Syllabus

Course Code: B-PHY-202    Course Name: Electronics

MODULE NO / UNIT COURSE SYLLABUS CONTENTS OF MODULE NOTES
1 BASIC ELECTRONICS
Ideal current source, Ideal voltage source, Current and voltage divider law, Millman’s theorem, Thevenin’s theorem, Norton’s theorem and numericals based on these theorems. Maximum power transfer theorem (with both DC and AC sources), Delta-Star theorem, Nodal Analysis, Maxwell Loop method.
2 SEMICONDUCTORS
Energybandsinsolids,Intrinsicandextrinsicsemiconductors, carriermobilityand electricalresistivityofsemiconductors, Halleffect,p-njunctiondiodeandtheir characteristics,ZenerandAvalanchebreakdown, Zenerdiode,Zenerdiodeasavoltage regulator.Lightemittingdiodes(LED), Photoconductioninsemiconductors,Photodiode, SolarCell, p-njunctionasa rectifier,halfwaveandfullwaverectifiers(with derivation),filters(seriesinductor,shuntcapacitance,L-sectionorchoke,пandR.C. filter circuits).
3 TRANSISTORS
Junction transistors,WorkingofNPNand PNP transistors, Three configurations of transistor (C-B, C-E, C-C modes),Common base, common emitter and common collector characteristics of transistor,Constants of a transistor and theirrelation, Advantages anddisadvantages of C-E configuration. D.C. load line.Transistor biasing;various methods of transistor biasing and stabilization.
4 TRANSISTOR AMPLIFIERS
Amplifiers, Classificationof amplifiers, commonbase and commonemitter amplifiers, couplingofamplifiers, various methodsof coupling, Resistance- Capacitance(RC) coupled amplifier (two stage, concept of band width, no derivation), Feedback in amplifiers, advantages ofnegative feedback, emitter follower, distortion inamplifiers.
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