VDD = 5 V, and Rin = 500 k2. The transistor parameters are given as VTN1 = 0.7 V, VTP2 = -0.7 V, Kni = 0.4 mA/V?, Kp2 = 2 mA/V?, and A1 =12 = 0. (a) Design the circuit such that the current and...


VDD = 5 V, and Rin = 500 k2.<br>The transistor parameters are given as<br>VTN1 = 0.7 V, VTP2 = -0.7 V, Kni = 0.4 mA/V?, Kp2 = 2 mA/V?, and A1 =12 = 0.<br>(a) Design the circuit such that the current and voltage values at Q point are: Ipq1 = 0.3 mA, IDQ2 = 0.8 mA,<br>VosQ1 = 3 V, and VpsQ2 = 4 V. The voltage across Rs1 is to be 0.5 V.<br>(b) Draw the small-signal equivalent circuit of the amplifier.<br>(c) Determine the small-signal voltage gain A, = Vo/Vi.<br>%3D<br>VDD<br>Rs2<br>RD1<br>R1<br>Rin<br>=Cs2<br>M1<br>M2<br>oVo<br>Cc<br>R2<br>Rs1<br>Cs1<br>Rp2<br>Vi<br>(+<br>

Extracted text: VDD = 5 V, and Rin = 500 k2. The transistor parameters are given as VTN1 = 0.7 V, VTP2 = -0.7 V, Kni = 0.4 mA/V?, Kp2 = 2 mA/V?, and A1 =12 = 0. (a) Design the circuit such that the current and voltage values at Q point are: Ipq1 = 0.3 mA, IDQ2 = 0.8 mA, VosQ1 = 3 V, and VpsQ2 = 4 V. The voltage across Rs1 is to be 0.5 V. (b) Draw the small-signal equivalent circuit of the amplifier. (c) Determine the small-signal voltage gain A, = Vo/Vi. %3D VDD Rs2 RD1 R1 Rin =Cs2 M1 M2 oVo Cc R2 Rs1 Cs1 Rp2 Vi (+

Jun 11, 2022
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