Syllabus
UNIT 1: Number systems & codes
Number systems & codes, Binary arithmetic, Boolean algebra and switching function. Minimization of switching function, Concept of prime implicant, Karnaugh map method, Quine McCluskey’s method,Cases with don’t care terms, Multiple output switching function.UNIT 2: Introduction to logic gates
Introduction to logic gates, Universal gate, Half adder,Half subtractor, Full adder, Full subtractor circuits, Series & parallel addition, BCD adders, Look-ahead carry generator.UNIT 3: Linear wave shaping circuits
Linear wave shaping circuits, Bistable, Monostable & Astable multivibrator, Schmitt Trigger circuits & Schmitt-Nand gates. Logic families:RTL, DTL, All types of TTL circuits, ECL, I2L, PMOS, NMOS, & CMOS logic, Gated flip- flops and gated multivibrator, Interfacing between TTL to MOS.UNIT 4: Encoders, Decoders
Decoders, Encoders, Multiplexers, Demultiplexers, Introduction to various semiconductor memories, & designing with ROM and PLA. Introduction to Shift Registers, Counters, Synchronous & Asynchronous counters, Designing of combinational circuits like code converters.UNIT 5: Introduction to converters
Introduction of Analog to Digital & Digital to Analog converters, sample & hold circuits and V-F converters.Practicals:
- To study and test of operation of all logic gates for various IC's.
- Verification of Demorgan's theorm.
- To construct of half adder and full adder.
- To construct of half subtractor and full subtractor.
- Verification of versatility of NAND gate.
- Verification of versatility of NOR gate.
- Designing and verification of property of full adder.
- Design A BCD to excess-3 code conveter.
- Design a Multiplexer/Demultiplexer.
- Design of counters.
0 comments:
Post a Comment