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Microwave and Optical Communication Lab 
EEC-751 
---------------------------------------------------------------------------- 
List of Experiments: 
1. To study the relationship between the LED forward current and optical power output to 
determine the linearity of the device at 660nm and 850nm and to determine conversion 
efficiency of the two LED’s. 
2. To setting up fiber optic analog link and study the relation between the input & received 
signals and band width of the analog fiber link for 650nm and 850nm. 
3. To measure the attenuation loss, bending losses in the Optical Fiber at wave length of 
660nm& 850nm. 
4. To Study and measurement of numerical aperture of optical fiber. 
5. To study the mode characteristics of the reflex klystron tube. 
6. To study the V-I characteristics of Gunn diode. 
7. To determine the frequency and wavelength in a rectangular wave guide in TE10 Mode. 
8. To study insertion loss and attenuation measurement of attenuator. 
9. To determine the standing-wave ratio and reflection coefficient. 
10. To study of waveguide horn gain and its radiation pattern and determination of the beam 
width. 
11. To study and perform digital time division multiplexing. 
12. Study of Manchester coding and decoding.

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New microsoft word document

  • 1. ---------------------------------------------------------------------------- Microwave and Optical Communication Lab EEC-751 ---------------------------------------------------------------------------- List of Experiments: 1. To study the relationship between the LED forward current and optical power output to determine the linearity of the device at 660nm and 850nm and to determine conversion efficiency of the two LED’s. 2. To setting up fiber optic analog link and study the relation between the input & received signals and band width of the analog fiber link for 650nm and 850nm. 3. To measure the attenuation loss, bending losses in the Optical Fiber at wave length of 660nm& 850nm. 4. To Study and measurement of numerical aperture of optical fiber. 5. To study the mode characteristics of the reflex klystron tube. 6. To study the V-I characteristics of Gunn diode. 7. To determine the frequency and wavelength in a rectangular wave guide in TE10 Mode. 8. To study insertion loss and attenuation measurement of attenuator. 9. To determine the standing-wave ratio and reflection coefficient. 10. To study of waveguide horn gain and its radiation pattern and determination of the beam width. 11. To study and perform digital time division multiplexing. 12. Study of Manchester coding and decoding.