We wish to design the circuit shown below for a drain current of 3 mA. Compute R₁ such that the input impedance is 30 k2. Assume λ = 0. Aşağıda gösterilen devreyi 3 mA drain akımına sahip olacak şekilde tasarlamak istiyoruz. Giriş empedansi 30 kn olacak şekilde R₁'i hesaplayınız. λ = 0 alınız. Circuit parameters / Devre Parametreleri HnCox = 200 μA/V², VTH = 0.4 V, W/L=20/0.18, Vpp = 4,6 V VDD RD R₁ R₂ www "M a. 225,1 k b. 180,1 ΚΩ c. 135,1 k d. 195,1 ΚΩ e. 120,1 ΚΩ f. 150,1 k g. h. 165,1 k 210,1 k M₁

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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We wish to design the circuit shown below for a drain current of 3 mA. Compute R₁ such that the input impedance is
30 k2. Assume λ = 0.
Aşağıda gösterilen devreyi 3 mA drain akımına sahip olacak şekilde tasarlamak istiyoruz. Giriş empedansi 30 k olacak
şekilde R₁'i hesaplayınız. A = 0 alınız.
Circuit parameters / Devre Parametreleri
HnCox = 200 μA/V², VTH = 0.4 V, W/L=20/0.18, Vpp = 4,6 V
VDD
RD
R₁
R₂
www
WI
ΚΩ
a. 225,1
b. 180,1 ΚΩ
C. 135,1 ΚΩ
d. 195,1 k
e. 120,1 ΚΩ
f. 150,1 k
g. 210,1 ΚΩ
h. 165,1 kQ
M₁
Transcribed Image Text:We wish to design the circuit shown below for a drain current of 3 mA. Compute R₁ such that the input impedance is 30 k2. Assume λ = 0. Aşağıda gösterilen devreyi 3 mA drain akımına sahip olacak şekilde tasarlamak istiyoruz. Giriş empedansi 30 k olacak şekilde R₁'i hesaplayınız. A = 0 alınız. Circuit parameters / Devre Parametreleri HnCox = 200 μA/V², VTH = 0.4 V, W/L=20/0.18, Vpp = 4,6 V VDD RD R₁ R₂ www WI ΚΩ a. 225,1 b. 180,1 ΚΩ C. 135,1 ΚΩ d. 195,1 k e. 120,1 ΚΩ f. 150,1 k g. 210,1 ΚΩ h. 165,1 kQ M₁
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