ECE 2103: Digital Electronics and Logic Circuits

Theory Course Teaching Plan

WeekInstructor 1Instructor 2
1Representation of Numbers in different bases; Addition, SubtractionIntroduction to Sequential Circuits
2Base Complement; Binary Multiplication and DivisionAnalysis and Synthesis of Synchronous Sequential Circuits
3Different Code Systems. Boolean Algebra: Various GatesIntroduction to flip-flops, SR, JK, flip-flops
4Sum of products and Product of Sums; Maxterm, MintermMaster Slave, T & D type Flip Flops and Truth Tables
5Karnaugh map methodSynchronous and Asynchronous Counters
6NOR, NAND, AND, OR, INVERT ImplementationRing Counter, Johnson Counter, Counter with Parallel Load
7Diode Logic Gates, Transistor Switches/Gates, MOS GatesRegisters
8TTL, ECL, IIL and CMOS logic with operation detailsMultivibrators
9Design Procedure; Adder, Subtractor, Code ConvertersSemiconductor Memory units
10Parity bit Checker. Analysis of Combinational CircuitsMagnetic Memory units
11Decoder, MultiplexerA/D converter and its applications
12De-multiplexer, ROM and PLAD/A converter and its applications
13Review classesReview classes

ECE 2104: Digital Electronics and Logic Circuits Laboratory

WeekInstructor 1 & 2 (Contents)
1Gate Test of Different ICs & Their Truth Table Verification
2Familiarization & Verification of Universal Gates
3Study of a) Full and Half Adder Circuit b) Full and Half Subtractor Circuit
4Design and Implementation of BCD to Excess-3 Code Converter
5Design & implementation of a) Binary to Gray Code Converter b) Gray to Binary Code Converter
6Familiarization & Verification of Different Flip-Flop Circuits
7Design and Implementation of a 4-bit Ripple Counter
8Design and Implementation of a 4-bit Shift Register Circuit
9Design and Implementation of BCD to Seven Segment Decoder
10Open ended Lab.
11Project presentation on selected topics of digital electronics
12Project presentation on selected topics of digital electronics
13Performance test in the laboratory, Final quiz test