Figure 5 shows a self-bias n-channel JFET amplifier construction while Table 1 listed all the parameters for the network. Assuming ID is equal to IDQ. i) Determine the value for 9m² Determine the fLG - fLc and fis for the network. ii) iii) Determine the low cutoff frequency iv) Sketch the asymptotes of the Bode plot and the low-frequency response for the amplifier using the results of part (ii).

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Rsig
ĐH
CG
Vi
RG
Figure 5
QVDD
RD
Rs
HH
Cc
HH
Cs
RL
Vo
Transcribed Image Text:+51 Rsig ĐH CG Vi RG Figure 5 QVDD RD Rs HH Cc HH Cs RL Vo
Figure 5 shows a self-bias n-channel JFET amplifier construction while Table 1 listed all the
parameters for the network. Assuming ID is equal to IDQ.
i) Determine the value for 9m²
Determine the fLG fLc and fis for the network.
ii)
iii) Determine the low cutoff frequency
iv)
Sketch the asymptotes of the Bode plot and the low-frequency response for the amplifier
using the results of part (ii).
Parameters
CG
Cc
Cs
Rsig
RG
RD
Rs
RL
V₂
ra
IDSS
IDO
Table 1
Values and Unit
0.02 μF
0.5 UF
4 μF
15 ΚΩ
1ΜΩ
3.3 ΚΩ
1kQ
2.2 ΚΩ
-8 V
00 S2
10 mA
2.6 mA
Transcribed Image Text:Figure 5 shows a self-bias n-channel JFET amplifier construction while Table 1 listed all the parameters for the network. Assuming ID is equal to IDQ. i) Determine the value for 9m² Determine the fLG fLc and fis for the network. ii) iii) Determine the low cutoff frequency iv) Sketch the asymptotes of the Bode plot and the low-frequency response for the amplifier using the results of part (ii). Parameters CG Cc Cs Rsig RG RD Rs RL V₂ ra IDSS IDO Table 1 Values and Unit 0.02 μF 0.5 UF 4 μF 15 ΚΩ 1ΜΩ 3.3 ΚΩ 1kQ 2.2 ΚΩ -8 V 00 S2 10 mA 2.6 mA
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