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所在平台: Udemy |
课程主页: https://www.udemy.com/course/ultimate-2021-digital-circuits-and-logic-design-course/
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课程名称:终极2022数字电路与逻辑设计课程 课程概述: "Power Tech Academy"推出了一门特别的课程,专注于数字电路和逻辑设计。该课程旨在教授学生如何设计数字逻辑电路以执行特定功能,使学生更深入地理解计算机的内部工作原理。课程涵盖数字逻辑设计的基础知识,从不同进制数系统(包括二进制、十进制和十六进制)的基本概念和转换,逐步进入基本逻辑元件和逻辑表达式的推导,以及如何优化电路图。此外,课程还使用“Logisim”和“Multisim”等软件进行逻辑电路的模拟和实现。 课程结构: 1. **第一部分:简介** - 数字系统和逻辑设计概述 - 编码系统及其转换 - 二进制系统的算术运算 2. **第二部分:基础与特种逻辑门及其应用** - 基本逻辑门(与、或、非)的符号和真值表 - 通用逻辑门(与非、或非)的符号和真值表 - 特种逻辑门(异或和同或)的符号和真值表 - 使用代数简化逻辑方程 3. **第三部分:门级最小化** - 最小项和最大项的概念 - SOP和POS的标准实现 - K图的各种类型(2、3、4、5变量) - 不关心条件及K图求POS的方法 4. **第四部分:组合逻辑电路** - 半加器的设计 - 全加器的设计 - 8位二进制加法器 - 二进制减法器 - 二进制加减器 - BCD加法器 - 二进制乘法器 - 二进制大小比较器 - 解码器和编码器的设计 - 选通器和分频器的设计 5. **第五部分:Logisim软件** 6. **第六部分:数字系统的逻辑波和测量设备** - 逻辑波参数(周期、频率、占空比) - 基本数字设备(LED、7段显示器、点阵、阻抗、电路集成器件) - 数字系统的测量设备(示波器、逻辑分析仪、函数发生器) 7. **第七部分:Multisim软件** 8. **第八部分:使用面包板实际实施一些逻辑电路的实验室** 9. **第九部分:时序逻辑电路** - 时序逻辑电路的类型 - SR和D触发器 - D、JK和T触发器 - 有限状态机(FSM) - 其他时序逻辑电路 本课程通过多个专题深入探讨数字电子学和逻辑设计,学生在课程中将完成各种作业和练习,以将所学理论应用于实际。同时,课程中特别设置了两部分以使用软件进行模拟,确保学生能充分受益。
" Power Tech Academy " introduces a special course for ( Digital Circuits and Logic Design )This course is designed to teach students how to design a digital logic circuit to perform a specific desired function. Taking this course will give students a much better understanding of how the internals of a computer work. so our course aims to teach students the fundamentals of digital logic design. Starting from learning the basic concepts of the different base number systems ( Binary - Decimal - Hexadecimal ) and their Conversions to basic logic elements and deriving logical expressions to further optimize a circuit diagram. Also we use software for simulation and implementation of our Logic circuits which already we made Designs for them like " Logisim & Multisim ".This course is structured in such a way that each section is dedicated to a specific topic in regards to digital electronics and Logic Design. The lectures contained in each section describe in detail the different tools and techniques used to design digital logic circuits.There are assignments and Exercises throughout this course that students can use to put the theory taught to practical use. There are also two sections for using software of simulation " Logisim & Multisim ", so you can get the most benefit from this course. Plan of Our Course will be like that:1- section (1): ( Introduction ) - introduction for Digital system and Logic Design - Numbering systems and their conversions - Arithmetic operations for Binary System2- section (2): ( Basic and Specialized Logic Gates and their applications ) - Basic Logic gates ( AND , OR , NOT ) , their Symbols and Truth tables - Universal Logic gates ( NAND , NOR ) , their Symbols and Truth tables - Specialized Logic gates ( X-OR & X-NOR) , their Symbols and Truth tables - Simplification of Logic equations using Algebraic manipulation3- section (3): ( Gate Level Minimization ) - Concept of Minterms and Maxterms - Concept of SOP and POS for standard implementation - all Types of K-maps ( 2 variables , 3 variables , 4 variables , 5 variables ) - Don't care Conditions and how can you get the POS using K-map4- section (4): ( Combinational Logic Circuits ) - Design of half Adder - Design of Full Adder - 8-bits Binary Adder - Binary Subtractor - Binary ( Adder - Subtractor ) - BCD Adder - Binary Multiplier - Binary Magnitude Comparator - Design of ( Decoder & Encoder ) - Design of ( Multiplexer & Demultiplexer )5- section (5): ( Logisim Software ) 6- section (6): ( Logic waves and Devices of measuring for Digital systems ) - Logic Waves parameters ( period , Frequency , Duty Cycle ) - Basic Digital Devices ( LEDs , 7-Segments , Dot Matrix , Ressistors , ICs ) - Measuring Devices of Digital Systems ( oscilloscope , Logic Analyzer , Function generator ) 7- section (7): ( Multisim Software )8- section (8): ( Laboratory for implementation some Logic Circuits practically using Breadboard )9- section (9): ( Sequential Logic Circuits ) - Types of Sequential Logic Circuits - ( SR & D ) Latches - ( D , JK and T ) Flip Flops - " Finite State Machine (FSM) " - another Sequential Logic Circuits