Explore topic-wise MCQs in Optical Communications.

This section includes 15 Mcqs, each offering curated multiple-choice questions to sharpen your Optical Communications knowledge and support exam preparation. Choose a topic below to get started.

1.

If a photodiode requires incident optical power of 0.70 A/W. Determine photocurrent.

A. 1.482
B. 2.457
C. 4.124
D. 3.199
Answer» C. 4.124
2.

Determine incident optical power on a photodiode if it has photocurrent of 2.1 A and responsivity of 0.55 A/W.

A. 4.15
B. 1.75
C. 3.81
D. 8.47
Answer» D. 8.47
3.

Determine Responsivity of photodiode having o/p power of 3.55 m and photo current of 2.9 m.

A. 0.451
B. 0.367
C. 0.982
D. 0.816
Answer» E.
4.

Determine the energy of photons incident on a photodiode if it operates at a wavelength of 1.36 m.

A. 1.22*10<sup>-34</sup>J
B. 1.46*10<sup>-19</sup>J
C. 6.45*10<sup>-34</sup>J
D. 3.12*10<sup>9</sup>J
Answer» C. 6.45*10<sup>-34</sup>J
5.

Determine wavelength at which photodiode is operating if energy of photons is 1.9*10-19J?

A. 2.33
B. 1.48
C. 1.04
D. 3.91
Answer» D. 3.91
6.

Determine wavelength of photodiode having quantum efficiency of 40% and Responsivity of 0.304 AW-1.

A. 0.87 m
B. 0.91 m
C. 0.88 m
D. 0.94 m
Answer» E.
7.

The Responsivity of photodiode is 0.294 AW-1at wavelength of 0.90 m. Determine quantum efficiency.

A. 0.405
B. 0.914
C. 0.654
D. 0.249
Answer» B. 0.914
8.

The quantum efficiency of photodiode is 40% with wavelength of 0.90*10-6. Determine the responsivity of photodiodes.

A. 0.20
B. 0.52
C. 0.29
D. 0.55
Answer» D. 0.55
9.

A photodiode has quantum efficiency of 45% and incident photons are 3*1011. Determine electrons collected at terminals of device.

A. 2.456*10<sup>9</sup>
B. 1.35*10<sup>11</sup>
C. 5.245*10<sup>-7</sup>
D. 4.21*10<sup>-3</sup>
Answer» C. 5.245*10<sup>-7</sup>
10.

Determine quantum efficiency if incident photons on photodiodes is 4*1011 and electrons collected at terminals is 1.5*1011?

A. 50%
B. 37.5%
C. 25%
D. 30%
Answer» C. 25%
11.

Quantum efficiency is a function of photon wavelength.

A. True
B. False
Answer» B. False
12.

The long cutoff wavelength of GaAs is 0.923 m. Determine bandgap energy.

A. 1.478*10<sup>-7</sup>
B. 4.265*10<sup>-14</sup>
C. 2.784*10<sup>-9</sup>
D. 2.152*10<sup>-19</sup>
Answer» E.
13.

GaAs has band gap energy of 1.93 eV at 300 K. Determine wavelength above which material will cease to operate.

A. 2.431*10<sup>-5</sup>
B. 6.424*10<sup>-7</sup>
C. 6.023*10<sup>3</sup>
D. 7.234*10<sup>-7</sup>
Answer» C. 6.023*10<sup>3</sup>
14.

In photo detectors, energy of incident photons must be ________________ band gap energy.

A. Lesser than
B. Greater than
C. Same as
D. Negligible
Answer» C. Same as
15.

The fraction of incident photons generated by photodiode of electrons generated collected at detector is known as ___________________

A. Quantum efficiency
B. Absorption coefficient
C. Responsivity
D. Anger recombination
Answer» B. Absorption coefficient