Voo* 2.5 V QI. For the amplifier shown in Figure-1 the aspect ratio (W/L) is indicated adjacent to (4/1) 20 ko R 20 ka the devices. a) Find the value of Rx to set Inus-0.1mA. M, b) Determine the values of Ix, Iv, and Iz (10/1) (10/1) e) Find the two ended differential and common mode gains. M, (4/1) V25V Figure I Transistor Parameters: K-100 µAN', K,-50 µAN', Viw-1V, V;p-1V, and A,-,-0.02 v".

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Vo 2.5 V
QI. For the amplifier shown in Figure-1 the
(4/1)
aspect ratio (W/L) is indicated adjacent to
R. 20 ko Re 20 ka
м,
the devices.
Vount
O Va
a) Find the value of Rx to set IREr-0.1mA.
M.
M,
b) Determine the values of Ix, Iy, and Iz
(10/1)
(10/1)
e) Find the two ended differential and
common mode gains.
M,
M,
(2/1)
(4/1)
Va-2.6 V
Figure I
Transistor Parameters:
K,-100 µAN, K-50 HAN,
VI-1V, Vp-1V, and A,-d,-0.02 V.
Transcribed Image Text:Vo 2.5 V QI. For the amplifier shown in Figure-1 the (4/1) aspect ratio (W/L) is indicated adjacent to R. 20 ko Re 20 ka м, the devices. Vount O Va a) Find the value of Rx to set IREr-0.1mA. M. M, b) Determine the values of Ix, Iy, and Iz (10/1) (10/1) e) Find the two ended differential and common mode gains. M, M, (2/1) (4/1) Va-2.6 V Figure I Transistor Parameters: K,-100 µAN, K-50 HAN, VI-1V, Vp-1V, and A,-d,-0.02 V.
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