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1 SRM UNIVERSITY FACULTY OF ENGINEERING AND TECHNOLOGY SCHOOL OF ELECTRONICS AND COMMUNICATION ENGINEERING DEPARTMENT OF ECE COURSE PLAN Course Code : IT0201 Course Title : Electron Devices and Circuits Branch / Semester : B.Tech Information Technology / III Semester COURSE SCHEDULE SECTION DAY A (Room No: TP 301) B (Room No: TP 302) Hours Timings Hours Timings Day : 45 AM To 09 : 35 AM Day Day : 35AM To 12 : 15 PM 7 03 : 10 PM To 04 : 00 PM Day : 30 PM To 02 : 20 PM 5 01 : 30 PM To 02 : 20 PM Day : 45 AM To 09 : 35 AM 2 09 : 35 AM To 10 : 25 AM FACULTY DETAILS: Name of the staff Sec Office Office Hours Mail ID Mr. U. Ragavendran A Tech Park (TP 1206A) ( )PM ragavendranu@ ktr.srmuniv.ac.in New Staff No : 09 B TEXT BOOKS 1. Thomas L. Floyd, Electronic Devices, Pearson Education, 6 th Edition, () 2. Albert Malvino, David J.Bates, Electronic Principles, Tata McGraw-Hill, 7th Edition, (T2) 3. Ramakant A. Gayakwad, op-amps and Linear Integrated Circuits, Prentice Hall of India, 4 th edition.()

2 REFERENCE BOOKS 1. David A.Bell, Electronic Devices and Circuits, Prentice Hall of India, 4 th edition, (R1) 2. Robert Boylestad, Louis Nashelsky, Eelctron Devices and Circuit Theory, Pearson Education, 9 th edition, () 3. Jacob Millman, Christos C. Halkias, Electronic Devices and Circuits, Tata McGraw-Hill edition, (R3) PREREQUISITE : GE Basic Engineering II OBJECTIVES: 1. Understand the working of diodes, transistors. 2. Understand the application of different electronic devices and simple circuits. ASSESSMENT DETAILS: CYCLE TEST - I SURPRIASE TEST - I CYCLE TEST - II MODEL EXAM ATTENDANCE 10 MARKS 5 MARKS 10 MARKS 20 MARKS 5 MARKS TOTAL MARKS 50 MARKS TENTATIVE TEST DATES: S.NO DATE TEST TOPICS DURATION CYCLE TEST I UNIT I & II (First Half Only) 2 PERIODS CYCLE TEST II UNIT II (2 ND Half Only) & III 2 PERIODS MODEL EXAM FULL PORTION 3HRS OUTCOMES: Students who have successfully completed this course Course outcome Program outcome a. 1. This course gives an overview of various semiconductor devices. b. At the end of this course, the students will be able to analyze and design amplifier circuits, oscillators and filter circuits employing BJT, FET devices. a. Graduates will demonstrate knowledge of mathematics, sciences and engineering. b. Graduates will demonstrate the ability to design and conduct experiments, analyze and interpret data c. Graduates will demonstrate the ability to design a system, component or process as per needs and specifications Graduate will

3 UNIT 1 DIODES PN diode : Intrinsic and Extrinsic semiconductors formation of pn junction biasing the diode VI characteristics of diode static and dynamic resistance drift and diffusion currents transition and diffusion capacitance - diode models PSPICE diode model Diode applications : HWR FWR power supply filters and regulators diode clipping and clamping circuits. Special purpose diodes: Zener diodes zener diode applications Varactor diode LED photo diode Schottky diode PIN diode step recovery diode Tunnel diode - Laser diode (discuss only the basic characteristics of various diodes). 1 Introduction semiconductors & its types 2 Introduction & Formation of PN junction diode 3 Characteristics of diode resistance currents - capacitance 4 Diode models PSPICE diode model HWR FWR filters and regulators clipping and clamping circuits Special purpose diodes discussion about only the basic characteristics of various diodes 9 Review Class Notes Objective UNIT 2 BJTs Bipolar Junction Transistors : Physical structure basic operation the CE connection Transistor characteristics and parameters transistor as an amplifier transistor as a switch transistor biasing dc load line operating point bias stability analysis of various dc bias circuits. BJT amplifiers: Transistor modeling PSPICE BJT model small signal analysis of voltage divider biased CE, CB and CC amplifiers using h-parameter model Multistage Amplifiers frequency response of amplifiers PSPICE simulation examples. 10 Construction & operation of BJT Configuration and Application of BJT 13 dc load line curve & stability factor Transistor Modeling using h - parameter 17 PSPICE Simulation & frequency response 18 Review Class Notes Objective

4 UNIT 3 FETs Field-Effect Transistors : The JFET - basic operation JFET characteristics and parameters JFET biasing The MOSFET basic operation MOSFET characteristics and parameters MOSFET biasing MOSFET as an analog switch. FET amplifiers : JFET / Depletion MOSFET small signal model PSPICE MOSFET model small signal analysis of CS, CD and CG amplifiers Frequency response of amplifiers PSPICE simulation examples.. 19 Construction & operation of JFET Configuration and Application of JFET Construction & operation of MOSFET Configuration and Application of MOSFET 26 Small signal analysis of CS, CD and CG amplifier 27 Review Class Notes Objective UNIT 4 FEEDBACK AMPLIFIERS AND OSCILLATORS Feedback amplifiers : General feedback structure properties of negative feedback basic feedback topologies stability of feedback circuits gain and phase margins. Oscillators : Oscillator principles Hartley, Colpitts, Clapp, Phase shift, Wien bridge and Crystal oscillators their analysis and design PSPICE simulation examples 28 General feedback structure & its types Feedback topologies & its stability gain and phase margins. Principles and design for Hartley, Colpitts, Clapp, Phase shift oscillators Principles and design for Wien bridge and Crystal oscillators PSPICE simulation with examples 36 Review Class Notes Objective

5 UNIT 5 OPERATION AMPLIFIERS Introduction to op-amp : op-amp symbol, terminals, packages, specifications, block schematic op-amp parameters ideal op-amp open-loop and closed-loop response Basic op-amp circuits : Inverting & noninverting amplifier voltage follower, summing and differential amplifiers. Op-amp applications: Differentiator, integrator, precision rectifiers comparators and its applications active filters (LP & HP responses only) PSPICE simulation examples. Voltage regulators: Need for voltage regulation basic series regulator shunt regulator switching regulator IC voltage regulators. 37 Construction & operation of OP - AMP Basic op-amp circuits: Inverting & non-inverting amplifier voltage follower. Basic op-amp circuits : summing and differential amplifiers OP AMP Application: Differentiator, integrator, precision rectifiers 42 OP AMP Application: comparators filters 43 OP AMP Application: Voltage regulators & its types 44 PSPICE simulation with examples 45 Review Class Notes Objective

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