Introduction to Digital Circuits - Digital Logic - RAHDG201

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Overview

DescriptionIn RAHDG 201 we'll Focus on basics of design and analysis of combinational logic circuits. This course will cover design and analysis of combinational logic circuits using basic logic gates and other building blocks like multiplexers and ROMs. It includes Design and analysis of latches and flip-flops. Number of numerical problems have been solved after each topic to understand the basics of the course.This course describes the design of data path components: adders, multipliers, registers, shifters, and counters. The design and analysis of synchronous state machines. State minimization and introduction to state assignment. Each topic will have many examples which goes over them briefly with different parts. By end of each chapter there will be a quiz for you to test your understanding of that specific chapter.Core subject if this course is combinational and sequential logic circuits. Topics include number systems, Boolean algebra, logic families, medium scale integration (MSI) and large-scale integration (LSI) circuits, analog to digital (AD) and digital to analog (DA) conversion, and other related topics. By end of the course you should be able to construct, analyze, verify, and troubleshoot digital circuits using appropriate techniques and test equipment.This course is mostly for academic level Engineering students in different universities around the world.Since you would be having a lifetime access to this course you would be able to revisit during your career as year passes to refresh your memory.InstructorThe instructor of this course is Mehrad Nahouri. He has an Associates in Electrical Engineering concentration on digital field and is a lecturer at Rahsoft.What is the target audience?This course is for students working in digital field.Undergraduate studentsElectrical EngineerComputer EngineerGraduate students taking digital courseResearchers in digital fieldCourse contentIntroductionNumbers Presenting SystemDifferent Bases numbersBinary CalculationsPresenting Binary NumbersBinary ArithmeticBinary MultiplicationBinary Coded Decimal (BCD)ASCII CodeBoolean AlgebraLogic SystemsLogic OperatorsTruth TableLogic GatesThe Duality PrincipleAssociative LawDistributive LawAbsorption PropertyConsensus TheoremMultiplying OutNAND Only ImplementationAnalysis of NAND CircuitsWaveform with DelayDelay Analysis of CLABCD Addition4-bit ALUWho this course is for:Electrical EngineersComputer EngineersElectrical Engineering StudentsComputer Engineering Students

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