2. Practical differentiator circuits in control Find the transfer function, X(s)/E(s) of the practical differentiator circuit including the inverting amplifier. Find the closed loop transfer function of the the system Y(s)/R(s). a.) b.) R2 R(s) Y(s) E(s) R1 X(s) 1+0.075s R = 10ko Rin = 12ko C = 2.5 uF R, = 100ko R2 = 220ko %3D Answer: 24.4s 0.055s 2a) 1+0.03s 2b) s? +71.1s + 444.4

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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2. Practical differentiator circuits in control
Find the transfer function, X(s)/E(s) of the practical differentiator circuit including
the inverting amplifier.
Find the closed loop transfer function of the the system Y(s)/R(s).
a.)
b.)
R2
R(s)
Y(s)
1+0.075s
E(s)
X(s)
C = 2.5 uF R, = 100k2 R2 = 220ka
%3D
R = 10ko Rin = 12ko
Answer:
24.4s
0.055s
2a)
1+0.03s
2b)
s? +71.1s+444.4
Transcribed Image Text:2. Practical differentiator circuits in control Find the transfer function, X(s)/E(s) of the practical differentiator circuit including the inverting amplifier. Find the closed loop transfer function of the the system Y(s)/R(s). a.) b.) R2 R(s) Y(s) 1+0.075s E(s) X(s) C = 2.5 uF R, = 100k2 R2 = 220ka %3D R = 10ko Rin = 12ko Answer: 24.4s 0.055s 2a) 1+0.03s 2b) s? +71.1s+444.4
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