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 9m 11) Determine the fLG fic and fts for the network. Determine the low cutoff frequency Sketch the asymptotes of the Bode plot and the low-frequency response for the amplifier using the results of part (u). IV)

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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 gm
11) Determine the fLG fic and fis for the network.
11) 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 (u).
Rug
Parameters
CG
Cc
Cs
Rsig
RG
RD
Rs
RL
TA
Ipss
IDO
HF
CG
Table 1
+₁
RG
Figure 5
Values and Unit
0.02 uF
0.5 µF
4 uF
15 km2
ΙΜΩ
3.3 kn
1 kn
2.2 kn
-8 V
052
10 mA
2.6 mA
RD
am
HE
Cc
HE
+1.
[CO3, PO3, C4]
Cs
i
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 gm 11) Determine the fLG fic and fis for the network. 11) 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 (u). Rug Parameters CG Cc Cs Rsig RG RD Rs RL TA Ipss IDO HF CG Table 1 +₁ RG Figure 5 Values and Unit 0.02 uF 0.5 µF 4 uF 15 km2 ΙΜΩ 3.3 kn 1 kn 2.2 kn -8 V 052 10 mA 2.6 mA RD am HE Cc HE +1. [CO3, PO3, C4] Cs i
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