Digital Electronics and Logic Design syllabus
MDM-221-CYB · Second Year Cyber Security, SPPU 2024 pattern. Every unit, the marks scheme, course outcomes and books, copied from the official syllabus PDF.
Unit-wise syllabus
Introduction to Digital Systems
6 hoursBinary Number System: Representation and conversions (decimal, binary, octal, hexadecimal). Logic Levels and Gates: Introduction to digital signals, basic logic gates (AND, OR, NOT, NAND, NOR, XOR). Boolean Algebra: Boolean expressions, laws and theorems, simplification (K-map, Quine-McCluskey method)
Combinational Logic Circuits
6 hoursIntroduction to Combinational Circuits: Concept and examples. Design and Implementation: Adders (Half Adder, Full Adder), Subtractors, Multiplexers, Demultiplexers, Encoders, Decoders. Applications: Arithmetic circuits, data routing, and logical operations in digital systems.
Sequential Logic Circuits
6 hoursBasics of Flip-Flops: SR, JK, D, T. Design and Analysis of Sequential Circuits. Fundamental Concepts: Latch vs Flip-Flop.Sequential Circuit Design: Counters (Asynchronous and Synchronous), Registers, State Machine: Moore and Mealy Models. Analysis and Design: State diagrams, state tables, and timing diagrams
Digital System Design
6 hoursIntroduction to Hardware Description Languages (VHDL/Verilog). Design Flow, Language constructs, Data objects, Data types, Entity, Architecture & types of modeling, Sequential statements, Concurrent statements, Packages, Sub programs, Attributes, HDL modeling of Combinational, Sequential circuits. Design of Basic Digital Systems using VHDL/Verilog
Applications of Digital Logic
5 hoursDesign Principles and Best Practices. FPGA and CPLD, Digital Systems in Communication, Computer Architecture, and Embedded Systems. Digital Signal Processing Fundamentals. Introduction to Microcontrollers and their Digital Logic.
Case Studies in Modern Applications (Robotics, IoT)
Marks and credits
| Head | Marks | Credit |
|---|---|---|
| CCE (continuous comprehensive evaluation) | 40 | 2 |
| End-semester exam | 60 |
Prerequisite: 1. Basic Electronics Engineering (ESE-101-ETC).
Course outcomes
- CO1Apply knowledge of Logic Minimization Techniques to reduce the complexity of Digital circuits.
- CO2Design and implement combinational circuits.
- CO3Design and implement sequential circuits.
- CO4Design and develop effective HDL code for digital circuits.
- CO5Apply different modeling techniques to develop VHDL code for specific Application design.
Books
Text books
- R.P. Jain, “Modern digital electronics”, 3rd edition, 12th reprint TMH Publication, 2007.
- Stephen Brown, “Fundamentals of digital logic design with VHDL” 1st edition, TMH Publication
Reference books
- M. Morris Mano, "Digital Design," Pearson.
- John F. Wakerly, "Digital Design: Principles and Practices," Pearson.
- Mark Bach, “Complete Digital Design”, Tata MCGraw Hill, 2005.
- Charles H. Roth Jr., "Fundamentals of Logic Design," Cengage Learning.
- Douglas Perry, “VHDL programming by examples”, TMH
- J Bhaskar, “A VHDL primer”, Pearson
- Hamacher, Zaky, “Computer Organisation”, McGraw Hill, 5th edition
NPTEL and SWAYAM links
Listed in the official syllabus:
FAQ
How many units are in Digital Electronics and Logic Design?
Digital Electronics and Logic Design (MDM-221-CYB) has 5 units: Unit I Introduction to Digital Systems (6 h); Unit II Combinational Logic Circuits (6 h); Unit III Sequential Logic Circuits (6 h); Unit IV Digital System Design (6 h); Unit V Applications of Digital Logic (5 h).
What is the marks scheme for Digital Electronics and Logic Design?
The official Cyber Security 2024 pattern syllabus lists continuous comprehensive evaluation (CCE) for 40 marks and the end-semester exam for 60 marks, for 2 credits.
What should I know before Digital Electronics and Logic Design?
Prerequisite listed in the syllabus: 1. Basic Electronics Engineering (ESE-101-ETC).