We wish to design the circuit shown below for a drain current of 3 mA. Compute R2 such that the input impedance is 40 k2. Assume À = 0. Açağıda gösterilen devreyi 3 mA drain akımına sahip olacak sekilde tacarlemekeistiyoruz Giriş empedansı 40 ko olacak şekilde Ri liesaptay Circuit parameters / Devre Parametreleri H,Cox = 200 HAN, VTH = 0.4 V, W/L=17/0.18, Vpp = 4,7 V %3!
We wish to design the circuit shown below for a drain current of 3 mA. Compute R2 such that the input impedance is 40 k2. Assume À = 0. Açağıda gösterilen devreyi 3 mA drain akımına sahip olacak sekilde tacarlemekeistiyoruz Giriş empedansı 40 ko olacak şekilde Ri liesaptay Circuit parameters / Devre Parametreleri H,Cox = 200 HAN, VTH = 0.4 V, W/L=17/0.18, Vpp = 4,7 V %3!
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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
Transcribed Image Text:We wish to design the circuit shown below for a drain current of 3 mA. Compute R2 such that the input impedance is 40 kn. Assume A = 0.
Açağıda gösterilen devreyi 3 mA drain akımına sahin olacak sekilde tacarlemekistioruz Giris empedansı 40 kO olacak sekilde Resaptay
Circuit parameters / Devre Parametreleri
HhyCox = 200 µAN?, VTH = 0.4 V, W/L=17/0.18, Vpp = 4,7 V
VDD
Rp
O a. 30,2 k.
O b. 40,3 ko
O c. 45,3 k2
O d. 50,3 k2
O e. 60,4 k.
O f. 55,3 kn
O g. 35,2 kn
O h. 65,4 ko
W
W WHI
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