Kni = Kn2 = 4 mA/V?, VTN1 = VTN2 = 2 V, and A1 = 2 = 0. %D %3D %3D (a) Applying DC analysis, determine the Q point current and voltages: Ipa1, Ipa2, VosQ1, and VosQ2. (b) Determine the...


Kni = Kn2 = 4 mA/V?, VTN1 = VTN2 = 2 V, and A1 = 2 = 0.<br>%D<br>%3D<br>%3D<br>(a) Applying DC analysis, determine the Q point current and voltages: Ipa1, Ipa2, VosQ1, and VosQ2.<br>(b) Determine the transconductances gm1 and gm2.<br>(c) Determine the overall small-signal voltage gain A, = Vo/vi.<br>%3D<br>10 V<br>M1<br>Cc2<br>Cc3<br>RG =<br>400 k2<br>vo<br>M2<br>RS1 =<br>10 k2<br>Rs2 =<br>10 k2<br>Rp =<br>RL =<br>%3D<br>5 k2 3 2 k2<br>-10 V<br>-10 V<br>+ 10 V<br>+<br>ww<br>ww<br>

Extracted text: Kni = Kn2 = 4 mA/V?, VTN1 = VTN2 = 2 V, and A1 = 2 = 0. %D %3D %3D (a) Applying DC analysis, determine the Q point current and voltages: Ipa1, Ipa2, VosQ1, and VosQ2. (b) Determine the transconductances gm1 and gm2. (c) Determine the overall small-signal voltage gain A, = Vo/vi. %3D 10 V M1 Cc2 Cc3 RG = 400 k2 vo M2 RS1 = 10 k2 Rs2 = 10 k2 Rp = RL = %3D 5 k2 3 2 k2 -10 V -10 V + 10 V + ww ww

Jun 11, 2022
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