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This section includes 24 Mcqs, each offering curated multiple-choice questions to sharpen your Vlsi knowledge and support exam preparation. Choose a topic below to get started.
1. |
If standard area is 2λ x 2λ, then the standard capacitance of a gate of length 30λ and width 6λ is? |
A. | 180oCg |
B. | 45oCg |
C. | 90oCg |
D. | 4oCg |
Answer» C. 90oCg | |
2. |
For λ based design, what is the standard unit of capacitance, (λ=5µm)? |
A. | 0.01pF |
B. | 0.0032pF |
C. | 0.0023pF |
D. | All of the mentioned |
Answer» B. 0.0032pF | |
3. |
The typical values of sheet resistance for polysilicon semiconductor is? |
A. | 15-30 Ω/square |
B. | 150-300 Ω/square |
C. | 1.5-3 KΩ/square |
D. | 0.15-0.3 Ω/square |
Answer» B. 150-300 Ω/square | |
4. |
The typical values of sheet resistance for the n-well semiconductor is ____________ |
A. | 1-5 KΩ/square |
B. | 10-50 KΩ/square |
C. | 1-5 Ω/square |
D. | 100-500 Ω/square |
Answer» B. 10-50 KΩ/square | |
5. |
The resistance of the semiconductor material is 800Ω. The sheet resistance if the dimensions of the material is 0.125µm wide and 1 mm long is? |
A. | 10 Ω/square |
B. | 0.01 Ω/square |
C. | 0.10 Ω/square |
D. | 1 Ω/square |
Answer» D. 1 Ω/square | |
6. |
Sheet resistance of semiconductor is directly measured using ___________ |
A. | Ohmmeter |
B. | Four point probe measurement |
C. | Non-contact eddy current based testing device |
D. | Any of the mentioned |
Answer» C. Non-contact eddy current based testing device | |
7. |
Sheet resistance of a semiconductor is ___________ |
A. | Inherent property of the material |
B. | Function of thickness of the material |
C. | Also called as Specific Resistance |
D. | All of the mentioned |
Answer» C. Also called as Specific Resistance | |
8. |
For semiconductors doped through diffusion or through surface peaked ion implantation we derive the sheet resistance as ___________ |
A. | Average resistivity of semiconductor/thickness |
B. | Resistivity/thickness |
C. | Conductivity/thickness |
D. | None of the mentioned |
Answer» B. Resistivity/thickness | |
9. |
Compute the sheet resistance of a 0.17 µm thick Cu wire if resistivity of Cu wire is 1.7 µΩ-cm. |
A. | 0.01 Ω/square |
B. | 0.001 Ω/square |
C. | 10.0 Ω/square |
D. | 0.10 Ω/square |
Answer» E. | |
10. |
In CMOS manufacturing process Sheet resistance is used instead of resistivity because _______________ |
A. | Resistivity is same for all doped regions |
B. | Resistivity and thickness are characteristics which cannot be controlled by the circuit designer, and it is expressed as the single sheet resistance parameter |
C. | Sheet resistance is dimensionless quantity |
D. | Sheet resistance is equal to resistivity |
Answer» C. Sheet resistance is dimensionless quantity | |
11. |
The sheet resistance of the conducting material is? |
A. | RS = resistivity/length |
B. | RS = resistivity/width |
C. | RS = resistivity/thickness |
D. | None of the mentioned |
Answer» D. None of the mentioned | |
12. |
The resistance of uniform slab of the conducting material is? |
A. | Linear(proportional) with length |
B. | Inversely proportional to thickness |
C. | Inversely proportional to width |
D. | All of the mentioned |
Answer» E. | |
13. |
THE_TYPICAL_VALUES_OF_SHEET_RESISTANCE_FOR_POLYSILICON_SEMICONDUCTOR_IS:?$ |
A. | 15-30 Ω/square |
B. | 150-300 Ω/square |
C. | 1.5-3 KΩ/square |
D. | 0.15-0.3 Ω/square |
Answer» B. 150-300 ‚âà√≠¬¨¬©/square | |
14. |
If standard area is 2λ x 2λ, then the standard capacitance of a gate of length 30λ and width 6λ is:$# |
A. | 180<sup>o</sup>Cg |
B. | 45<sup>o</sup>Cg |
C. | 90<sup>o</sup>Cg |
D. | 4<sup>o</sup>Cg |
Answer» C. 90<sup>o</sup>Cg | |
15. |
For λ based design, what is the standard unit of capacitance,(λ=5µm)?$# |
A. | 0.01pF |
B. | 0.0032pF |
C. | 0.0023pF |
D. | All of the mentioned |
Answer» B. 0.0032pF | |
16. |
The typical values of sheet resistance for the n-well semiconductor is ? |
A. | 1-5 KΩ/square |
B. | 10-50 KΩ/square |
C. | 1-5 Ω/square |
D. | 100-500 Ω/square |
Answer» B. 10-50 K‚âà√≠¬¨¬©/square | |
17. |
The resistance of the semiconductor material is 800Ω. The sheet resistance if the dimensions of the material is 0.125µm wide and 1 mm long is:$ |
A. | 10 Ω/square |
B. | 0.01 Ω/square |
C. | 0.10 Ω/square |
D. | 1 Ω/square |
Answer» D. 1 ‚âà√≠¬¨¬©/square | |
18. |
Sheet resistance of semiconductor is directly measured using: |
A. | Ohmmeter |
B. | Four point probe measurement |
C. | Non-contact eddy current based testing device |
D. | Any of the mentioned |
Answer» C. Non-contact eddy current based testing device | |
19. |
Sheet resistance of a semiconductor is: |
A. | Inherent property of the material |
B. | Function of thickness of the material |
C. | Also called as Specific Resistance |
D. | All of the mentioned |
Answer» C. Also called as Specific Resistance | |
20. |
For semiconductors doped through diffusion or through surface peaked ion implantation we derive the sheet resistance as: |
A. | Average resistivity of semiconductor/thickness |
B. | Resistivity/thickness |
C. | Conductivity/thickness |
D. | None of the mentioned |
Answer» B. Resistivity/thickness | |
21. |
Compute the sheet resistance of a 0.17 µm thick Cu wire if resistivity of Cu wire is 1.7 µΩ-cm$ |
A. | 0.01 Ω/square |
B. | 0.001 Ω/square |
C. | 10.0 Ω/square |
D. | 0.10 Ω/square |
Answer» E. | |
22. |
In CMOS manufacturing process Sheet resistance is used instead of resistivity because: |
A. | Resistivity is same for all doped regions |
B. | Resistivity and thickness are characteristics which cannot be controlled by the circuit designer, and it is expressed as the single sheet resistance parameter |
C. | Sheet resistance is dimensionless quantity |
D. | Sheet resistance is equal to resistivity |
Answer» C. Sheet resistance is dimensionless quantity | |
23. |
The sheet resistance of the conducting material is : |
A. | RS = resistivity/length |
B. | RS = resistivity/width |
C. | RS = resistivity/thickness |
D. | None of the mentioned |
Answer» D. None of the mentioned | |
24. |
The resistance of uniform slab of the conducting material is: |
A. | Linear(proportional) with length |
B. | Inversely proportional to thickness |
C. | Inversely proportional to width |
D. | All of the mentioned |
Answer» E. | |