7.52. The circuit shown in Fig. 7.83 must pro- vide a voltage gain of 6, with Cs serv- ing as a low impedance at the frequencies of interest. Assuming a power budget of 2 mW and an input impedance of 20 k2, design the circuit such that M₁ operates 200 mV away from the triode region. Select the values of C₁ and Cs so that their impedance is negligible at 1 MHz.

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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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2. Textbook problem 7.52 (assuming a factor of 10 so the impedance of C₁ and C, can
be negligible).
Transcribed Image Text:2. Textbook problem 7.52 (assuming a factor of 10 so the impedance of C₁ and C, can be negligible).
In the following problems, unless otherwise
stated, assume nCox = 200 μA/V², ppCox
100 μA/V²,2 = 0, and VTH = 0.4 V for NMOS
devices and -0.4 V for PMOS devices.
7.52. The circuit shown in Fig. 7.83 must pro-
vide a voltage gain of 6, with Cs serv-
oling as a low impedance at the frequencies
of interest. Assuming a power budget of
2 mW and an input impedance of 20 km,
design the circuit such that M₁ operates
200 mV away from the triode region.
Select the values of C₁ and Cs so that their
impedance is negligible at 1 MHz.
Vin
C₁
HH
Figure 7.83
R₁
VDD = 1.8 V
ww
RD
Lo Vout
HM₁
Rs
Cs
Transcribed Image Text:In the following problems, unless otherwise stated, assume nCox = 200 μA/V², ppCox 100 μA/V²,2 = 0, and VTH = 0.4 V for NMOS devices and -0.4 V for PMOS devices. 7.52. The circuit shown in Fig. 7.83 must pro- vide a voltage gain of 6, with Cs serv- oling as a low impedance at the frequencies of interest. Assuming a power budget of 2 mW and an input impedance of 20 km, design the circuit such that M₁ operates 200 mV away from the triode region. Select the values of C₁ and Cs so that their impedance is negligible at 1 MHz. Vin C₁ HH Figure 7.83 R₁ VDD = 1.8 V ww RD Lo Vout HM₁ Rs Cs
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