EE60058: Opto-Electronics Based Instrumentation
EE60058 | |||||||||||||||||||||||||||||
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Course name | Opto-Electronics Based Instrumentation | ||||||||||||||||||||||||||||
Offered by | Electrical Engineering | ||||||||||||||||||||||||||||
Credits | 3 | ||||||||||||||||||||||||||||
L-T-P | 3-0-0 | ||||||||||||||||||||||||||||
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Semester | Spring |
Syllabus
Syllabus mentioned in ERP
Credits Introduction to Electromagnetic field theory, Ray and wave optics, Polarization and Isotropic and anisotropic media. Opto electronic devices: Sources-LED, Laser, Laser diode, Broadband calibration sources, DetectorsPhotodiode-P-N, P-I-N, Photo multiplier tubes and APD,Broadband thermal detector; Modulators-Intensity, Polarization, Phase, Read out schemes for modulation-Polarimeter, interferometer. Transportation media: Waveguide theorySlab wave guide, scalar wave equation. Optical fibre as cylindrical waveguide, Optical fibre Characteristics- Absorption and dispersion, fibre-optic polarizer. Optoelectronic sensors and system- Sensor as a modulator, bulk modulator, fibre-optic modulator. Sensing Principles-Electrooptic and magneto-optic (polarimetric and Interferrometric), magnetostriction based sensors, Distributed fibre-optic sensors-OTDR and OFDR principles in temperature measurement, Fibre -Optic Gyro. Holographic measurement and its biomedical applications. Optoelectronic integrated circuit and Integrated optic sensor.