14. If a 1500 load is ac coupled to the output in Figure 9-60, what is the resulting output voltage (rms) when a 50 mV rms input is applied? gm 5000 µS. %3D

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#14.

FET AMPLIFIERS AND SWITCHING CIRCUITS
%3D
(rms) when a 50 mV rms input is applied? gm = 5000 µS.
VDD
FIGURE 9-60
+12 V
T Spice
Multisim and LT Spice file circuits
are identified with a logo and are in
dy
1.5 kN
the Problems folder on the website.
V.
Filenames correspond to figure num-
bers (e.g., FGM09-60 or FGS09–60).
un
0.1 µF
UYOI
RG
10 MQ
1.0 k2
1
µF
15. Determine the voltage gain of each common-source amplifier in Figure 9-61.
VDD
VDD
1.
A6+
1070
RD
2.2 kN
Rp
Spice
1.2 k
V.
1 µF
0.1 µF
8m=3.8 mS
22 k2
%3D
8m = 5.5 mS
0.1 µF
0.1 µF
RG
4.7 MQ
UYOI
RG
10 MQ
0.1 µF
(a)
(b)
16. Draw the de and ac equivalent circuits for the amplifier in Figure 9-62.
VDD
Transcribed Image Text:FET AMPLIFIERS AND SWITCHING CIRCUITS %3D (rms) when a 50 mV rms input is applied? gm = 5000 µS. VDD FIGURE 9-60 +12 V T Spice Multisim and LT Spice file circuits are identified with a logo and are in dy 1.5 kN the Problems folder on the website. V. Filenames correspond to figure num- bers (e.g., FGM09-60 or FGS09–60). un 0.1 µF UYOI RG 10 MQ 1.0 k2 1 µF 15. Determine the voltage gain of each common-source amplifier in Figure 9-61. VDD VDD 1. A6+ 1070 RD 2.2 kN Rp Spice 1.2 k V. 1 µF 0.1 µF 8m=3.8 mS 22 k2 %3D 8m = 5.5 mS 0.1 µF 0.1 µF RG 4.7 MQ UYOI RG 10 MQ 0.1 µF (a) (b) 16. Draw the de and ac equivalent circuits for the amplifier in Figure 9-62. VDD
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