2. This is a small signal problem. Suppose the MOSFETS drawn have lp = 1 mA when VGs = 2.5 V, and Vth = 0.5 V. Suppose the BJTs drawn have lc = 1 mA when VBE = 0.7 V. VDD Av A R₁ VDD = 5V Re = 1 kn Vin RB2 = 10 kn Ra1 = 10 kn VDD w w/1 Rp = 1 kn Vout (a) Derive voltage gain Ay and input impedance Zin assuming R₁ → 0, (b) Plot Ay as a function of R, assuming R₁, is attached between Vout and ground. (c) Rederive Ay and Zin assuming R, co and after swapping the BJT and MOSFET. R₂

Introductory Circuit Analysis (13th Edition)
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2. This is a small signal problem. Suppose the MOSFETS drawn have lp = 1 mA when VGS = 2.5 V, and
Vth = 0.5 V. Suppose the BJTs drawn have Ic = 1 mA when VBE = 0.7 V.
Av
VDD = 5V VDD VDD
T
T
Rc = 1 kn
Vin
RB2 = 10 kn
RB1 = 10 kn
w/li
w
Rp = 1 kn
R₁
Vout
(a) Derive voltage gain Ay and input impedance Zin assuming R₁ ➡8.
(b) Plot Ay as a function of R, assuming R, is attached between Vout and ground.
(c) Rederive Ay and Zin assuming Roo and after swapping the BJT and MOSFET.
RL
Transcribed Image Text:2. This is a small signal problem. Suppose the MOSFETS drawn have lp = 1 mA when VGS = 2.5 V, and Vth = 0.5 V. Suppose the BJTs drawn have Ic = 1 mA when VBE = 0.7 V. Av VDD = 5V VDD VDD T T Rc = 1 kn Vin RB2 = 10 kn RB1 = 10 kn w/li w Rp = 1 kn R₁ Vout (a) Derive voltage gain Ay and input impedance Zin assuming R₁ ➡8. (b) Plot Ay as a function of R, assuming R, is attached between Vout and ground. (c) Rederive Ay and Zin assuming Roo and after swapping the BJT and MOSFET. RL
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