Consider the circuit below where the drain current through M1, M2, and M3 is designed to be 1mA. Assume VT= 1V and Kn' = 2mA/V². a) Find the W/L ratio for M2 and the DC voltages at all nodes. R2 = 72.5kΩ V₁O R = 27.5kΩ VDD =10V M3 M2 1 16 BIAS = 1MA 4 M1 1 b) Draw the small-signal model for the circuit at the operating point you found in part a. Derive an expression for the small-signal gain (A= vo/vi) and evaluate it numerically.

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6. Consider the circuit below where the drain current through M1, M2, and M3 is designed
to be 1mA. Assume VT= 1V and Kn' = 2mA/V².
a) Find the W/L ratio for M2 and the DC voltages at all nodes.
R₂ = = 72.5kΩ
V₁ O-
R = 27.5kΩ
ww
VDD =10V
M3
M2
M1
16
IBIAS = 1MA
4
1
b) Draw the small-signal model for the circuit at the operating point you found in part a.
Derive an expression for the small-signal gain (4= vo/vi) and evaluate it numerically.
Transcribed Image Text:6. Consider the circuit below where the drain current through M1, M2, and M3 is designed to be 1mA. Assume VT= 1V and Kn' = 2mA/V². a) Find the W/L ratio for M2 and the DC voltages at all nodes. R₂ = = 72.5kΩ V₁ O- R = 27.5kΩ ww VDD =10V M3 M2 M1 16 IBIAS = 1MA 4 1 b) Draw the small-signal model for the circuit at the operating point you found in part a. Derive an expression for the small-signal gain (4= vo/vi) and evaluate it numerically.
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