Problem 4. (12 points) For the given circuit, a) Is it a high-pass or a low-pass filter? b) Derive the transfer function expression for this filter in terms of f/f. (2 points) c) Derive the expression for the corner frequency (3 points) d) If the load changes, does the corner frequency change too? Yes or No (Circle one) (2 points) e) Given Rs = 100 Q, R = 1 kQ, C = 2.2 uF, and R₁ = 1.5 k, use MatLAB to plot the Bode magnitude versus f/f, from 0 to 3. (4 points) Vs + R₁ R ww w +0 C Vout www RL

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Problem 4. (12 points) For the given circuit,
a) Is it a high-pass or a low-pass filter?
b) Derive the transfer function expression for this filter in terms of f/f. (2 points)
c) Derive the expression for the corner frequency (3 points)
d) If the load changes, does the corner frequency change too? Yes or No (Circle one) (2 points)
e) Given Rs = 100 Q, R = 1 kQ, C = 2.2 uF, and R₁ = 1.5 k, use MatLAB to plot the Bode magnitude
versus f/f, from 0 to 3. (4 points)
Vs
+
R₁
R
ww
w
+0
C
Vout
www
RL
Transcribed Image Text:Problem 4. (12 points) For the given circuit, a) Is it a high-pass or a low-pass filter? b) Derive the transfer function expression for this filter in terms of f/f. (2 points) c) Derive the expression for the corner frequency (3 points) d) If the load changes, does the corner frequency change too? Yes or No (Circle one) (2 points) e) Given Rs = 100 Q, R = 1 kQ, C = 2.2 uF, and R₁ = 1.5 k, use MatLAB to plot the Bode magnitude versus f/f, from 0 to 3. (4 points) Vs + R₁ R ww w +0 C Vout www RL
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