The parameters of the circuit in Figure P4.36 are Rs = 4 k2, R1 = 850 k2, R2 = 350 k2, and RL = 4 k2. The transistor parameters are VT p = -1.2 V, k', = 40 µA/V², W/L = 80, and A = 0.05 V-1. (a) Determine IDo and VSDQ. (b) Find the small-signal voltage gain A, = vo/vj. (c) Determine the small-signal circuit transconductance gain Ag = io/Vj. (d) Find the small- signal output resistance R,. %3D %3D %3D %3D VDp = 10 V Rs R1 Cc2 RL R2

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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4.36
The parameters of the circuit in Figure P4.36 are Rs = 4 k2, R¡ = 850 k2,
R2 = 350 k2, and RL = 4 k2. The transistor parameters are VTP = -1.2 V,
k, = 40 µA/V2, w/L = 80, and A = 0.05 V-1. (a) Determine IDo and
VSDQ. (b) Find the small-signal voltage gain A, = vo/Vj. (c) Determine the
small-signal circuit transconductance gain Ag = io/V¡. (d) Find the small-
signal output resistance R,.
%3D
Vpp = 10 V
Rs
R.
R1
Cc2
HH
RL
R2
Transcribed Image Text:4.36 The parameters of the circuit in Figure P4.36 are Rs = 4 k2, R¡ = 850 k2, R2 = 350 k2, and RL = 4 k2. The transistor parameters are VTP = -1.2 V, k, = 40 µA/V2, w/L = 80, and A = 0.05 V-1. (a) Determine IDo and VSDQ. (b) Find the small-signal voltage gain A, = vo/Vj. (c) Determine the small-signal circuit transconductance gain Ag = io/V¡. (d) Find the small- signal output resistance R,. %3D Vpp = 10 V Rs R. R1 Cc2 HH RL R2
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