a. Using 2.7 kN resistors and ideal op amps, design a circuit that will implement the low-pass Butterworth filter specified in Problem 15.340. The gain in the passband is one. b. Construct the circuit diagram and label all component values.
a. Using 2.7 kN resistors and ideal op amps, design a circuit that will implement the low-pass Butterworth filter specified in Problem 15.340. The gain in the passband is one. b. Construct the circuit diagram and label all component values.
Introductory Circuit Analysis (13th Edition)
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Need help with a and b please. Thank you

Transcribed Image Text:a. Using 2.7 kN resistors and ideal op amps, design a circuit that will implement the
low-pass Butterworth filter specified in Problem 15.340. The gain in the
passband is one.
b. Construct the circuit diagram and label all component values.

Transcribed Image Text:15.34
(A)
Order of the Low Pass butterworth filter.
CutoPf
freguency
=Wp- 800 47 and the gain is not mure than -25dB
at 2500HZ.
-0.05 As
n=
-0.05 25)
order of the filter
-2.526
2600
10
B.
gain in dB at 2500 HZ
2n
ビ 20K1000
10
の n=3
Op= 2500H2.
2(3)
I+(2500)
-203.876dB =K
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