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    1 Introduction about subject A

    2 Kirchoffs current law A,B

    3 Kirchoffs voltage law A,B

    4

    series and parallel connection

    of independent sources of R

    and L

    A,B

    5series and parallel connection

    of independent sources CA

    6Network Theorems of

    TheveninA,C

    7 Superposition Theorem

    8 Norton Theorem

    9 Maximum power transfer theorem

    10 duality

    11 Star-delta conversion.

    12 Tutorials A

    13 Tutorials

    14 Tutorials

    15 Basic RL circuits and theirresponses to pulse inputs

    A

    16Basic RL circuits and their

    responses to sinusoidal inputsA

    17Basic RLC circuits and their

    responses to pulse inputsA,B

    18Basic RLC circuits and their

    responses to sinusoidal inputsA,B

    19frequency response - Parallel

    resonance Q factorA,B

    20frequency response - series

    resonance Q factorA

    21 single tuned circuits. A

    22 Double tuned circuits A

    23 Tutorials A

    24 Tutorials A,B

    25 Tutorials A,B

    Ref2

    KPR INSTITUTE OF ENGG & TECHNOLOGY, COIMBATORE.

    DEPARTMENT OF ECE

    Lesson Plan for Even semester 2012

    Code & Subject : EC2151 & Electric circuits and Electron devices Staff Name:Ms.R.PADMAVATHY

    Class:I ECE-A Semester : II

    UNIT I -CIRCUIT ANALYSIS TECHNIQUES

    Ref

    1,2

    UNIT-II-TRANSIENT RESONANCE IN RLC CIRCUITS

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    26Review of intrinsic &

    extrinsicA,B

    27 Theory of PN junction diode A,B

    28 Energy band structure A

    29 current equation A

    30Effect of temperature and

    breakdown mechanismA

    31Zener diode and its

    characteristics.A,B

    32 Tutorials A

    33 Tutorials A,B

    34 Tutorials

    35

    Principle of operation of PNP

    transistors A,B

    36Principle of operation of NPN

    transistorsA,B

    37study of CE and their

    characteristicsA,B

    38study of CB and their

    characteristicsA,B

    39study of CC and their

    characteristicsA,C

    40comparison of their

    characteristicsA,C

    41 Breakdown in transistors A42 Operation of N-Channel JFET A,B

    43Operation of P-Channel JFET

    and ComparisonA

    44 Drain current equation A

    45

    MOSFET-Enhancement and

    depletion types-structure and

    operation

    A

    46

    Comparison of BJT with

    MOSFET-thermal effect on

    MOSFET

    47 Tutorials

    48 Tutorials

    49 Tutorials

    50 Tunnel diodes A,B

    51 PIN diode and varactor diode A,B

    52SCR characteristics and two

    transistor equivalent modelA

    53 UJT A,B

    54 Diac and Triac A

    55 Laser, CCD A,B

    56 Photodiode ,Phototransistor A,B

    UNIT-V-SPECIAL SEMICONDUCTOR DEVICES

    UNIT-III SEMICONDUCTOR DIODES

    UNIT-IV-TRANSISTORS

    Ref2

    Ref2

    Ref2

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    57Photoconductive and

    Photovoltaic cellsA

    58 LED, LCD A,B

    59 Tutorials A,B

    60 Tutorials A,B

    FACULTY I/C HOD

    B. Over Head Projector

    C. LCD Projector

    D. Others ( Field visit, Charts, Cutset Models )

    1. Robert T. Paynter, Introducing Electronics Devices and Circuits, Pearson Education, 7th Education, (2006).

    2. William H. Hayt, J.V. Jack, E. Kemmebly and steven M. Durbin,Engineering Circuit Analysis,Tata McGraw Hill

    2002.

    3. J. Millman &

    Teaching Aids ( TA ):

    A. Black Board with Chalk

    Reference:

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    , 6th Edition,

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    1Introduction to Communication

    Systems and Need for ModulationA

    2

    Principles of Amplitude Modulation

    AM envelope, Frequency Spectrum

    and Bandwidth

    A

    3Modulation index and Percent

    ModulationA

    4 AM voltage distribution A5 AM power distribution A

    6 Tutorial A

    7Angle Modulation FM and PM

    waveforms, Phase DeviationA

    8 Modulation index + Tutorial A

    9Frequency Deviation, Percent

    modulationA

    10Frequency analysis of angle

    modulated wavesA

    11Bandwidth requirements for Angle

    modulated wavesA

    12 Tutorial A

    13

    Introduction, Shannon limit for

    information capacity, Digital

    amplitude modulation

    A

    14Frequency shift keying, FSK bit rate

    and baudA

    15 FSK transmitter A

    16 BW consideration of FSK A

    17 FSK receiver, Tutorial A

    18 Phase shift keying binary phaseshift keying

    A

    19Quadrature Phase Shift Keying

    (QPSK)A

    20 Quadrature Amplitude modulation A

    21Bandwidth efficiency, Carrier

    recovery squaring loopA

    22 Carrier recovery Costas loop A

    23Differential Phase Shift Keying (

    DPSK)A

    UNIT-II-DIGITAL COMMUNICATION

    KPR INSTITUTE OF ENGG & TECHNOLOGY, COIMBATORE.

    DEPARTMENT OF ECE

    Lesson Plan for Odd Semester 2012-2013

    Code & Subject : Analog and Digital Communications Staff Name:Ms.Padmavathy.R

    Ref1

    Class:II CSE Semester : III

    UNIT I -FUNDAMENTALS OF ANALOG COMMUNICATION

    Ref1

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    24Comparison of digital modulation

    techniques

    25 Tutorial A

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    26 Introduction, Pulse modulation A

    27PCM- PCM Sampling, Sampling

    Rate

    A

    28Signal to Quantization noise rate,

    CompandingA

    29 Analog Companding A

    30Digital companding , Percentage

    errorA

    31 Tutorial A

    32Delta modulation - transmitter &

    receiver,A

    33 Adaptive Delta modulation A

    34Differential Pulse Code Modulation -

    transmitter & receiver

    A

    35Pulse transmission InterSymbol

    InterferenceA

    36 Eye pattern A

    37 Tutorial A

    38

    Data Communication history,

    Standards,Data Communication

    Circuits

    A

    39 Data Communication Codes A

    40 Error control - Error detection A

    41 Error control- correction A42 Tutorial A

    43 Data communication Hardware A

    44 Serial interfaces A

    45 Parallel interfaces A

    46Data modems, Asynchronous modem

    A

    47

    Synchronous modem, low-speed

    modem, medium and high speed

    modem

    A

    48 modem control A

    49 Tutorial A

    50 Introduction, Pseudo noise sequence A

    51 Pseudo noise sequences - tutorial A

    52DS Spread Spectrum with coherent

    Binary PSKA

    53 Processing gain A

    54

    Frequency Hopping Spread

    Spectrum Slow Frequency Hopping

    and Fast frequency

    A

    55 Hopping A

    Ref1

    UNIT-V SPREAD SPECTRUM AND MULTIPLE ACCESS TECHNIQUES

    UNIT-III DIGITAL TRANSMISSION

    UNIT-IV-DATA COMMUNICATIONS

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    tion, 2001.