Complete training: Comprehensive Digital Logic Design Course

via Udemy

Go to Course: https://www.udemy.com/course/digital-logic-design/

Overview

Welcome to the ultimate guide to digital logic design! Whether you're a student, hobbyist, or professional, this comprehensive course is your gateway to mastering the intricacies of digital electronics. From foundational concepts to advanced techniques, you'll embark on a journey that demystifies logic design and equips you with practical skills to tackle real-world challenges.Kickstart your learning journey with a deep dive into number systems, codes, and logic gates. Understand the fundamentals of Boolean algebra, standard forms, and combinational logic, laying a solid groundwork for exploring digital systems. Through engaging lectures and hands-on exercises, you'll learn to design, simulate, and optimize logical circuits efficiently.As you progress, delve into the fascinating realm of sequential circuits, where you'll unravel the complexities of flip-flops, registers, and counters. Explore the principles of clocked logic, state machines, and synchronous design, gaining insights into the design and analysis of sequential systems.Whether you're interested in pursuing a career in electronics, or computer engineering, or simply passionate about digital technology, this course offers invaluable knowledge and practical skills to fuel your success.By the end of this course, you'll be equipped with the confidence and expertise to tackle complex digital logic challenges with ease. Join us now and unlock the potential of digital electronics!Course Contents:Section 1: IntroductionLecture 1: Introduction to the CourseLecture 2: Introduction to Number SystemsSection 2: Codes, Gates, and BooleanLecture 3: Decimal and Alphanumeric CodesLecture 4: Logic Gates and Boolean AlgebraSection 3: Standard Forms and K-MapLecture 5: Standard FormsLecture 6: K-MapsLecture 7: Map ManipulationSection 4: XOR Gate and Combinational DesignLecture 8: XOR, Gate Prop Delay, and Combinational DesignSection 5: Hardware Description Language and ModulesLecture 9: Verilog HDL #01Lecture 10: Verilog HDL #02Section 6: Flip-FlopsLecture 11: Flip-FlopsLecture 12: Latches & Flip FlopsLecture 13: Flip-Flop Timing and Sequential Circuit AnalysisSection 7: Design Mapping and Logic FunctionsLecture 14: Hierarchical Design and Technology MappingLecture 15: Rudimentary Logic Functions and DecodersLecture 16: EncodersLecture 17: MultiplexersSection 8: Sequential CircuitsLecture 18: Sequential Circuit DesignLecture 19: Designing with JK Flip FlopsLecture 20: Programmable Logic DevicesLecture 21: Sequential Circuits & LatchesSection 9: RegistersLecture 22: Registers and Shift RegistersLecture 23: Shift register (parallel load) & Bidirectional Shift register & Register TransferLecture 24: Register Transfer Operations & Micro OperationsSection 10: CountersLecture 25: CountersLecture 26: Ripple CountersLecture 27: Synchronous CountersSection 11: MemoryLecture 28: Memory BasicsLecture 29: Arrays of RAM ICs

Skills

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