The NMOS in the circuit below has k = 1.2 mA/V² and VTH = 2.4 V. Vi = 5 V. V₁ ww 1 ΚΩ IDS 12 V 2.2 ΚΩ Vo 1.2 ΚΩ A. Assuming that the FET is in saturation, write an expression that solves for the drain current los. The equation SHOULD have 0 as the equivalent. Meaning the expression should be 0 = expression Use variable I as the drain current. After getting the expression, solve the drain current. B. Find the circuit's -Gate to source voltage VGS -Drain to source voltage Vos -V₂ -The NMOS' region of operation (saturation, cutoff, linear)

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The NMOS in the circuit below has k = 1.2 mA/V² and VTH = 2.4 V. Vi = 5 V.
V₁
ww
1 ΚΩ
IDS
12 V
2.2 ΚΩ
Vo
1.2 ΚΩ
A. Assuming that the FET is in saturation, write an
expression that solves for the drain current los.
The equation SHOULD have 0 as the
equivalent. Meaning the expression should be
0 = expression
Use variable I as the drain current. After
getting the expression, solve the drain current.
B. Find the circuit's
-Gate to source voltage VGS
-Drain to source voltage Vos
-V₂
-The NMOS' region of operation (saturation,
cutoff, linear)
Transcribed Image Text:The NMOS in the circuit below has k = 1.2 mA/V² and VTH = 2.4 V. Vi = 5 V. V₁ ww 1 ΚΩ IDS 12 V 2.2 ΚΩ Vo 1.2 ΚΩ A. Assuming that the FET is in saturation, write an expression that solves for the drain current los. The equation SHOULD have 0 as the equivalent. Meaning the expression should be 0 = expression Use variable I as the drain current. After getting the expression, solve the drain current. B. Find the circuit's -Gate to source voltage VGS -Drain to source voltage Vos -V₂ -The NMOS' region of operation (saturation, cutoff, linear)
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