Digital Electronics
Master the fundamentals of digital logic, from binary arithmetic to error correction codes.
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Curriculum Syllabus
All modules are open and public. Jump directly into what you need or follow in sequence.
Number Systems & Binary Arithmetic
Understanding binary, hexadecimal, and octal number systems used in digital electronics.
Logic Gates & Boolean Algebra
AND, OR, NOT, NAND, NOR, XOR gates and Boolean algebra fundamentals.
Karnaugh Maps (K-Maps)
Simplifying Boolean expressions using Karnaugh maps for efficient circuit design.
Combinational Logic Circuits
Designing combinational circuits: multiplexers, decoders, and adders.
Sequential Logic Circuits
Flip-flops, counters, and registers in sequential circuit design.
Finite State Machines (FSM)
Designing and analyzing finite state machines for control logic.
Digital Electronics - Interview Q&A
Common interview questions and answers for digital electronics fundamentals.
Fast Adders: Carry Lookahead and Beyond
Advanced adder architectures including carry lookahead and carry select adders.
Multipliers and Barrel Shifters
Hardware multipliers and barrel shifters for efficient arithmetic operations.
Fixed and Floating Point Representation
Number representation formats including IEEE 754 floating point.
Error Detection and Correction: Parity and Hamming
Techniques for detecting and correcting errors in digital systems.
Companion Video Courses
Free NPTEL university lectures and full YouTube playlists that deepen this path.
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