Optical Instrumentation detailed syllabus for Instrumentation Engineering (Instrumentation) for 2015 revision curriculum has been taken from the SITTTRs official website and presented for the Instrumentation students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.
For Instrumentation Engineering 5th Sem scheme and its subjects, do visit Instrumentation 5th Sem 2015 revision scheme. The detailed syllabus of optical instrumentation is as follows.
Course Outcomes:
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SPECIFIC OUTCOME
MODULE I LIGHT AND ITS PROPERTIES
- To understand the phenomena of Reflection, Refraction, and Dispersion.
- To explain the phenomenon and laws of reflection
- To describe the phenomenon and laws of Refraction.
- To explain the phenomenon of Dispersion.
- To Understand the phenomena of Interference and Diffraction
- To explain the phenomenon of interference.
- To describe the concept of Phase difference and path difference.
- To explain the condition for bright and dark fringes in interference.
- To explain the distribution of intensity in interference pattern.
- To describe the formation of Newton’s Rings.
- To explain the use of Newton’s ring to measure the radius of curvature of the lens.
- To describe the phenomenon of Diffraction.
- To explain the difference between Interference and Diffraction.
- To Understand the phenomena of Polarization To define the phenomenon of Polarization To explain the laws of Polarization.
- To explain the application of Polarization in Analytical Instrumentation.
MODULE II FIBER OPTIC INSTRUMENTATION
- To Understand Fibre Optic Communication.
- To describe the advantages of fibre optic communication.
- To Explain the Principle of Optical Fibres.
- To describe optical fibre construction.
- To explain acceptance angle and Numerical aperture.
- To describe the modes of operation of optical fibres.
- To describe Single mode step index fibre, multi mode step index fibre and multimode graded index fibre and their comparison.
- To explain with a block diagram, Fibre optic Communication System.
- To understand fibre optic Sensors.
- To describe the working of fibre optic displacement sensor.
- To explain the working of fibre optic Pressure sensor.
- To describe the working of fibre optic Temperature sensor.
- To explain the working of fibre optic Force sensor.
- To describe the working of fibre optic Torque sensor.
- To explain the working of fibre optic Strain sensor.
- To describe the working of fibre optic Viscosity sensor.
- To explain the working of fibre optic Fluid Level sensor.
- To describe the working of fibre optic Fluid Flow sensor.
- To understand optoelectronic components.
- To describe the working of photo diode.
- To describe the working of Photo Transistor.
- To explain the construction and operation of PiN Diode.
- To explain the construction and operation of Avalanche Photo Diode.
- To describe the principle of operation of LED.
- To describe the working of LED drive circuit.
MODULE III LASER FUNDAMENTALS
- To Understand Lasers To describe the characteristics of LASER beam.
- To describe absorption, spontaneous emission and stimulated emission.
- To describe the population Inversion.
- To explain the basic requirements of producing LASER.
- To describe the classification of LASER.
- Construction and Working of Different types of lasers
- To describe the construction and operation of Ruby Laser.
- To explain the construction and operation of Nd-YAG Laser.
- To describe the construction and operation of He-Ne Laser.
- To explain the construction and operation of Co2 Laser.
- To describe the construction and operation of Argon Laser.
- To explain the construction and operation of Liquid Dye Laser.
- To describe the construction and operation of Semiconductor Laser.
MODULE IV LASER APPLICATIONS
- To Understand Important Laser Applications.
- To describe the Industrial Applications of Laser.
- To explain the Medical Applications of Laser.
- To describe the Scientific applications of Laser
- To explain the Military applications.
- To illustrate the Miscellaneous Applications
- To understand Laser application in Instrumentation.
- To explain laser based displacement measuring.
- To explain laser Doppler velocity meter.
MODULE I
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MODULE II
Advantages of fibre optic communication- Principle of Optical Fibres- optical fibre constructionacceptance angle and Numerical aperture- modes of operation of optical fibres- Single mode step index fibre, multi mode step index fibre and multimode graded index fibre and – comparison- block diagramFibre optic Communication System – passive and active optical fibre sensors-displacement sensorPressure sensor- Temperature sensor- Force sensor- Torque sensor- Strain sensor- Viscosity sensorLevel sensor- Flow sensor. Construction and working of photo diode- PiN diode- Avalanche photo diodephoto transistor- LED principle of operation, LED drive circuits.
MODULE III
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MODULE IV
Industrial Applications -laser welding- cutting and laser drilling- Medical applications of laser- Scientific applications of laser- Military applications of laser- Miscellaneous applications of laser- (laser printer-optical disc recording and reading- holography – construction of hologram and reconstruction of image)-Laser application in Instrumentation-displacement measurement – Laser Doppler velocity meter
Reference Books:
For the complete syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
For detailed syllabus of all other subjects of Instrumentation Engineering, 2015 revision curriculum do visit Instrumentation 5th Sem subject syllabuses for 2015 revision.
To see the syllabus of all other branches of diploma 2015 revision curriculum do visit all branches of SITTTR diploma 2015 revision.