ACADEMIC PLAN FOR 5th SEM B.Tech( ECE) Class: 5th SEM B.Tech Subject code: BEC 301 Subject: Digital Systems Design and VHDL
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1 ACADEMIC PLAN FOR th SEM B.Tech( ECE) Class: th SEM B.Tech Subject code: BEC 301 Subject: Digital Systems Design and VHDL S.No Topics to be covered Total No. of 1 Introduction to VHDL, modeling concepts data types and operations, basic modeling constructs, entity, architecture, signal, variable 3 concurrent statements, sequential statements 4 Signal drivers, Resolved signals, delay mechanisms, dataflow, behavioral and structural models Subprograms, configurations, package and testbench 6 High level description of standard combinational and sequential modules 1 7 Introduction to finite state machine, pulse and fundamental mode of operation 8 realization of state table from verbal description, state diagram & Transition matrix. Total 1 L I st MID SEM EXAM 9 Mealy and Moore model machine 1 10 Reduction of flow tables of completely and incompletely specified sequential machines 11 concept of secondary state assignment 1 Realization of circuits of FSM 13 Decomposition of FSM & composite machine 14 equivalence between Mealy and Moore model machine, capabilities and limitations of FSM, 1 simplification of incompletely specified machines, analysis of asynchronous FSM, 16 Race and Hazard problems with asynchronous sequential machine nd MID SEM EXAM 17 Introduction to EDA tools, simulation, event driven simulation 18 RTL synthesis, behavioral synthesis, synthesis for FPGAs 19 Testing digital systems, Design for testability 0 Introduction to programmable logic devices: ROM, PLA, PAL, GAL based circuit. 1 FPGA, CPLD, Architecture and Programming of FPGA/CPLD and hardware implementation.
2 ACADEMIC PLAN FOR th SEM (ECE) Class : th Sem B TECH Subject Code: BEC 303 Credits : 4 Subject: Advanced Communication Systems S.No. TOPICS to be covered Total no of 1 Review of probability and Stochastic Process 1 Signal space representation, Gram-Schmitt organization, 1 3 Characterization of band limited Channels, Companding 4 Pulse code modulation, Channel noise and error probability, Quantization 1 noise and signal-to-noise ratio, robust quantization, Linear prediction, DPCM, Delta Modulation 6 Quantization error and SNR calculations, Channel Capacity theorem 7 Design of MP/ADM, ADPCM 1 8 UNIT- II 1 Binary data formats, Inter symbol interference, Nyquist criterion for distortion less baseband binary transmission, 9 Correlative coding duo binary and modified duo- binary signalling 1 and precoder 10 Eye pattern, Introduction to Equalization techniques, zero forcing, mean 1 squared error linear equalizer, 11 Decision feedback equalizer, Optimum design of transmit and receive 1 filters, 1 Conceptual Receiver Design using MF & Maximum likelihood 1 Algorithm Total 1 L I st MID SEM EXAM 13 State space/constellation Diagram based design of Coherent and non coherent 14 Digital Receivers with BPSK, DPSK, DEPSK, BFSK, QPSK, QAM, 10 MSK, GMSK transmitter and receiver implementation, Probability of error calculations, Bandwidth Efficiency 1 3 Carrier synchronization methods by calculating probability of miss-of probability of false detection nd MID SEM EXAM 4 UNIT-IV Pseudo-Noise Sequences and Spread Spectrum, Model of a Spread Spectrum Communications Systems, Direct Sequence Spread spectrum Signals, frequency hopping and time hopping spread spectrum systems Correlation functions, spreading sequences maximal-length sequences, gold codes, Walsh orthogonal codes, properties and generation of sequence like Rake Receivers. 6 Multi-user Detection, Frequency Hopped Spread Spectrum Signals 1 7 Other types of spread spectrum signals, Spread Spectrum in multipath 3 channels, Multichannel Digital Communications in AWGN 8 Multicarrier Communications, OFDM- Introduction, Transmitter and Receiver Structure, Performance Analysis Total 10 L Grand Total 40 L
3 LESSON PLAN FOR th SEM B.Tech (ECE) Class: th Sem B.Tech Subject code: BEC-30 Subject: Microprocessor & Microcontroller S.No. Topics to be covered Total No. of L 1. Introduction to microprocessors, classification. basic architecture 1 3. Applications of micrprocessor 1 4. Introduction to microcontrollers 1. classification, basic architecture of microcontrollers 1 6. Applications of microcontrollers, Difference between microprocessors and microcontrollers 7. Programming: Various programming languages to program Microprocessor and Microcontroller, High-level language, assembly language, machine language. 1 Tools: Integrated development environment for application development, 8. assemblers, compilers Introduction to 808 microprocessor: architecture pin diagram, instruction set, and classification of instruction set, instruction and data format 11. timing diagram of instructions 1. addressing modes of 808 microprocessors, architecture, BIU and EU, registers pin diagram and Instruction set of Microcontroller: 801 architecture,, pin diagram 16. instruction set and classification of instruction set, instruction and data format 17. timing diagram of instructions basic concept of programming, addressing modes, I/O Ports 19. SFRs, Timer & Counters 3 Total 1L nd MID SEM EXAM 0. UART, SPI, IC, External interrupt handling, Watch dog timer 801 Interfacing and Applications: Interfacing Keyboard and Display Devices: 1. LED, 7-segment LED display, LCD. ADC, DAC 3. DC motor, Stepper motor 1 4. Advanced Microcontrollers: Case study of AVR, ATMEGA, PIC and ARM microcontrollers. 3
4 ACADEMIC PLAN FOR V TH SEM B.Tech. (ECE) Class: th Sem B.Tech Subject code: BEC-307 Subject: Control Engineering S.No. Topics to be covered Total No. of L 1 Definitions of Control Systems, Closed Loop and Open Loop Control, Examples of 1 Control Systems, Laplace Transformation and Solution of Differential Equations, Concept of Mathematical model, Linear and Non-Linear Systems 3 Transfer Function with Simple Examples, Transfer function of physical systems 3 (Mechanical Translational Systems), Armature controlled and field controlled DC servomotors, AC servomotors and deriving their transfer functions 4 Block Diagram representation, Block Diagram Reduction Technique 3 Signal Flow graph, Mason gain formula, effect of feedback on control system 3 6 Transient and steady state response of first order system 1 7 Transient and steady state response of Second order system 8 Static error coefficients, position, velocity and acceleration error coefficients 1 9 Basic Control Actions, Proportional, integral and Derivative controllers 10 Stability of Control System, Routh s Stability criterion, relative stability analysis 3 11 Root Locus Techniques 3 1 Bode Plot, Determination of Transfer function from Bode Plot 3 13 Polar Plots, Nyquist Criterion Stability 3 ND MID SEM EXAM 14 Definitions of state, state variables, state space 1 Representation of systems, Solution of time invariant, homogeneous state equation 16 State transition matrix and its properties 17 Z transform and solution of difference equation 18 Transducers, Stepper Motor, Rotating Amplifiers and Magnetic Amplifiers.
5 ACADEMIC PLAN FOR V TH SEM B TECH(ECE) Class: th SEM B.Tech Subject Code: BEC 309 Subject: Electronic Measurement & Instrumentation S.No. TOPICS TO BE COVERED Total no of 1 Role of Measurement Systems, General Principles of Measurements, Standards of Measurement, Units and Dimensions, Errors in Measurement, Classification & its statistical Analysis Moving Coil Instruments, Moving Iron Instruments, Dynamo Meter Instruments, and Induction Instruments, Extension of Ranges, Shunts and Multipliers. 4 3 Measurement of Current, Voltage and Power, Measurement of Resistance, Wheatstone Bridge, Kelvin Double Bridge, Megger, 4 Measurement of Inductance, Maxwell s Bridge, Hay s bridge, Anderson s Bridge, Desauty s Bridge Measurement of Capacitance, Schering Bridge, Measurement of Frequency, Wien s Bridge. Ammeters, RF Ammeter, Multirange Voltmeter, Transistor Voltmeter (TVM), Differential Voltmeter, AC voltmeters using Half Wave and Full Wave Rectifiers 6 True RMS Voltmeter, Ohmmeter, Series and Shunt, LCR bridge, Q- meter. AF Sine and Square Wave Generator, Basic Wave Analyzer, Heterodyne Wave Analyzer, Harmonic Distortion Analyzer 7 Spectrum Analyzer. Digital Measurements, Digital Voltmeter, Voltage to frequency converter, nd MID SEM EXAM 8 Digital Multimeter, A/D and D/A converters, Ramp Type, Dual Slope Integration Type, Successive approximation Type 1 3 Digit. Transducers, Classification and Selection, Displacement Transducers 9 Linear Variable Differential Transformer, Photoelectric Transducers, Piezoelectric Transducers, Thermo-Electric Transducers. 4 1 L L GRAND 10 L 40 L
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