In the circuit shown kp = 2 mA/V2 and kn = 1.5 mA/V² and the drain currents are Ip1 = 3 mA and Ip2 = 4 mA. We give Rs1 = 1 ko, RD1 = 5 kO, Rs2 = 3 kQ, and (R1 // R2) = 200 ko, Then the input and output resistances of the circuit %3D %3D %3D %3D are: RS1 M1 M2 Rp1 Rs2 a. rin = 200 ka, and rout = 1.2 ko b. rin = 200 kn, and rout = 191 Q ww ww ww ww

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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In the circuit shown kp = 2 mA/V2
and kn = 1.5 mA/V2 and the drain
currents are Ip1 = 3 mA and ID2 = 4
mA. We give Rs1 = 1 ko, RD1 = 5
ko, Rs2 = 3 ko, and (R1 // R2) =
200 ko, Then the input and
output resistances of the circuit
%3D
%3D
%3D
%3D
%3D
are:
R$1
Rin
M2
Rp1
Rs2
a.
rin = 200 ka, and rout = 1.2 ko
b.
rin = 200 kn, and rout = 191 N
ww
ww
Transcribed Image Text:In the circuit shown kp = 2 mA/V2 and kn = 1.5 mA/V2 and the drain currents are Ip1 = 3 mA and ID2 = 4 mA. We give Rs1 = 1 ko, RD1 = 5 ko, Rs2 = 3 ko, and (R1 // R2) = 200 ko, Then the input and output resistances of the circuit %3D %3D %3D %3D %3D are: R$1 Rin M2 Rp1 Rs2 a. rin = 200 ka, and rout = 1.2 ko b. rin = 200 kn, and rout = 191 N ww ww
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