<<<<<<< HEAD rgpv syllabus ME Grading System 1st Semester Microsoft Word - II Electronics & Instrumentation_Sy_

MTEI - 201 ELECTRONIC SYSTEM DESIGN



UNIT -I DESIGN CONCEPTS & LOGIC CIRCUITS


Digital Hardware, Design Process, Design of Digital HardwareVariables & Functions Logic gates & Networks synthesis, SOP, POS forms, Introduction to VHDL.


UNIT- II OPTIMIZED IMPLEMENTATION OF LOGIC FUNCTIONS:


Strategy for minimization, Incompletely specified functions, Multiple output circuits, Multilevel synthesis & Analysis Building Block of combinational circuits, Multiplexers Decoders, Encoders Code Converters.


UNIT- III SYNCHRONOUS SEQUENTIAL CIRCUITS


Basic Design Steps, Mealy state Model, Design of FSM,


UNIT – IV ASYNCHRONOUS SEQUENTIAL CIRCUITS


Analysis, Synthesis, State Reduction, State Assignment, Hazards.


UNIT V TESTING OF LOGIC CIRCUITS


Fault Model, Path sensitizing, Random testing, Circuits with Tree Structure.


BOOK:

  1. Introduction to Logic Design – MARCOVITZ – (Text )


    REFERENCES:

    1. Engineering Digital Design – TINDER

    2. An Engineering Approach to Digital Design – FLETCHER

    3. Logic and Computer Design Fundamentals – MANO

MTEI – 202 ADVANCE DIGITAL SIGNAL PROCESSING



UNIT -I

Review of Digital Signal Processing: Review of discrete–time sequences and systems, Linear Shift Invariant (LSI) systems. Causality and Stability Criterion, FIR & IIR representations, Z-Transform, Digital structures, Fast Fourier Transform, Discrete Fourier Transform (DFT), Fast Fourier Transform (FFT) algorithms using decimation in time and decimation in frequency techniques, Chirp Z- Transform, Hilbert Transform and applications.


UNIT -II

Digital Filter design: FIR filter design, IIR filter design from analog filters, digital filter design based on least square method.

UNIT -III

Multirate Digital Signal Processing: Decimation & Interpolation, Sampling rate conversion, Filter design and implementation for sampling rate conversion, applications of multirate signal processing


UNIT -IV

Filter Banks: QMF, M-Channel uniform and non-uniform filter banks, transmultiplexers.


UNIT -V

Wavelets: Introduction, the short-time Fourier transform, the wavelet transform, discrete- time orthonormal wavelets, continuous-time orthonormal wavelets.


References

  1. J.G.Proakis & D.G.Manolakis, “Digital Signal Processing, Principles, Algorithms and Applications”, PHI

  2. P.P.Vaidyanathan, “Multirate Systems and Filter Banks”, Pearson

  3. S.K. Mitra, “Digital Signal Processing”, TMH

    MTEI – 203 ANALOG INTEGRATED CIRCUITS


    UNIT-I

    Introduction to Analog Design, Basic MOS device physics and Models. Single stage Amplifiers: Common-Source, Common-Drain, Common-Gate, Cascode stage, Folded Cascode.


    UNIT-II

    Differential Amplifiers: Single-ended and Differential operation, common-mode response, differential pair with MOS loads, Gilbert cell, Passive and Active current mirrors, cascade current mirrors.


    UNIT-III

    Frequency response of Amplifiers, Miller effect, Poles and Zeros. Noise: Types of noise, Noise Figure, Representation of Noise in circuits, Noise bandwidth, Noise in single stage amplifiers.


    UNIT-IV

    Feed Back: Properties of feedback circuits, Feedback topologies: Voltage-Voltage, voltage- current, current-voltage, current-current feedback. Effect of loading.


    UNIT-V

    Operational Amplifiers: Performance parameters, One-stage Op-Amps., Two-Stage Op- Amps, Gain Boosting, Noise in Op-Amps, Stability and Frequency Compensation, band gap references. Introduction to switched capacitor circuits: MOS as switch, Switched-capacitor Amplifiers, Switched-Capacitor Integrator.


    References:

    1. Design of Analog CMOS Integrated Circuits - Behzad Razavi, McGraw-hill, 2001.

    2. Analog Integrated Circuit Design – David Johns, Ken Martin, John Willy and Sons, 1996.

    3. Analysis and design of Analog Integrated Circuits – Gray, Hurst, Lewis and Mayer, 4th edition, John Willy and Sons.

    4. Microelectronics Circuits – Sedra and Smith, Oxford University Press, 2005.

MTEI – 204 EMBEDDED SYSTEM


UNIT -I

8 Bit Micro controllers: Introduction to MCS-51 family, Peripheral of MCS-51 family, PIC Micro Controller –CPU architecture, registers, instruction sets addressing modes, loop timing, On chip Peripherals of PIC, Motorola MC68H11 Family Architecture Registers, Addressing modes, Interrupts- features of interrupts- Interrupt vector and Priority, timing generation and measurements, Input capture, Out capture.

UNIT -II

16 Bit Micro controller: Introduction to MCS-96 family, Peripherals of MCS-96 family, 80196-architecture, CPU operation, memory organization, I/O port, Operand addressing, instruction set, Interrupts, On chip Peripherals-PWM, Timers, HIS/HSO, Serial Port, External memory interfacing.


UNIT -III

32 bit Micro controller: Intel 80960-architecture, memory address space, Salient features of ARM processor family-ARM7 /ARM9/ ARM9E/ ARM10/ ARM11/ SecureCore /Strong ARM, XScale technology, ARM9200 Architecture,Pinouts, Peripheral Identifier, System Interrupts, External Interrupts, Product memory mapping, External memory mapping, Internal memory mapping, On chip Peripherals-Memory controllers, external Bus Interface(EBI), Advanced interrupt controller(AIC), USART, Timer counter.


UNIT -IV

Software development and tools: Embedded system evolution trends. Round- Robin, Round-robin with Interrupts, function- One- Scheduling Architecture, Algorithms. Introduction to- assembler- compiler- cross compilers and Integrated Development Environment (IDE) Object Oriented Interfacing, Recursion, Debugging strategies, Simulators.


UNIT -V

Real Time Operating Systems: Task and Task States, tasks and data, semaphores and shared Data Operating system Services- Message queues- Timer Function- Events- Memory Management, Interrupt Routines in an RTOS environment, basic design Using RTOS.


References:

MTEI – 205 INSTRUMENTATION SYSTEM DESIGN


UNIT -I

Introduction to Chemical instrumental analysis, advantages over classical methods, Classification: Spectral, electro analytical and separative methods, Laws of photometry (Beer and Lambert's law), Basic Components of analytical instruments.

Chromatography: Classification, Gas chromatography: principle, constructional details, GC detectors, Estimation of oxygen, hydrogen, methane, carbon dioxide, CO, etc. in binary or complex gas mixtures. Zirconia-probe oxygen analyser. Paramagnetic oxygen meters.


UNIT -II

Colorimeters, spectrophotometers (UV-Visible), monochromators, filters, grating, prism, dual wavelength and double monochromator systems, rapid scanning spectrophotometers, IR spectrophotometers.


UNIT -III

Flame Photometry: Principle, constructional details, flue gases, atomizer, burner, optical system, recording system. Atomic absorption spectrophotometers: Theoretical concepts, instrumentation: hollow cathode lamps, burners and flames, plasma excitation sources, optical and electronic system


UNIT -IV

Measurement of pH, Conductivity, particle counting, detection on the basis of scattering- Nephalometer, Laboratory Instruments: Centrifuge, oven, waterbath, Incubators, stirrers, Densitometer,


UNIT -V

Mass Spectrometer (MS): Principle, ionization methods, mass analyzer types - magnetic deflection type, time of flight, quadruple, double focusing, detectors for MS, applications X- ray spectrometry: Instrumentation for X-ray spectrometry, X-ray diffractometer.


Textbooks/ Reference books:


  1. Instrumental Methods of Analysis, Willard, Merritt, Dean, Settle, CBS Publishers & Distributors, New Delhi, Seventh edition.

  2. Handbook of Analytical Instruments, R. S. Khandpur, Tata McGraw–Hill Publications, 3rd edition

  3. Instrumental Methods of Chemical Analysis, Galen W. Ewing, McGraw-Hill Book Company, Fifth edition.

  4. Introduction to Instrumental Analysis, Robert D. Braun, McGraw-Hill Book Company

======= rgpv syllabus ME Grading System 1st Semester Microsoft Word - II Electronics & Instrumentation_Sy_

MTEI - 201 ELECTRONIC SYSTEM DESIGN



UNIT -I DESIGN CONCEPTS & LOGIC CIRCUITS


Digital Hardware, Design Process, Design of Digital HardwareVariables & Functions Logic gates & Networks synthesis, SOP, POS forms, Introduction to VHDL.


UNIT- II OPTIMIZED IMPLEMENTATION OF LOGIC FUNCTIONS:


Strategy for minimization, Incompletely specified functions, Multiple output circuits, Multilevel synthesis & Analysis Building Block of combinational circuits, Multiplexers Decoders, Encoders Code Converters.


UNIT- III SYNCHRONOUS SEQUENTIAL CIRCUITS


Basic Design Steps, Mealy state Model, Design of FSM,


UNIT – IV ASYNCHRONOUS SEQUENTIAL CIRCUITS


Analysis, Synthesis, State Reduction, State Assignment, Hazards.


UNIT V TESTING OF LOGIC CIRCUITS


Fault Model, Path sensitizing, Random testing, Circuits with Tree Structure.


BOOK:

  1. Introduction to Logic Design – MARCOVITZ – (Text )


    REFERENCES:

    1. Engineering Digital Design – TINDER

    2. An Engineering Approach to Digital Design – FLETCHER

    3. Logic and Computer Design Fundamentals – MANO

MTEI – 202 ADVANCE DIGITAL SIGNAL PROCESSING



UNIT -I

Review of Digital Signal Processing: Review of discrete–time sequences and systems, Linear Shift Invariant (LSI) systems. Causality and Stability Criterion, FIR & IIR representations, Z-Transform, Digital structures, Fast Fourier Transform, Discrete Fourier Transform (DFT), Fast Fourier Transform (FFT) algorithms using decimation in time and decimation in frequency techniques, Chirp Z- Transform, Hilbert Transform and applications.


UNIT -II

Digital Filter design: FIR filter design, IIR filter design from analog filters, digital filter design based on least square method.

UNIT -III

Multirate Digital Signal Processing: Decimation & Interpolation, Sampling rate conversion, Filter design and implementation for sampling rate conversion, applications of multirate signal processing


UNIT -IV

Filter Banks: QMF, M-Channel uniform and non-uniform filter banks, transmultiplexers.


UNIT -V

Wavelets: Introduction, the short-time Fourier transform, the wavelet transform, discrete- time orthonormal wavelets, continuous-time orthonormal wavelets.


References

  1. J.G.Proakis & D.G.Manolakis, “Digital Signal Processing, Principles, Algorithms and Applications”, PHI

  2. P.P.Vaidyanathan, “Multirate Systems and Filter Banks”, Pearson

  3. S.K. Mitra, “Digital Signal Processing”, TMH

    MTEI – 203 ANALOG INTEGRATED CIRCUITS


    UNIT-I

    Introduction to Analog Design, Basic MOS device physics and Models. Single stage Amplifiers: Common-Source, Common-Drain, Common-Gate, Cascode stage, Folded Cascode.


    UNIT-II

    Differential Amplifiers: Single-ended and Differential operation, common-mode response, differential pair with MOS loads, Gilbert cell, Passive and Active current mirrors, cascade current mirrors.


    UNIT-III

    Frequency response of Amplifiers, Miller effect, Poles and Zeros. Noise: Types of noise, Noise Figure, Representation of Noise in circuits, Noise bandwidth, Noise in single stage amplifiers.


    UNIT-IV

    Feed Back: Properties of feedback circuits, Feedback topologies: Voltage-Voltage, voltage- current, current-voltage, current-current feedback. Effect of loading.


    UNIT-V

    Operational Amplifiers: Performance parameters, One-stage Op-Amps., Two-Stage Op- Amps, Gain Boosting, Noise in Op-Amps, Stability and Frequency Compensation, band gap references. Introduction to switched capacitor circuits: MOS as switch, Switched-capacitor Amplifiers, Switched-Capacitor Integrator.


    References:

    1. Design of Analog CMOS Integrated Circuits - Behzad Razavi, McGraw-hill, 2001.

    2. Analog Integrated Circuit Design – David Johns, Ken Martin, John Willy and Sons, 1996.

    3. Analysis and design of Analog Integrated Circuits – Gray, Hurst, Lewis and Mayer, 4th edition, John Willy and Sons.

    4. Microelectronics Circuits – Sedra and Smith, Oxford University Press, 2005.

MTEI – 204 EMBEDDED SYSTEM


UNIT -I

8 Bit Micro controllers: Introduction to MCS-51 family, Peripheral of MCS-51 family, PIC Micro Controller –CPU architecture, registers, instruction sets addressing modes, loop timing, On chip Peripherals of PIC, Motorola MC68H11 Family Architecture Registers, Addressing modes, Interrupts- features of interrupts- Interrupt vector and Priority, timing generation and measurements, Input capture, Out capture.

UNIT -II

16 Bit Micro controller: Introduction to MCS-96 family, Peripherals of MCS-96 family, 80196-architecture, CPU operation, memory organization, I/O port, Operand addressing, instruction set, Interrupts, On chip Peripherals-PWM, Timers, HIS/HSO, Serial Port, External memory interfacing.


UNIT -III

32 bit Micro controller: Intel 80960-architecture, memory address space, Salient features of ARM processor family-ARM7 /ARM9/ ARM9E/ ARM10/ ARM11/ SecureCore /Strong ARM, XScale technology, ARM9200 Architecture,Pinouts, Peripheral Identifier, System Interrupts, External Interrupts, Product memory mapping, External memory mapping, Internal memory mapping, On chip Peripherals-Memory controllers, external Bus Interface(EBI), Advanced interrupt controller(AIC), USART, Timer counter.


UNIT -IV

Software development and tools: Embedded system evolution trends. Round- Robin, Round-robin with Interrupts, function- One- Scheduling Architecture, Algorithms. Introduction to- assembler- compiler- cross compilers and Integrated Development Environment (IDE) Object Oriented Interfacing, Recursion, Debugging strategies, Simulators.


UNIT -V

Real Time Operating Systems: Task and Task States, tasks and data, semaphores and shared Data Operating system Services- Message queues- Timer Function- Events- Memory Management, Interrupt Routines in an RTOS environment, basic design Using RTOS.


References:

MTEI – 205 INSTRUMENTATION SYSTEM DESIGN


UNIT -I

Introduction to Chemical instrumental analysis, advantages over classical methods, Classification: Spectral, electro analytical and separative methods, Laws of photometry (Beer and Lambert's law), Basic Components of analytical instruments.

Chromatography: Classification, Gas chromatography: principle, constructional details, GC detectors, Estimation of oxygen, hydrogen, methane, carbon dioxide, CO, etc. in binary or complex gas mixtures. Zirconia-probe oxygen analyser. Paramagnetic oxygen meters.


UNIT -II

Colorimeters, spectrophotometers (UV-Visible), monochromators, filters, grating, prism, dual wavelength and double monochromator systems, rapid scanning spectrophotometers, IR spectrophotometers.


UNIT -III

Flame Photometry: Principle, constructional details, flue gases, atomizer, burner, optical system, recording system. Atomic absorption spectrophotometers: Theoretical concepts, instrumentation: hollow cathode lamps, burners and flames, plasma excitation sources, optical and electronic system


UNIT -IV

Measurement of pH, Conductivity, particle counting, detection on the basis of scattering- Nephalometer, Laboratory Instruments: Centrifuge, oven, waterbath, Incubators, stirrers, Densitometer,


UNIT -V

Mass Spectrometer (MS): Principle, ionization methods, mass analyzer types - magnetic deflection type, time of flight, quadruple, double focusing, detectors for MS, applications X- ray spectrometry: Instrumentation for X-ray spectrometry, X-ray diffractometer.


Textbooks/ Reference books:


  1. Instrumental Methods of Analysis, Willard, Merritt, Dean, Settle, CBS Publishers & Distributors, New Delhi, Seventh edition.

  2. Handbook of Analytical Instruments, R. S. Khandpur, Tata McGraw–Hill Publications, 3rd edition

  3. Instrumental Methods of Chemical Analysis, Galen W. Ewing, McGraw-Hill Book Company, Fifth edition.

  4. Introduction to Instrumental Analysis, Robert D. Braun, McGraw-Hill Book Company

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