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Showing posts with label EC 5th Semester Syllabus. Show all posts
Showing posts with label EC 5th Semester Syllabus. Show all posts
EC 5th sem syllabus RGTU/RGPV Electronics & communication  EC 5th sem syllabus

EC 5th sem syllabus RGTU/RGPV Electronics & communication EC 5th sem syllabus

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 Rajiv Gandhi Technological University, Bhopal (MP)
B.E. Electronics & communication Engineering
(EC) Syllabus
RGPV RGTU FIFTH- V SEMESTER Syllabus


RGTU/RGPV Electronics & communication Engineering EC 5th Semester Syllabus
EC 501 Voice Communication Syllabus

RGTU/RGPV Electronics & communication Engineering EC 5th Semester Syllabus
 EC 502 Electromagnetic Theory Syllabus
 

RGTU/RGPV Electronics & communication Engineering EC 5th Semester Syllabus
EC 503 Digital Communication Syllabus

RGTU/RGPV Electronics & communication Engineering EC 5th Semester Syllabus
 EC 504 Microprocessor, Microcontroller and Embedded Systems Syllabus

RGTU/RGPV Electronics & communication Engineering EC 5th Semester Syllabus
EC 505 CMOS VLSI Design Syllabus


RGTU/RGPV Electronics & communication Engineering EC 5th Semester Syllabus
EC 506 Software Lab-II ,EL VERILOG, VHDL, ECTRONIC DESIGN AUTOMATION SOFTWARE

EC 5th sem syllabus RGTU/RGPV Electronics & communication  EC 5th sem syllabus
RGPV / RGTU B.E. EC 504, 5th (V) Semester syllabus EC 504 Microprocessor, Microcontroller and Embedded Systems Revised syllabus Electronics and Commun

RGPV / RGTU B.E. EC 504, 5th (V) Semester syllabus EC 504 Microprocessor, Microcontroller and Embedded Systems Revised syllabus Electronics and Commun

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Tags: RGPV, BE, EC syllabus, Microprocessor, Microcontroller and Embedded Systems syllabus, B.E. Electronics and Communication Engineering, EC V Semester syllabus, EC 5th Semester syllabus, RGPV EC 504 syllabus

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EC) Electronics and Communication Engineering FOURTH IV SEMESTER
EC 504 Microprocessor, Microcontroller and Embedded Systems
Revised Syllabus and Scheme of Examination Effective from July 2007

Unit -I Microprocessor 8086 Architecture - BIU and EU, Registers, Pin Diagram, Memory Addressing, Clock Generator 8284, Buffers and Latches, Maximum and Minimum Modes.

Unit -II Addressing Modes, Instruction set of 8086, Assembly Language Programming, Assemblers, Procedures, Macros, Interrupts, 8086 Based Multiprocessor Systems - Coprocessors (8087 NDP), Closely and Loosely Coupled Multiprocessor Systems (8089 IOP).

Unit -III Interfacing Chips- IC 8155 (Static Ram with I/O Ports and Timer), 8755 (EPROM with I/O Ports), 8251A (USART), 8255A (Programmable Peripheral Interface), 8253/8254 (Programmable Interval Timer/Counter), 8257 (DMA Controller), 8259A (Programmable Interrupt Controller).

Unit -IV Microcontrollers - Microcontroller 8051- Architecture, Pin Diagram, I/O Ports, Internal RAM and Registers, Interrupts, Addressing Modes, Memory Organization and External Addressing, Instruction Set, Assembly Language Programming, Real Time Applications of Microcontroller- Interfacing with LCD, ADC, DAC, Stepper Motor, Key Board and Sensors.

Unit -V Embedded Systems-Introduction, Classification, Processors, Hardware Units, Software Embedded into System, Applications and Products of Embedded Systems, Structural Units in Processor, Memory Devices, I/O Devices, Buses, Interfacing of Processor Memory and I/O Devices, Case Study of an Embedded System for a Smart Card.

References:
1. B. B. Brey: The Intel Microprocessors, Architecture, Programming and Interfacing, Pearson Education.
2. Liu Gibson: Microcomputer Systems: The 8086/8088 Family- Architecture, Programming And Design , PHI
3. D. V. Hall: Microprocessors and Interfacing, TMH.
4. Mazidi and Mazidi: The 8051 Microcontroller and Embedded Systems, Pearson Education.
5. Ayala Kenneth:- The 8051 microcontroller, Third Edition, Cengage Learning
6. A. V. Deshmukh: Microcontroller (Theory and Application), TMH.
7. Raj Kamal: Embedded Systems- Architecture, Programming and Design, TMH, New Delhi.
8. V. Udayashankara and M. S. Mallikarjunaswamy: 8051 Microcontroller, TMH, New Delhi.

List of Experiments:
1. Assembly Language Programs of Microprocessor 8086,
2. Assembly Language Programs of Microcontroller 8051.
3. Assembly Language Programs for Interfacing Chips.
RGPV / RGTU B.E. EC, 5th (V) Semester syllabus EC 502 Electromagnetic Theory Revised syllabus Electronics and Communication Engineering (EC)

RGPV / RGTU B.E. EC, 5th (V) Semester syllabus EC 502 Electromagnetic Theory Revised syllabus Electronics and Communication Engineering (EC)

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Tags: RGPV, BE, EC 502 syllabus, Electromagnetic Theory syllabus, B.E. Electronics and Communication Engineering, EC V Semester syllabus, EC 5th Semester syllabus, RGPV EC 502 syllabus

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EC) Electronics and Communication Engineering
FOURTH IV SEMESTER
EC 502 Electromagnetic Theory
Revised Syllabus and Scheme of Examination Effective from July 2007

Unit I Cartesian, cylindrical and spherical co-ordinate systems, scalar and vector fields, gradient, divergence and curl of a vector field, Divergence theorem and Stokes’s theorem, concept of vectors. Electrostatic Fields – Coulomb’s law, electric field intensity due to different charge distribution viz. line charge, sheet charge, Field due to continuous volume – electric potential, properties of potential function, potential gradient equipotential surfaces, line of force, Gauss law, applications of Gauss law, Gauss law in point form method of images.

Unit II Laplace’s and Poisson’s equations, solution of Laplace’s equation. Electric dipole, dipole moment, potential and electric field intensity due to dipole. Behavior of conductors in an electric field. Conductor and insulator, electric field inside a dielectric, polarization. Boundary value conditions for electric Field. Capacitance and Capacitances of various types of capacitors. Energy stored and energy density in static electric field. Current density, conduction and convection current density, Ohms law in point form, equation of continuity.

Unit III Static Magnetic Field, Biot-Savart’s law, Magnetic Field intensity due to straight current carrying filament, circular, square and solenoidal current carrying wire. Relationship between magnetic flux, flux density and magnetic field intensity. Ampere’s circuital law and its applications, magnetic field intensity due to infinite sheet and various other configurations, Ampere’s circuital law in point form. Magnetic force, moving charge in a magnetic field, Lorentz force on straight and long current carrying conductors in magnetic field, force between two long and parallel current carrying conductors. Magnetic dipole and dipole moment, a differential current loop as dipole, torque on a current carrying loop in magnetic field, magnetic boundary conditions.

Unit IV Scalar magnetic potential and its limitations, Vector magnetic potential and its properties, vector magnetic potential due to different simple configurations; Self and Mutual inductances, determination of self and mutual inductances, self inductance of solenoid, toroid coils, mutual inductance between a straight long wire and a square loop. Energy stored in magnetic Field and energy density. Faraday’s Law, transformer and motional EMF equations. Displacement current, Maxwell’s equations as generalization of circuit equations, Maxwell’s equation in free space, Maxwell’s equation for harmonically varying field, static and steady fields. Maxwell’s equations in differential and integral form.

Unit V Electro Magnetic Waves: Uniform plane wave in time domain in free space, Sinusoidally time varying uniform plane wave in free space, Wave equation and solution for various medium, Uniform plane wave in dielectrics and conductors. Poynting Vector theorem, instantaneous, average and complex poynting vector, power loss in a plane conductor, energy storage. Polarisation of waves. Reflection by conductors and dielectric – Normal and Oblique incidence. Reflection at surface of a conducting medium, surface impedance, transmission line analogy.

References:
1. Mathew N.O Sadiku: Elements of Electromagnetic, Oxford.
2. N.N. Rao: Element of Engineering Electromagnetic, Pearson Education.
3. William H. Hayt: Engineering Electromagnetic, TMH.
4. John D. Kraus: Electromagnetics, Mc. Graw Hill.
5. Jordan Balmian: Electromagnetic wave and Radiating System, PHI.
6. David K. Cheng: Electromagnetic Fields and Wave, Addison Wesley.
7. Ramo, Whinnerry and VanDuzzer “ Fields and waves in communication electronics “, Wiley 1984
8. Harrington RF, “Electromagnetic fields” Mc Graw Hill
RGPV / RGTU B.E. EC, 5th (V) Semester syllabus EC 503 Digital Communication Revised syllabus Electronics and Communication Engineering (EC)

RGPV / RGTU B.E. EC, 5th (V) Semester syllabus EC 503 Digital Communication Revised syllabus Electronics and Communication Engineering (EC)

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Tags: RGPV, BE, EC syllabus, Digital Communication syllabus, B.E. Electronics and Communication Engineering, EC V Semester syllabus, EC 5th Semester syllabus, RGPV EC 503 syllabus

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EC) Electronics and Communication Engineering
FOURTH IV SEMESTER
EC 503 Digital Communication
Revised Syllabus and Scheme of Examination Effective from July 2007

Unit-I Random Processes
Random variables:- Cumulative distribution function, Probability density function, Mean, Variance and standard deviations of random variable, Gaussian distribution, Error function, Correlation and autocorrelation, Central-limit theorem, Error probability, Power Spectral density of digital data.

Unit-II Pulse Modulation
Analog Signals:- Sampling of Signal, Sampling Theorem for Low Pass and Band Pass Signals, Aliasing, Pulse Amplitude Modulation (PAM), Time Division Multiplexing (TDM), Channel Bandwidth for PAM-TDM Signal, Types of Sampling, Instantaneous, Natural and Flat Top (Mathematical and Spectral Analysis), Aperture Effect, Introduction to Pulse Position and Pulse Duration Modulation.

Unit-III Pulse Code Modulation
Digital Signal:- Quantization, Quantization Error, Pulse Code Modulation (PCM), Signal-to-Noise Ratio in PCM, Companding, Data Rate and Bandwidth of Multiplexed PCM Signal, Inter-symbol Interference, Differential PCM (DPCM), Delta Modulation (DM), and Adaptive Delta Modulation (ADM), Comparison of various system in terms of Bandwidth and Signal-to-Noise Ratio.

Unit-IV
Digital Modulation Techniques :- Analysis, Generation and Detection (Block Diagram), Spectrum and Bandwidth of Amplitude Shift Keying (ASK), Binary Phase Shift Keying (BPSK), Differential Phase Shift Keying (DPSK), Offset and Non-offset Quadrature Phase Shift Keying (QPSK), M-ary PSK, Binary Frequency Shift Keying (BFSK), M-ary FSK, Minimum Shift Keying, Quadrature Amplitude Modulation (QAM), Comparison of digital modulation techniques on the basis of probability of error, Matched Filter.

Unit–V Spread Spectrum Modulation
Introduction to Spread Spectrum modulation, Generation and Characteristics of p-n Sequences, Direct sequence Spread Spectrum System, Spread Spectrum with Code division Multiple Access (CDMA), Frequency Hopping Spread Spectrum.

References:
1. Taub and Schilling: Principles of Communication System, TMH
2. Simon Haykins: Communication Systems, 4th Edition, John Wiley.
3. Singh and Sapre: Communication System, TMH
4. B.P. Lathi: Modern Analog and Digital Communication System, Oxford University Press
5. Tomasi: Advanced Electronics Communication Systems, 6th Edition, PHI
6. Couch: Digital and Analog Communication, Pearson Education.
7. David Smith : Digital Transmission Systems, Springer- Macmillan India Ltd

List of Experiments:
Simulation of different modulation techniques using Scilab (Freeware-Downloadable from www.Scilab.org) /Matlab/Any Similar Software. Plotting of signal constellation diagrams and signals (modulated/ unmodulated). Calculation of Bit error rates BER and comparison of various modulation techniques.
1. Study of Sampling Process and Signal Reconstruction and Aliasing.
2. Study of PAM, PPM and PDM.
3. Study of PCM Transmitter and Receiver.
4. Time Division Multiplexing (TDM) and Demultiplexing.
5. Study of ASK, PSK and FSK Transmitter and Receiver.
RGPV / RGTU B.E. EC, 5th (V) Semester syllabus EC 501 Voice Communication Revised syllabus Electronics and Communication Engineering (EC)

RGPV / RGTU B.E. EC, 5th (V) Semester syllabus EC 501 Voice Communication Revised syllabus Electronics and Communication Engineering (EC)

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Tags: RGPV, BE, EC syllabus, Voice Communication syllabus, B.E. Electronics and Communication Engineering, EC V Semester syllabus, EC 5th Semester syllabus, RGPV EC 501 syllabus

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EC) Electronics and Communication Engineering FOURTH IV SEMESTER
EC 501 Voice Communication
Revised Syllabus and Scheme of Examination Effective from July 2007

Unit I Basic Telephony : Introduction, standard telephone set, function, local loop, block diagram, basic call procedure, call progress tones and signals, cordless telephones, caller identification, electronic telephones, telephone circuit - local subscriber loop, channel noise and units of power measurements, transmission parameters, voice frequency circuit arrangements, crosstalk.

Unit II Public telephone network: Introduction, transmission system environment, public telephone network, instruments, local loops, trunk circuits, telephone exchanges - local exchanges, automated central office switches and exchanges, telephone numbering plan, telephone services, telephone switching hierarchy, common channel signaling systemevolution of SS7, signaling points, call setup, Multiplexing of telephone channels - frequency division multiplexing, FDM hierarchy, composite base-band signals, formation of groups, super groups, master groups and radio channel, wavelength division multiplexing. Traffic analysis: traffic characterization and measurement, arrival and holding time distributions, loss systems, lost call estimation, network blocking probabilities.

Unit III Digital telephony: Introduction, advantages and disadvantages of digital voice network, voice digitization, time division multiplexing of PCM signals, digital carrier, Super-frame TDM format, Fractional T Carrier Service, Digital hierarchy, Master Group and Commercial TV, Picture Phone Terminal, Data Terminal, Digital Carrier Line Encoding, Duty Cycle, Bandwidth Requirement, Clock and Framing Bit Recovery, Error Detection, T Carrier System, T-1 Carrier System, , Statistical TDM, Codec and Combo Chips.

Unit IV Digital transmission: Introduction, digital data and digital signal, pulse transmission, inter-symbol, interference, synchronous and asynchronous transmission, line coding – level encoding, bipolar coding, Code Space redundancy, N zero substitution, Pair Selected ternary, Ternary coding, digital bi-phase, differential encoding, coded mark inversion, multilevel signaling, partial response signaling, error performance, performance monitoring, time division multiplexing - Bit vs Word Interleaving, framing, TDM loops and rings.

Unit V Digital switching: Switching function, space division switching, multistage switching, non-blocking switches, blocking probabilities, four wire switches, switch matrix control, time division switching – analog and digital, two dimensional switching, multi stage time and space switching, STS and TST switching, digital cross connect systems, digital switching in analog environment.

References:
1. W. Tomasi: Advanced Electronic Communication Systems, 6th Edition, PHI
2. W. Tomasi: Electronic Communication Systems, Pearson Education
3. John C.Bellamy: Digital Telephony, 3rd Edition, Willey India Pvt. Limited
4. T. Vishwanathan: Telecommunication Switching Systems and Networks, PHI.
5. James Martin: Telecommunication and Computers, PHI
6. G. F. Snyder: Introduction to Telecommunication Networks, Vikas Publishing House.
7. Cole Marion: Introduction to Telecommunication, Pearson Education.