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Sem 4 - DIGITAL ELECTRONICS AND LOGIC DESIGN

Module 1
Gates –Inverter – OR gates – AND gates – NOR Gates – De Morgan’s Theorems – NAND Gates – EXCLUSIVE-OR Gates – Tristate Inverter – TTL Circuits – Digital Integrated Circuits – 7400 Devices – TTL Characteristics – TTL Overview – AND -OR- NOT Gates – Open-Collector Gates – CMOS gates.
Module 2
Boolean Algebra and Karnaugh Maps -  Boolean Relations – Sum-of-Products method – Algebraic Simplification – Karnaugh maps – Pairs – Quads – and Octets – Karnaugh Simplifications – Don’t-Care Conditions. Multiplexers – de-multiplexers – decoder and encoder.
Module 3
Arithmetic-Logic Units – Binary Addition – Binary Subtraction – Half Adders – Full Adders – Binary Adders – signed Binary Numbers – 2’s Complement – 2’s-Complement Adder-Subtractor.
Module 4
Flip Flops  – RS Latches – Level Clocking – D Latches – Edge-Triggered D & T Flip-Flops – Edge-Triggered JK Master-slave Flip-Flop.
Module 5
Registers and Counters – Buffer Registers – Shift Registers – Controlled Shift Registers – Ripple Counters – Synchronous Counters – Ring counters – Modulo counters – Three-State Register. ROMs – PROMs and EPROMs – RAMs. A small TTL Memory.
References
1. Digital Fundamentals: Floyd, Pearson Edn.
2. Digital Design: Wakerly, Pearson Education.
3. Fundamentals of digital circuits: A Anand Kumar, PHI
4. Digital Integrated Electronics: Taub and Shilling, McGraw Hill,
5. Digital electronics: D C Green, Pearson Edn.
6. Digital Logic and state machine design: Comer, Oxford.
7. Digital electronic principles and applications: A K Maini, Khanna Pub.
8. Digital electronic principles: Malvino and Leach, Mc Graw Hill.
9. Logic and computer design fundamentals: M Morris Mano, Pearson Edn.