Design an ACTIVE band-pass filter for the midrange part of a loudspeaker so that the bandpass region is 400 Hz-2000 Hz (as defined by the -3dB points). Design the circuit so that the absolute gain is 2. a. Draw the circuit diagram and specify the resistor and capacitor values. Assume you can use either 100, 330, 500, or 1000 Ohm resistors and can select any value of capacitor. b. Sketch the frequency response (Gain [dB] vs. frequency (Hz)). Note that you will need to convert your gain to dB before plotting. Magnitude (dB) 15 10 5 midrange 12 1 -5 -10 -15 -20 -25 10 100 1,000 Frequency (Hz) 10,000 100,000

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Design an ACTIVE band-pass filter for the midrange part of a loudspeaker so that the bandpass region is
400 Hz-2000 Hz (as defined by the -3dB points). Design the circuit so that the absolute gain is 2.
a. Draw the circuit diagram and specify the resistor and capacitor values. Assume you can use either
100, 330, 500, or 1000 Ohm resistors and can select any value of capacitor.
b. Sketch the frequency response (Gain [dB] vs. frequency (Hz)). Note that you will need to convert
your gain to dB before plotting.
Magnitude (dB)
15
10
5
midrange
12 1
-5
-10
-15
-20
-25
10
100
1,000
Frequency (Hz)
10,000
100,000
Transcribed Image Text:Design an ACTIVE band-pass filter for the midrange part of a loudspeaker so that the bandpass region is 400 Hz-2000 Hz (as defined by the -3dB points). Design the circuit so that the absolute gain is 2. a. Draw the circuit diagram and specify the resistor and capacitor values. Assume you can use either 100, 330, 500, or 1000 Ohm resistors and can select any value of capacitor. b. Sketch the frequency response (Gain [dB] vs. frequency (Hz)). Note that you will need to convert your gain to dB before plotting. Magnitude (dB) 15 10 5 midrange 12 1 -5 -10 -15 -20 -25 10 100 1,000 Frequency (Hz) 10,000 100,000
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