Lecture Plan (Monsoon) 2026–2027

Course Details

Electronics NPHC504 DC Credits:3 (L-T-P: 3-0-0)
Lecture Times:Wednesday: 03:00 pm – 03:50 pmThursday: 03:00 pm – 03:50 pmFriday: 02:00 pm – 02:50 pm
Teacher:Prof. P. M. SarunCourse Website Room: 535, Academic Complex
Course Objective
  • To introduce students to basic and advanced electronic circuits and devices
  • To teach fundamental principles of analog and digital electronics
Learning Outcomes
  • Analyze analog and digital circuits used in various devices
  • Design and explain principles of analog and digital electronics circuits

Lecture Schedule

Unit No. Topics Hours Learning Outcome
1Introduction to the subject1Familiarize with subject and evaluation
2Number systems, logic gates, Boolean algebra, K-map, arithmetic circuits4Basics of digital electronics
3Flip-Flops, Registers, Counters, A/D & D/A conversion, MUX/DEMUX9Advanced digital logic circuits
4Network theorems, diodes, BJT/JFET, transistor switch, Schottky, junctions7Semiconductor device principles
5Ideal amplifier, feedback theory, oscillators5Amplifiers and feedback
6Differential amplifier, op-amp, frequency response3Op-amp fundamentals
7Op-amp applications: adder, subtractor, filters, diff eqs5Op-amp applications
8Multivibrators, 555 timer circuits1Multivibrator circuits
9Modulation, demodulation, pulse/digital communication4Modern communication technologies
10Digital logic families, ICs, microprocessors/controllers3ICs and miniaturization

Books

Text Books Reference Books
  • Millman's Electronic Devices and Circuits – Millman (Tata McGraw Hill, 2007)
  • Digital Principles and Applications – Leach & Malvino (Tata McGraw Hill, 2006)
  • Semiconductor Devices: Physics and Technology – S.M. Sze (Wiley, 2007)
  • Electronic Devices and Circuits (SIE) – Cathey (McGraw-Hill, 2008)
  • Electronic Device and Circuit Theory – Boylestad & Nashelsky (Pearson, 2013)
  • Integrated Electronics – Millman & Halkias (Tata McGraw Hill, 2010)
  • Microelectronics – Millman & Grabel (Tata McGraw Hill, 1999)
  • Electronic Devices and Circuits – Gupta (S.K. Kataria, 2010)
  • Electronic Fundamentals and Applications – Ryder (PHI, 2009)
  • Handbook of Electronics – Gupta & Kumar (Pragati Prakashan, 2010)
  • Electronics: Fundamentals and Applications – Chattopadhyay & Rakshit (New Age, 2010)

Evaluation Plan

Evaluation Plan Quiz dates
  • Mid Semester: 30 marks [30 marks exam of 1 hours]
  • End Semester: 50 marks [50 marks exam of 2 hours]
  • Quizzes: 2 each of 10 marks
  • Total Marks: 100
  • Quiz I : 3 September 2026
  • Quiz II : 6 November 2026
  • Actual mark of Quizzes may vary.
  • No make-up exams for missed quizzes

Lectures

Sl No. Topics Date
1Introduction to the Subject.29/07/2026
2Number Systems29/07/2026
3Logic gates30/07/2026
4Boolean Algebra31/07/2026
5Boolean Theorem05/08/2026
6Karnaugh map06/08/2026
7Arithmetic Circuits - 9's, 10's, 1's and 2's complement methods07/08/2026
8Arithmetic Circuits - Adder & Subtractors 12/08/2026
9Flip-flops - RS and SR and D13/08/2026
10JK and T flipflops14/08/2026
11Counters19/08/2026
12Counters 20/08/2026
13Registers 21/08/2026
14Digital to Analog Conversion27/08/2026
15Analog to Digital Conversion28/08/2026
16Analog to Digital Conversion29/08/2026
17MUX and DE-MUX29/08/2026
18Network Theorem - Kirchoff's Law, Mesh Analysis, Nodal Analysis, Superposition Theorem, Max. Power transfer theorem02/09/2026
19Network Theorem - Thevenin and Norton Circuits03/09/2026
20Quiz-1 Answers03/09/2026
21Semiconductors04/09/2026
21Quiz-1 Marks04/09/2026
21PN Junction diodes09/09/2026