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Welcome to Skill-Lync’s 19+ Hour Basics of Digital Electronics course! This comprehensive, free course is perfect for students, engineers, and beginners who want to master the fundamentals of digital electronics and apply these concepts to real-world projects.
In this Skill-Lync digital electronics course, you’ll start by learning about the number system, understanding how to convert between binary, octal, and hexadecimal systems. From there, you’ll explore the fundamentals of logic gates like AND, OR, NAND, and NOR, and learn how to implement digital logic circuits using CMOS technology.
As part of your Skill-Lync training, you’ll dive deep into Boolean algebra, simplifying logic functions with Karnaugh maps and mastering code conversion techniques. The course also covers key topics such as combinational circuits (adders, subtractors, encoders, multiplexers) and sequential circuits like flip-flops, shift registers, and counters.
You’ll explore finite state machines (FSMs) and programmable logic devices (PLDs) such as FPGA and ASIC technologies, gaining valuable insights into modern digital electronics applications.
By the end of this Skill-Lync basic digital electronics course, you will have a solid understanding of digital logic design and will be well-prepared to tackle real-world problems, making this one of the best digital electronics tutorials available.
🔑 Key Topics Covered:
Digital number systems: Binary, octal, hexadecimal
Logic gates and their implementations
Boolean algebra and logic function simplification
Combinational and sequential circuits (flip-flops, adders, multiplexers)
Finite state machines (FSMs) and programmable logic devices (PLDs)
FPGA and ASIC in real-world VLSI applications
📜 Course Highlights:
Full 19+ hours of in-depth digital electronics training
Free access with certificate upon completion
Designed for both beginners and advanced learners
Ideal for anyone looking to learn digital electronics for engineers or students
Enroll in this free digital electronics course and start mastering digital logic circuits today! 📈
Timestamps -
0:03:30 - VLSI Basics of Digital Electronics
0:12:31 - Number System in Engineering
0:25:15 - Number Systems in Digital Electronics
0:27:41 - Number System Conversion
0:31:08 - Binary to Octal Number Conversion
0:43:29 - Decimal to Binary Conversion using Double-Dabble Method
0:47:50 - Conversion from Octal to Binary Number System
0:54:38 - Octal to Hexadecimal and Hexadecimal to Binary Conversion
1:13:27 - Binary Arithmetic and Complement Systems
1:28:08 - Subtraction Using Two's Complement
1:41:58 - Logic Gates in Digital Design
1:49:40 - Understanding the NAND Logic Gate
2:09:10 - Designing XOR Gate Using NAND Gates
2:31:12 - NOR as a Universal Logic Gate
2:49:21 - CMOS Logic and Logic Gate Design
3:08:18 - Introduction to Boolean Algebra
3:29:53 - Boolean Laws and Proofs
3:43:26 - Proof of De Morgan's Theorem
4:10:23 - Week 3 Session 4
4:37:29 - Function Simplification using Karnaugh Map
4:48:45 - Conversion from SOP to POS in Boolean Expressions
4:56:58 - Understanding KMP: An Introduction to Karnaugh Maps
5:36:53 - Plotting of K Map
5:55:01 - Grouping of Cells in K-Map
6:15:13 - Function Minimization using Karnaugh Map (K-map)
6:32:03 - Gold Converters
6:55:23 - Positional and Nonpositional Number Systems
7:06:37 - Access Three Code in Engineering
7:23:53 - Understanding Parity Errors and Parity Generators
8:01:18 - Three Bit Even-Odd Parity Generator
8:24:46 - Combinational Logic Circuits
8:54:15 - Digital Subtractor Overview
9:18:51 - Multiplexer Based Design
9:54:39 - Logic Gate Design Using Multiplexers
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