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Unit IIInstruction set architecture & computer organizationLevels of programming languages, assembly language instructions, 8085 instruction set architecture, Instruction Codes, Computer Registers, Computer Instructions, Timing & Control, Instruction Cycle, Memory Reference Instructions, InputOutput and Interrupts Unit III Control Design: Instruction sequencing & interpretation, Hardwired & Micro Programmed (Control Unit), Micrprogrammed computers, Micro coded CPU: Pentium processor CPU DesignSpecifying a CPU, Design & implementation of simple CPU, General Register Organization, Stack Organization, Instruction Formats, Addressing Modes, Internal architecture of 8085 microprocessor. Unit IVMemory organizationMemory Technology, Main Memory (RAM and ROM Chips), Virtual memory, Highspeed memories Input/Output organizationAsynchronous Data Transfers, Programmed I/O, interrupts, Direct memory Access, Serial communication, UARTs, RS232C & RS422 standard Text:
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Code: IT 307 L:3 T/P:1 C: 4 PaperID: 15307 Paper : Digital Signal Processing
Unit I Signals and signal Processing: Characterization & classification of signals, typical Signal Processing operations, example of typical signals, typical Signals Processing applications. Time Domain Representation of Signals & Systems: Discrete Time Signals, Operations on Sequences, the sampling process, DiscreteTime systems, TimeDomain characterization of LTI DiscreteTime systems. Unit II TransformDomain Representation of Signals: Discrete Fourier Transform (DFT), DFT properties, computation of the DFT of real sequences, Linear Convolution using the DFT. Ztransforms, Inverse ztransform, properties of ztransform. Unit III Computation of the Discrete Fourier Transform: Computational complexity of the direct computation of the DFT, different approaches for reducing the computations, DecimationinTime FFT algorithms, Decimationinfrequency FFT algorithms. Unit IV Digital Filter Structure: Block Diagram representation, Signal Flow Graph Representation, Signal Flow Graph Representation, FIR Digital Filter Structure, IIR Filter Structures, Parallel all pass realization of IIR Filter design based on Frequency Sampling approach. Text / Reference:
Code No.: IT 309 L:3 T/P:1 C: 4 PaperID: 15309 Paper: Object Oriented Software Engineering
Unit I Introduction to Software Engineering: Software Engineering Development, Software Life Cycle Models, Standards for developing life cycle models. Object Methodology & Requirement Elicitation: Introduction to object Oriented Methodology, Overview of Requirements Elicitation, Requirements ModelAction & Use cases, Requirements Elicitation Activities, Managing Requirements Elicitation. Unit II Architecture: Model Architecture, Requirements Model, Analysis Model, Design Model, Implementation Model, Test Model Unit III Modeling with UMLZ: Basic Building Blocks of UML, A conceptual Model of UML, Basic Structural Modeling , UML Diagram System Design: Design concepts & activities, Design Models, Block design, Testing Unit IV Testing Object Oriented Systems: Introduction, Testing Activities & Techniques, The Testing Process, Managing Testing Case Studies Text Books:
Code No.: IT 313 L:3 T/P:1 C: 4 Paper ID: 15313 Paper: Communication Systems
Unit I Classification of signals & systems, Fourier Series, Fourier transforms and their applications to system analysis. Representations of random signals, Concept of Probability, Probability distribution Function, Probability density Function, Gaussian, Binomial, Raleigh and Poisson’s distribution, Random Process, Correlation Function, Power Spectral Density, Response of Linear systems to random signals. Gaussian distribution, Central Limit theorem, Ergodicity, covariance. Unit II Concepts of Modulation, Various Analog modulation and demodulation techniques (AM, FM, PM). Multiplexing, Unit III Analog to Digital Conversion, Various pulse modulation techniques (PAM, PPM, PWM & PCM). Delta Modulation. Unit IV Introduction to Information Theory & Noise: Introduction, Noise its sources, mathematical representation of noise, noise temperature, S/N ratio & Noise figure. Measure of Information, Channel Capacity, Bandwidth S/N trade off. Text:
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Code: IT 315 L:3 T/P:1 C: 4 Paper ID: 15315 Paper: Linux & Win32 Programming
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