Digital Logic Design by Prof Ravindrababu Ravula
Published 9/2026
Created by Prof Ravindrababu Ravula
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 246 Lectures ( 37h 7m ) | Size: 35.8 GB
Published 9/2026
Created by Prof Ravindrababu Ravula
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 246 Lectures ( 37h 7m ) | Size: 35.8 GB
Learn Digital Logic Design from Scratch | Boolean Algebra, K-Maps, Combinational & Sequential Circuits | GATE Preparatio
What you'll learn
Understand the fundamental concepts of Digital Logic Design and Digital Electronics from the basics.
Master number systems, binary arithmetic, Boolean algebra, and logic gates.
Simplify and analyze digital circuits using Boolean algebra and Karnaugh Maps (K-Maps).
Design and analyze combinational circuits such as adders, subtractors, multiplexers, demultiplexers, encoders, and decoders.
Understand and design sequential circuits, including latches, flip-flops, registers, and counters.
Analyze synchronous and asynchronous sequential circuits and understand their timing behavior.
Learn the concepts of state machines, state diagrams, and state reduction.
Solve conceptual, numerical, and GATE-level problems in Digital Logic Design.
Develop the ability to analyze, design, and troubleshoot digital circuits systematically.
Build a strong foundation in DLD for GATE preparation, university examinations, competitive exams, and engineering applications.Requirements
No prior knowledge of Digital Logic Design is required. The course starts from the basics and gradually progresses to advanced concepts.
Students should have a basic understanding of high-school mathematics, including arithmetic and basic algebra.
A basic understanding of electrical/electronic concepts is helpful but not mandatory.
The course is suitable for engineering students, GATE aspirants, and beginners who want to build a strong foundation in Digital Logic Design.
Students will need a computer or smartphone with an internet connection to access the course and practice the concepts.Description
Master Digital Logic Design (DLD) for GATE, Engineering & Competitive Exams
Taught by RBR Sir
Build a strong foundation inDigital Logic Design (DLD) with this complete course designed forGATE aspirants, engineering students, competitive exam learners, and anyone who wants to master digital logic and digital circuit problem solving.
This course is taught byRBR Sir, with a strong focus on conceptual clarity, systematic problem solving, and exam-oriented learning. Instead of simply memorizing formulas and rules, you will learnwhy digital circuits work, how to analyze them, and how to approach problems logically and efficiently.
Starting from the fundamentals, the course gradually progresses toward advanced concepts and problem-solving techniques required for
GATE CS, ECE, EE & related examinations
Engineering and university examinations
Digital Electronics and Digital Logic Design courses
Technical and competitive examinations
Placement and aptitude preparation
Conceptual understanding of digital circuits
Advanced digital circuit problem solvingWhat You Will Learn
You will develop a strong understanding of
Number systems and digital representations
Binary arithmetic and codes
Boolean algebra and Boolean functions
Logic gates and their implementation
Boolean function simplification
Karnaugh Maps (K-Maps)
Combinational circuit analysis and design
Adders and subtractors
Multiplexers and demultiplexers
Encoders and decoders
Comparators and other combinational circuits
Latches and flip-flops
Sequential circuit analysis and design
Registers and shift registers
Synchronous and asynchronous counters
State diagrams and state tables
State reduction and state assignment
Finite State Machines (FSMs)
Timing concepts and sequential circuit behavior
GATE-level and exam-oriented problem solvingProblem-Solving Approach
The course focuses on developing the ability to solve DLD problems using
Logical analysis of digital circuits
Boolean algebra techniques
Systematic circuit simplification
K-Map-based minimization
Truth-table analysis
Circuit-to-equation and equation-to-circuit conversion
Sequential circuit analysis
State-based reasoning
Timing and waveform analysis
Exam-oriented shortcuts and problem-solving techniquesTopics Covered
Digital Logic Fundamentals
Digital and analog systems
Number systems
Binary, decimal, octal and hexadecimal conversions
Binary arithmetic
Complements
Digital codesBoolean Algebra & Logic Gates
Basic and universal logic gates
Boolean laws and theorems
De Morgan's theorems
Boolean expressions
Logic gate implementation
NAND and NOR implementationsBoolean Function Simplification
Canonical forms
SOP and POS
Minterms and maxterms
Karnaugh Maps
Don't-care conditions
Logic minimizationCombinational Circuits
Half and full adders
Half and full subtractors
Multiplexers
Demultiplexers
Encoders
Decoders
Comparators
Design and analysis of combinational circuitsSequential Circuits
Latches
Flip-flops
SR, JK, D and T flip-flops
Characteristic and excitation tables
Race-around condition
Master-slave flip-flopsRegisters & Counters
Shift registers
Serial and parallel data transfer
Asynchronous counters
Synchronous counters
Up/down counters
Mod-N counters
Counter design and analysisFinite State Machines
State diagrams
State tables
State reduction
State assignment
Moore and Mealy machines
Sequential circuit designGATE & Practice Sessions
GATE Previous Year Questions (PYQs)
Concept-based problems
Numerical and analytical problems
Multiple problem-solving approaches
Exam-oriented practiceWho this course is for
GATE aspirants preparing for the Digital Logic section of the GATE exam.
Engineering students from ECE, CSE, EEE, IT, and related branches who want to learn Digital Logic Design.
Students preparing for university and semester examinations in Digital Electronics or Digital Logic Design.
Beginners who want to build a strong foundation in digital logic and digital circuits from scratch.
Students preparing for competitive and technical examinations that include Digital Logic concepts.
Anyone interested in learning how to analyze and design digital circuits and strengthen their problem-solving skills.Homepage
Code:
https://www.udemy.com/course/digital-logic-design-n
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