EC3311 - Electronic Devices and Circuits Laboratory Syllabus Regulation 2021 Anna University

The article contains the subject code EC3311, which deals with the Anna University B.E Electrical and Electronics Engineering Semester – III Electron Devices and Circuits Laboratory Syllabus. Unit wise detailed syllabus of this subject EC3311 is included in this article. You can get assistance for note preparation or can understand the chapters contain topics in one place.

Effective results need effective preparation and having the required knowledge of the topics included in the subject. If you want to perform well in academics proper guidance and the subject syllabus in mind are necessary, this article EC3311 – Electronic Devices and Circuits Laboratory Syllabus will fulfill the details regarding your preparation.

If you want to know more about the syllabus of B.E Electrical and Electronics Engineering connected to an affiliated institution’s four-year undergraduate degree program. We provide you with a detailed Year-wise, semester-wise, and Subject-wise syllabus in the following link B.E Electrical and Electronics Engineering Syllabus Anna University, Regulation 2021.

Aim Of Objectives:

  • To enable the students to understand the behavior of semiconductor devices based on experimentation.
  • Be exposed to active and passive circuit elements.
  • Familiarize the operation and characteristics of transistors like BJT and FET.
  • Explore the characteristics of amplifier gain and frequency response.
  • Learn the required functionality of positive and negative feedback systems.

EC3311 – Electronic Devices and Circuits Laboratory Syllabus

List Of Experiments:

  1. Characteristics of Semiconductor diode, Zener diode, photodiode, and photo transistor.
  2. Characteristics of NPN Transistor under common emitter, common collector, and common base configurations.
  3. Characteristics of JFET and draw the equivalent circuit.
  4. Characteristics of UJT and generation of sawtooth waveforms.
  5. Design and frequency response characteristics of a Common Emitter amplifier.
  6. Characteristics of light-activated relay circuit.
  7. Design and testing of RC phase shift and LC oscillators.
  8. Characteristics of Single Phase half-wave and full wave rectifiers with inductive and capacitive filters.
  9. Design of Differential amplifiers using FET.
  10. Measurement of frequency and phase angle using CRO.
  11. Realization of passive filters.

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