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Showing posts with the label EC - 6th sem

RFID (EC-6005)

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Syllabus UNIT 1: Introduction: Automatic Identification Systems, a Comparison of Different ID Systems,Components of an RFID System.Differentiation Features of RFID Systems: FundamentalDifferentiation Features, Transponder Construction Formats, Frequency, Range and Coupling,Information Processing in the Transponder, Selection Criteria for RFID Systems. UNIT 2 : Fundamental Operating Principles: 1-Bit Transponder, Full and Half Duplex Procedure, Sequential Procedures.Physical Principles of RFID Systems: Magnetic Field, Electromagnetic Waves, Surface Waves. UNIT 3 : Frequency Ranges and Radio Licensing Regulations: Frequency Ranges Used, European Licensing Regulations, National Licensing Regulations in Europe, National Licensing Regulations. Standardisation: Animal Identification, Contactless Smart Cards, ISO 69873 — Data Carriers for Tools and Clamping Devices, ISO 10374 — Container Identification, VDI 4470 — Anti-theft Systems for Goods, Item Management. UNIT 4 : Cod...

Statistical signal Processing (EC-6005)

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Syllabus UNIT 1: REVIEW : IIR and FIR filters design, Filtering problems, Advanced signal processing techniques and transforms, Multirate Signal processing – Down sampling/up sampling, Introduction to discrete Hilbert transform, wavelet transform, Haar transform. State Estimation Filter- Concept of Estimation of linear and nonlinear signals, estimation Wiener Filter Non linear Estimation-Concept of sufficient statistics and statistical estimation of parameters . UNIT 2 : ADAPTIVE FILTERING : Introduction to Adaptive filtering, Types of adaptive filters, Introduction to Statistical signal Detection, Four classes of application in interference (noise, echo) cancellation, Identification, Inverse modeling, prediction. Least mean square filter (LMS), Recursive least square filter ( RLS), Simulation and design of LMS and RLS filters ,its Applications. Binary decisions with multiple observations, Vector observations, Waveform Observation, Detection of signals in additive Gaussian Nois...

Intellectual Property Rights (EC-6005)

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Objectives Acquaint the students with the basic concepts of Intellectual Property Rights; and sensitize the students with the emerging issues in IPR and the rationale for the protection of IPR. Syllabus UNIT 1: Introduction Introduction and Justifications of IPR, Nature of IP, Major forms of IP- Copyright, Patent, Trade Marks Designs, Geographic indication, layout design of Semi conductors, Plant varieties, Concept & Meaning of Intellectual Property. Major international documents relating to the protection of IP - Berne Convention, Paris Convention, TRIPS. The World Intellectual Property Organization (WIPO). UNIT 2 : Copyright Meaning and historical development of copyright , Subject matter , Ownership of copyright, Term of copyright, Rights of owner, Economic Rights, Moral Rights. Assignment and licence of rights, Infringement of copyright, Exceptions of infringement, Remedies, Civil, Criminal, Administrative, Registration Procedure. UNIT 3 : Patents Meaning and hi...

Workshop-II (EC-6006)

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Syllabus UNIT 1: Use and application of Electronic Instruments: CRO, Function generator, Conception Level Introduction: Specifying Parts, Packages and Pin Names, Libraries and Checking foot prints of the components, Partlist, Netlist, Making Netlist Files, Placing Parts, Routing Traces, Modifying Traces, Mounting Holes, Adding Text, PCB Layout, DRC, Pattern Transfer etc. UNIT 2 : PCB FABRICATION PROCESS: Etching, cleaning, drying and drilling etc. UNIT 3 : ASSEMBLING AND TESTING : Identifying the components and its location on the PCB, soldering of active and passive components, Testing the assembled circuit for correct functionality, Prototype designing etc. Chameli Devi Group Of Institutions [NOTES] Unit 1    View    Download Unit 2    View    Download Unit 3    View    Download Unit 4    View    Download Unit 5    View    Download You May Also Lik...

Antennas and wave Propagation (EC-6003)

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Syllabus UNIT 1: Radiation Potential function and the Electromagnetic field, potential functions for Sinusoidal Oscillations, retarded potential, the Alternating current element (or oscillating Electric Dipole), Power radiated by a current element, Application to short antennas, Assumed current distribution, Radiation from a Quarter wave- monopole or Half wave dipole, sine and cosine integral, Electromagnetic field close to an antenna, Solution of the potential equations, Far-field Approximation. UNIT 2 : Antenna Fundamentals Introduction, network theorems, directional properties of dipole antennas, travelling –wave antennas and effect of feed on standing-wave antennas, two –element array, horizontal patterns in broad-cast arrays, linear arrays, multiplication of patterns ,effect of earth on vertical patterns, Binomial array, antenna gain, effective area. UNIT 3 : Types of antennas Babinet’s principles and complementary antenna, horn antenna, parabolic reflector antenna,...

VLSI Circuits & Systems (EC-6004)

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Syllabus UNIT 1: Introduction Introduction to CMOS VLSI circuit, VLSI design flow, Design strategies ,Hierarachy, regularity, modularity, locality, MOS Transistor as a Switches, CMOS Logic, Combinational circuit, latches and register, Introduction of CAD Tool , Design entry, synthesis, functional simulation. UNIT 2 : Specification of sequential systems Characterizing equation & definition of synchronous sequential machines. Realization of state diagram and state table from verbal description, Mealy and Moore model machines state table and transition diagram. Minimization of the state table of completely and incompletely specified sequential machines. UNIT 3 : Asynchronous Sequential Machine Introduction to asynchronous sequential machine, Fundamental mode and Pulse mode asynchronous sequential machine, Secondary state assignments in asynchronous sequential machine, races and hazards. UNIT 4 : State Machine Algorithmic state machine and fundamental concept of...

Nano Electronics (EC-6005)

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Syllabus UNIT 1: Introduction Nanoscale technology: Consequences of the nanoscale for technology and society. Molecular building blocks for nanostructure systems, Nano-scale 1D to 3D structures, Band structure and density of states at low dimensional structure. Size dependent properties (Elelctrical, mechanical, optical, thermal etc).top down and bottom up technique, lithographic, nanolithographic and nonlithographictechniques:plused laser depositon,plasma arc discharge, e-beam sputtering, ball milling , solgel, electrodeposition, chemical vapour deposition. UNIT 2 : Characterization technique Scanning probe microscopy: (Principle, construction and working;) Scanning tunnelling microscope, Atomic force microscope, scanning electron microscope, Transmission electron microscope, Carbon materials :Allotropes of carbon, Structure of Carbon Nanotubes, types of CNTs-, Electronic properties of CNTs, Band structure of Graphene ,Band structure of SWNT from grapbene ,electron transpor...

Cellular Mobile Communication (EC-6001)

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Syllabus UNIT 1: Introduction to cellular mobile system A basic cellular system, performance criteria, uniqueness of mobile radio environment, operation of cellular systems, planning of cellular system. Elements of cellular radio system design General description of problem, concept of frequency reuse channels, co-channel interference reduction factor, desired C/I in an omni-directional antenna system, hand off mechanism, cell splitting, components of cellular systems. UNIT 2 : Cell coverage for signal and traffic General introduction, mobile point-to-point model, propagation over water or flat open area, foliage loss, propagation in near- in distance, long distance propagation, path loss from point-to-point prediction model, cell site antenna heights and signal coverage cells, mobile-to-mobile propagation. Cell site antennas and mobile antennas Equivalent circuits of antennas, gain and pattern relationship, sum and difference patterns, antennas at cell site, unique situati...

Digital signal Processing (EC-6002)

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Syllabus UNIT 1: Discrete-Time Signals and Systems Discrete-time signals, discrete-time systems, analysis of discrete-time linear time-invariant systems, discrete time systems described by difference equation, solution of difference equation, implementation of discrete-time systems, stability and causality, frequency domain representation of discrete time signals and systems. UNIT 2 : The z-Transform The direct z-transform, properties of the z-transform, rational z-transforms, inversion of the z transform, analysis of linear time-invariant systems in the z- domain, block diagrams and signal flow graph representation of digital network, matrix representation. UNIT 3 : Frequency Analysis of Discrete Time Signals Discrete fourier series (DFS), properties of the DFS, discrete Fourier transform (DFT), properties of DFT, two dimensional DFT, circular convolution. UNIT 4 : Unit - IV Efficient Computation of the DFT FFT algorithms, decimation in time algorithm, decima...