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所在平台: Udemy |
课程主页: https://www.udemy.com/course/digital-circuits-system-design-with-vhdl/
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课程名称:数字电路的数字逻辑设计 课程概述:本课程为数字电子和逻辑设计的入门课程,通过使用VHDL编程,学生将从零开始学习数字电子概念,并通过编写文本形式的程序来设计数字电路。课程强调扎实的基础知识,特别是语法的使用,使学生在编程时能够更加自如。数字电路在现代生活中无处不在,了解数字电子和电路设计的原理非常重要。本课程将为感兴趣的学生提供全面的数字电路设计学习。 课程结构: 第一部分:介绍数字电子和数字系统的基本概念,涵盖数制及其转换、数据表示法(包括带符号的数、1's补码和2's补码)、二进制算术运算等。 第二部分:讲解布尔定理及其函数、SOP和POS形式的转换,以及基本逻辑门及其真值表,包括布尔表达式的最小化和卡诺图的应用。 第三部分:涉及组合逻辑电路的实现,设计半加器、全加器、半减器和全减器,以及使用控制输入的并行二进制加法器等。 第四部分:讨论时序电路及其触发方法,包括SR锁存器、D锁存器和多种触发器的设计与应用。 第五部分:VHDL编程基础,涵盖代码结构、数据类型、运算符、并发代码和顺序代码等,深入探讨VHDL语言如何用于数字电路设计。 本课程适合希望学习数字电子和电路概念的学生,包括工程专业的本科生和对VHDL项目感兴趣的爱好者。 祝您学习愉快!由SkillGems教育提供。
In this course on digital electronics and logic design with VHDL, students will learn the digital electronics concepts from scratch and also learn VHDL programming concepts to design digital circuits by writing the programs in textual form mapped into digital with this front end language of VHDL. In any programming language, we need a strong foundation of the fundamentals, particularly the usage of syntax. Once you are strong enough in using the syntax properly, students will feel comfortable and have some ease to writing programs. Nowadays, everywhere is full of digital circuits embedded in systems; without digital, we cannot imagine our life. If you are really interested in digital electronics and digital circuit behavior, and how to design the digital circuits, this course is absolutely for you. The course is designed in the below manner.Course structure:Section1: In this section, a part of digital electronics; you may learn about what is a system and the digital systems as well as the basic understanding of number systems, after that the conversions of number systems will be clearly discussed like decimal to any radix and any radix to decimal. Next data representations like signed magnitude, signed 1's, and signed 2's complement techniques are discussed here. Binary arithmetic like addition, subtraction, multiplication, and division along with different binary codes are clearly explained.Section 2: In this section, a part of digital electronics;Boolean theorems and their functions, as well as the sum of product, forms (SOP), and product of sums (POS) forms and also you may learn the conversion of SOP into SSOP /CSOP as well as POS into SPOS/CPOS forms, etc., Of course, duals of a boolean function and de morgan's laws also explained. Next explained the basic logic gates and their truth tables and. Equivalence of basic gates or alternative gates for basic gates and different logic circuit implements with gates discussed.Minimization of boolean logicexpressions, Grey to Binary Vice versa Conversions. Overview of Karnaugh map variable k-map 2 variable k-map 3 variable k-map 4 variable k-map discussed.Section 3 In this section, a part of digital electronics;Deals with the implementation of combinational logic circuits like the design analysis procedure for design the combinational logic circuit half adder, a full adder, half subtractor, full subtractor, and parallel binary adder.Using binary adders implementation of 1'sc and 2's complement combinational circuits.designed.circuits. Adder-subtractor with parallel binary adders by using control input explained. The next is Decoder introduction is 2 to 4 decoder, 3 to 8 decoder, and 3 to 8 decoder all types of multiplexers and demultiplexers of combinational logic circuit implementation is showing elaborately.Section4:what is sequential circuit and clock as well as the triggering methods and discussed about the latch i.e SR latch,D latch,using nand nor gates as well as the flip flops for SR,JK,D ,T aslo disccused heredSection5: In this section, a part of digital electronics: Deals with VHDL programming basics. The first part is dealing with the inside of the main code. while the second one deals might be the library. In this course code structure, different data types, operators, concurrent and sequential codes also covered fundamentally associated with the VHDL language. This course also focuses on teaching students about the full details of digital circuits and how the syntax of VHDL is interpreted and how it can be used to design digital circuits and the main distinguishing feature is that it teaches in detail all indispensable and synthesis in a concise format of features in VHDL.This course is well suited for: Who wants to learn digital electronics and circuits concepts. Engineering graduates( students in graduation level) to get a bachelors degree Helpful to do some projects with VHDL hobbyists.Happy learning By SkillGems EducationPUDI V V S NARAYANA