Lessons
Share Exit Fullscreen Back to course
Digital Electronics-I (26831)
  • Course Materials
    • Syllabus
    • Marks Distribution
    • Lesson Plan
    • Final Term Suggestion
    • Super Short Suggestions
    • Sample Question
  • Chapter 1: Basic Concept's of Digital Electronics
    • Lecture - 1
      • Join this Course to access resources
    • Lec-1: Analog and Digital Circuits, Signals and Use of Digital Circuits - Basic Electronics
  • Chapter 2: Understand the Binary Arithmetic Operation
    • Lecture - 2
    • Lec-2: Binary,Decimal,Octal,Hexadecimal Conversion
    • Lecture - 3
    • Lecture - 31
    • Lec-3: Understanding Logic Gates
    • Lecture - 4
    • Lec-4: Boolean Algebra Operation and Boolean Theorem | Saddam Saadi Sir
    • Lecture - 4(1)
    • Lec-4(1): Decimal to Binary Conversion | decimal to binary
  • Chapter 3: Understand the concept of Logic gates.
    • Lecture - 5
    • Lec-5: Binary Coded Decimal (BCD) Code
    • Lecture - 6
    • Lec-6.1: Binary to Gray Code Conversion
    • Lec-6.2: BCD Addition
    • Lecture - 7
    • Lec-7.2: Hamming Code | Error Detection
    • Lec-7.1: Excess-3 Code (XS-3 Code)
    • Lec-7.3: Hamming Code | Error Correction
  • Chapter 4: Understand the features of the logic families and digital IC’s.
    • Lecture - 8
    • Logic Gates (Part 1)
    • Lecture - 9
    • Logic Gates (Part 2)
  • Chapter 5: Understand the concepts of electronic circuit of logic gates & logic IC’s.
    • Lecture - 10
    • Lecture - 11
    • Logic Gates (Part 3)
    • Logic Gates (Part 4)
    • Logic Gates (Part 5) | Important!
    • Logic Gates (Part 6) | Important!
    • NAND Gate as Universal Gate (Part 1)
  • Chapter 6: Concepts of electronic circuit of logic gates
    • Lecture - 12
    • NAND Gate as Universal Gate (Part 2)
    • NOR Gate as Universal Gate
  • Chapter 7: Understand various combinational logic circuits.
    • Lecture - 13
    • Karnaugh Map (K' Map) - Part 1
    • Karnaugh Map (K' Map) - Part 2
    • Don't Care in Karnaugh Map (K' Map)
  • Chapter 8: Design Logic Circuit
    • Lecture - 14
    • Half Adder
    • Lecture - 15
    • Full Adder
    • Lecture - 16
    • Full Adder using Half Adder
    • Lecture - 17
    • 4 Bit Parallel Adder using Full Adders
    • Lecture - 18
    • Half Subtractor
    • Lecture - 19
    • Full Subtractor | Easy Explanation
    • Lecture - 20
    • 2-Bit Multiplier Using Half Adders
    • Lecture - 21
    • BCD Adder | Simple Explanation
    • Lecture - 22
    • Introduction to Multiplexers | MUX Basic
    • 4X1 Multiplexer
    • 8X1 Multiplexer
    • Lecture - 23
    • Introduction to Demultiplexer | 1:2 DEMUX
    • Lecture - 24
    • 2-Bit Comparator
  • Chapter-09 :Sequential Logic Circuit
    • Lecture - 25
    • Introduction to Sequential Circuits | Important
    • SR Latch | NOR and NAND SR Latch
    • Lecture - 26
    • Difference between Latch and Flip Flop
    • Introduction to SR Flip Flop
    • Truth Table, Characteristic Table and Excitation Table for SR Flip Flop
    • Lecture - 27
    • Introduction to D flip flop
    • Truth Table, Characteristic Table and Excitation Table for D Flip Flop
    • Lecture - 28
    • Introduction to JK flip flop
    • Truth Table, Characteristic Table and Excitation Table for JK flip flop
    • Lecture - 29
    • Race Around Condition or Racing in JK Flip Flop
    • Lecture - 30
    • Master Slave JK Flip Flop
    • Lecture - 32
    • Introduction to T flip flop
    • Truth Table, Characteristic Table and Excitation Table for T flip flop