Showing posts with label EVENTUAL ENGINEER. Show all posts
Showing posts with label EVENTUAL ENGINEER. Show all posts
ECE
ELECTRONICS AND COMMUNICATION ENGINEERING




ALL semester Notes You can Download Here...Notes will be very simple.It Contains Important Concept , Block Diagram and Sub headings....It is very useful during exam time to study....

Semester
Syllabus
Semester – 1
HS6151 Technical English
MA6151 Mathematics
PH6151 Engineering Physics
CY6151 Engineering Chemistry
GE6151 Computer Programming
GE6152 Engineering Graphics
Semester – 2
HS6251 Technical English
MA6251 Mathematics
PH6251 Engineering Physics
CY6251 Engineering Chemistry
EC6201 Electronic Devices
EE6201 Circuit Theory
Semester – 3
MA6351 Transforms and Partial Differential Equations EE6352 Electrical Engineering and Instrumentation EC6301 Object Oriented Programming and Data Structures
EC6302 Digital Electronics
EC6304 Electronic Circuits- I
Semester – 4
MA6451 Probability and Random Processes
EC6401 Electronic Circuits II
EC6402 Communication Theory
EC6403 Electromagnetic Fields
EC6404 Linear Integrated Circuits
EC6405 Control System Engineering
Semester – 5
EC6501 Digital Communication
EC6503 Transmission Lines and Wave Guides
GE6351 Environmental Science and Engineering
EC6504 Microprocessor and Microcontroller
Semester – 6
MG6851 Principles of Management
CS6303 Computer Architecture
CS6551 Computer Networks
EC6601 VLSI Design
EC6602 Antenna and Wave propagation
Elective I
Semester – 7
EC6701 RF and Microwave Engineering
EC6702 Optical Communication and Networks
EC6703 Embedded and Real Time Systems
Elective II
Elective III
Elective IV
Semester – 8
EC6801 Wireless Communication
EC6802 Wireless Networks
Elective V
Elective VI
Elective -I
EC6001 Medical Electronics
EC6002 Advanced Digital Signal Processing
CS6401 Operating Systems
EC6003 Robotics and Automation
Elective -II
EC6004 Satellite Communication
EC6005 Electronic Testing
EC6006 Avionics
CS6012 Soft Computing
IT6005 Digital Image Processing
CS6013 Foundation Skills in Integrated Product Development
Elective -III
EC6007 Speech Processing
EC6008 Web Technology
EC6009 Advanced Computer Architecture
EC 6010 Electronics Packaging
EC6011 Electro Magnetic Interference and Compatibility
Elective -IV
EC6012 CMOS Analog IC Design
EC6013 Advanced Microprocessors and Microcontrollers
EC6014 Cognitive Radio
EC6015 Radar and Navigational Aids
EC6016 Opto Electronic Devices
Elective -V
EC6017 RF System Design
CS6003 Ad hoc and Sensors Networks
GE6082 Indian Constitution and Society
EC6018 Multimedia Compression and Communication
GE6075 Professional Ethics in Engineering
GE6083 Disaster Management
Elective -VI
EC6019 Data Converters
CS6701 Cryptography and Network Security
GE6757 Total Quality Management
MG6071 Entrepreneurship Development
MG6088 Software Project Management
GE6084 Human Rights










IMPORTANT QUESTIONS

UNIT-1       UNIT-2 

UNIT-3       UNIT-4


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EE6403                     DISCRETE TIME SYSTEMS AND SIGNAL PROCESSING            L T P C 3 0 0 3
OBJECTIVES:
· To classify signals and systems & their mathematical representation.
· To analyse the discrete time systems.
· To study various transformation techniques & their computation.
· To study about filters and their design for digital implementation.
· To study about a programmable digital signal processor & quantization effects.
UNIT I INTRODUCTION                                                                                  9
Classification of systems: Continuous, discrete, linear, causal, stable, dynamic, recursive, time variance; classification of signals: continuous and discrete, energy andpower; mathematical representation of signals; spectral density; sampling techniques, quantization, quantization error, Nyquist rate, aliasing effect.
UNIT II DISCRETE TIME SYSTEM ANALYSIS                                             9
Z-transform and its properties, inverse z-transforms; difference equation – Solution by ztransform,application to discrete systems - Stability analysis, frequency response – Convolution – Discrete TimeFourier transform , magnitude and phase representation.
UNIT III DISCRETE FOURIER TRANSFORM & COMPUTATION         9
Discrete Fourier Transform- properties, magnitude and phase representation - Computation of DFT using FFT algorithm – DIT &DIF using radix 2 FFT – Butterfly structure.
UNIT IV DESIGN OF DIGITAL FILTERS                                                       9
 FIR & IIR filter realization – Parallel & cascade forms. FIR design: Windowing Techniques – Need and choice of windows – Linear phase characteristics. Analog filter design – Butterworth and Chebyshev approximations; IIR Filters, digital design using impulse invariant and bilinear transformation - mWarping, pre warping.
UNIT V DIGITAL SIGNAL PROCESSORS                                                    9
Introduction – Architecture – Features – Addressing Formats – Functional modes - Introduction to Commercial DSProcessors.
TOTAL : 45 PERIODS 50
OUTCOMES:
·Ability to understand and apply basic science, circuit theory, Electro-magnetic field theory control theory and apply them to electrical engineering problems.
TEXT BOOKS:
1. J.G. Proakis and D.G. Manolakis, ‘Digital Signal Processing Principles, Algorithms and Applications’, Pearson Education, New Delhi, PHI. 2003.
2. S.K. Mitra, ‘Digital Signal Processing – A Computer Based Approach’, McGraw Hill Edu, 2013.
 3. Robert Schilling & Sandra L.Harris, Introduction to Digital Signal Processing using Matlab”, Cengage Learning,2014.
REFERENCES:
1. Poorna Chandra S, Sasikala. B ,Digital Signal Processing, Vijay Nicole/TMH,2013.
2. B.P.Lathi, ‘Principles of Signal Processing and Linear Systems’, Oxford University Press, 2010
3. Taan S. ElAli, ‘Discrete Systems and Digital Signal Processing with Mat Lab’, CRC Press, 2009.
4. Sen M.kuo, woonseng…s.gan, “Digital Signal Processors, Architecture, Implementations & Applications, Pearson,2013
5. Dimitris G.Manolakis, Vinay K. Ingle, applied Digital Signal Processing,Cambridge,2012

6. Lonnie C.Ludeman ,”Fundamentals of Digital Signal Processing”,Wiley,2013






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