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Computer Architecture ( Solved Syllabus )

UNIT 1

Logic Gates: AND, OR, NOT, NAND, NOR, XOR, XNOR, NAND & NOR as Universal
Gates, Logic Gates Applications.


Boolean Algebra: Introduction, Theorems, Simplification of Boolean Expression using
Boolean Algebra, SOP & POS Forms, Realization of Boolean Expression using Gates, KMaps, Simplification of Boolean Expression using K-Maps.

UNIT 2

Combinational Logic Circuits: Half Adder & Half Subtractor, Full Adder & Full Subtractor,
Parallel Binary Adder, Binary Adder/Subtractor.


Combinational Logic Circuits: Multiplexers & Demultiplexers, Implementation of Boolean
equations using Multiplexer and Demultiplexer, Encoders & Decoders.

UNIT 3

Sequential Logic Circuits: Latch, Flip Flops- R-S Flip-Flop, J-K Flip-Flop, Race Around
Condition, Removing Race Around Condition, Master-Slave J-K Flip-Flop, D Flip-Flop, T
Flip-Flop, Applications of Flip-Flops

UNIT 4

Introduction to Computer Organization: Introduction to Computer and CPU (Computer
Organization, Computer Design and Computer Architecture), Stored Program Concept- Von
Neumann Architecture, Harvard Architecture, RISC and CISC Architecture.


Register Transfer and Micro operations- Introduction to Registers, Instruction Format, Types
of Instructions- Memory Reference Instructions, Register Reference Instructions and InputOutput Instructions.


Common Bus System: Introduction to Common Bus System, Types of Buses (Data Bus,
Control Bus, Address Bus), 16-bit