术来优化逻辑门的需求。6. 使用触发器设计时序逻辑电路,如计数器和移位寄存器。7. 理解各种触发器和锁存器的工作原理,并强调其区别。 该课程特别适合计算机科学、电气工程和信息技术领域的学员,将为您打下数字电子学的坚实基础。课程目标是让每位学员能够有效地使用各种组件设计数字电路。数字系统中的信息以二进制数字(称为比特)表示,比特的字母表为{0, 1},表示逻辑值。物理值的确定由所使用的逻辑系列决定。 本课程将深入探讨不同逻辑系列的电压表示,例如,晶体管-晶体管逻辑(TTL)系列通常将逻辑0表示为+0.2伏,将逻辑1表示为+3.4伏;而发射极耦合逻辑(ECL)系列则通常将逻辑0表示为-1.7伏,将逻辑1表示为-0.95伏。这些内容将帮助学员了解信号在不同活跃状态下的正负表现。 总之,此课程将为您的数字电路设计奠定坚实基础。

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课程详情

After completing this course, you'll be able to 1. Understand all the fundamentals of number systems and performing conversion between them. 2. Function of logic circuits and how to design them. 3. Classify Combinational Logic and Sequential Logic. 4. How to design a combinational logic circuit for a given scenario with the minimum number of gates possible.5. Use all the standard techniques to minimize the logic gate requirements6. Design sequential logic circuits like Counters and Shift Registers using Flip flops. 7. Understand the working of various flip flops and latches and highlight the difference between them. If you're an aspirant who belong to the field of Computer Science, Electronics and Information Technology, Then this course will strongly build the foundations of the digital electronics in you. Objective of the course is to make everyone design a digital circuit efficiently using various components.Digital systems contain information that is represented as binary digits called bits.The alphabet of these bits is the set {0, 1}, which represents the logical value of thebits. The physical value is determined by the logic family being used. The transistor-transistorlogic (TTL) family represents a logic 0 typically as + 0.2 volts and a logic 1typically as + 3.4 volts using a + 5 volt power supply; the emitter-coupled logic (ECL)100K family represents a logic 0 typically as - 1.7 volts and a logic 1 typically as -0.95volts using a - 4.5 volt power supply.Thus, a signal can be asserted either positive (plus) or negative (minus), dependingupon the active condition of the signal at that point. The word positive, as usedhere, does not necessarily mean a positive voltage level, but merely the more positiveof two voltage levels, as is the case for ECL.

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