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ଜାତୀୟ ବିଜ୍ଞାନ ଶିକ୍ଷା ଏବଂ ଗବେଷଣା ପ୍ରତିଷ୍ଠାନ
राष्ट्रीय विज्ञान शिक्षा एवंअनुसंधान संस्थान
National Institute of Science Education and Research

NISER

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  2. P245 Basic Electronics Theory and Laboratory

P245 Basic Electronics Theory and Laboratory

Course Code
P245
Credit
5
Prerequisite

- None -

Total Hours
14 Lectures + 9 Practicals
Outcome of the Course
This final basic training in experimental physics equips the student with concepts and methods for doing advanced experiments in electronics.
Approval
UG-Core
Syllabus
PART I : Theory (14 Lectures)
  • Foundations, passive elements, sources – dependent sources
  • Survey of network theorems and network analysis
  • Transient response of R-L circuit, R-C circuits, sinusoidal steady state response
  • Diodes and diode circuits, power supply – rectifiers, full wave rectifier without center tapped transformer
  • Bipolar junction transistors, constant current source, constant voltage source, field effect transistors, basic differential amplifier circuit
PART II : Experiments (9 Practicals)
  • Diode characteristics (Si/Ge & Zener)
  • Half wave rectifier circuit
  • Fullwave bridge rectifier circuit
  • Zener regulated power suppl
  • Passive RC filters and phase shifting network
  • LCR series resonance circuit
  • Transistor characteristics
  • Single and two stage RC coupled amplifier
  • Characteristics of Metal-oxide semiconductor field-effect transistor (MOSFET)
Reference Books
  1. The art of electronics by Paul Horowitz and Winfield Hill, Cambridge University Press
  2. Electronics by Allan R. Hambley, Prentice Hall
  3. Electronics Fundamentals by Thomas L. Floyd, Prentice Hall
  4. Introduction to Electronics by Earl Gates, Cengage Learning
  5. Op-amps and linear integrated circuits by R.A. Gayakwad, Prentice Hall of India
  6. Microelectronics by Millman, Grabel, McGraw-Hill
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