1 a. Show that the circuit shown below behaves as a bandpass filter by finding the transfer function for this circuit and showing that it has the same form as the transfer function for a bandpass filter. b. Use 300 pF capacitors to design a bandpass filter with a quality factor of 20, a center frequency of 8 kHz and a passband gain of 40 dB. c. Determine the bandwidth and corner frequencies of the filter

Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
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Please be aware that the previous expert copied the same solution from chegg and provided to me. Please do your own work especially while comparing the standard form of Band pass filter with the obtained transfer function. I saw wo/B has two different values but the expert took the denominator value only.

F7.1
a. Show that the circuit shown below behaves as a bandpass filter by finding the transfer function
for this circuit and showing that it has the same form as the transfer function for a bandpass
filter.
V
b. Use 300 pF capacitors to design a bandpass filter with a quality factor of 20, a center frequency
of 8 kHz and a passband gain of 40 dB.
c.
Determine the bandwidth and corner frequencies of the filter
R₁
не
a
1
SC
HE
1
R₂ SC
R3
+
Vo
T
Transcribed Image Text:F7.1 a. Show that the circuit shown below behaves as a bandpass filter by finding the transfer function for this circuit and showing that it has the same form as the transfer function for a bandpass filter. V b. Use 300 pF capacitors to design a bandpass filter with a quality factor of 20, a center frequency of 8 kHz and a passband gain of 40 dB. c. Determine the bandwidth and corner frequencies of the filter R₁ не a 1 SC HE 1 R₂ SC R3 + Vo T
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