1) Consider the circuit below where the drain current through M1, M2, and M3 is designed to be 1mA. The voltage at the drain of M1, VD₁, is equal to the minimum value required to ensure Mi operates in the saturation regime. Kn' = 2mA/V² and note that the threshold voltages are shown in the circuit drawing, and that they are not all the same. Find the W/L ratios for M1 and M2 and the DC voltages at all nodes: VG1, Vs3, VD1. VDD =10V R₂ = 70kQ VG1 O- R₁ = 30k www M31 V₁ = 1V M2 V₁ = 0.5V M1 V₁ = 1V W 1 L 16 -OVS3 BIAS = 1MA VD1

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1) Consider the circuit below where the drain current through M1, M2, and M3 is
designed to be 1mA.
The voltage at the drain of M1, VD₁, is equal to the minimum value required to
ensure MI operates in the saturation regime.
Kn' = 2mA/V² and note that the threshold voltages are shown in the circuit
drawing, and that they are not all the same.
Find the W/L ratios for M1 and M2 and the DC voltages at all nodes: VG1, Vs3, VD1.
VDD =10V
R, = 70kΩ
VG1 O-
R₁ = 30k
www
M31
V₁ = 1V
M2
V₁ = 0.5V
M1
V₁ = 1V
1
16
-OVS3
W
L
BIAS = 1MA
VD1
Transcribed Image Text:1) Consider the circuit below where the drain current through M1, M2, and M3 is designed to be 1mA. The voltage at the drain of M1, VD₁, is equal to the minimum value required to ensure MI operates in the saturation regime. Kn' = 2mA/V² and note that the threshold voltages are shown in the circuit drawing, and that they are not all the same. Find the W/L ratios for M1 and M2 and the DC voltages at all nodes: VG1, Vs3, VD1. VDD =10V R, = 70kΩ VG1 O- R₁ = 30k www M31 V₁ = 1V M2 V₁ = 0.5V M1 V₁ = 1V 1 16 -OVS3 W L BIAS = 1MA VD1
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