Course |
Learning outcome (at course level) |
Learning and teaching strategies |
Assessment Strategies |
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Paper Code |
Paper Title |
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PHY 124 |
Electronics |
After completion of the course the student will be able to
CO 20: Have a understanding of the concepts of Op-amps and its applications.
CO 21: Understandworking of oscillators and Multi-vibrators and their types used in circuits.
CO 22: Understand Boolean algebra, K-mapping and analyze and design various combinational circuits like multiplexer, de-multi-plexer, encoder, decoder.
CO 23: Have knowledge ,analyze and design various Sequential circuits like flip-flops, registers, counters, and converters.
CO 24: Develop skills to build digital circuits. Have a thorough understanding of the concepts of integrated circuits, and fabrication techniques used in IC’s.
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Approach in teaching: Interactive Lectures, Discussion, problem solving in tutorials, Demonstration.
Learning activities for the students: Self learning assignments, Effective questions, Simulation, Seminar presentation, Solving numerical. Additional learning through online videos and MOOC corses |
Class test, Semester end examinations, Quiz, Solving problems, Assignments, Presentations |
Differential amplifier, CMRR, ideal operational amplifier, Block diagram of typical OP-Amplifier, Open loop configuration : inverting and non-inverting amplifiers, Op-Amp with negative feedback, Practical Op-Amp parameters : input offset voltage, input bias current , input offset current, output offset voltage, Frequency response and stability, Applications of operational amplifier: adder, subtractor, voltage follower, integrator ,differentiator.
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