H.W1: Design a series RLC type bandpass filter with cutoff frequencies of 10 kHz and 11 kHz. Assuming C = 80 pF, find R, L, and Q.

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uO 9:10
Asiacell I.
H.W4.pdf
Homework (Chapter Four)
H.W1: Design a series RLC type bandpass filter with cutoff frequencies of 10
kHz and 11 kHz. Assuming C = 80 pF, find R, L, and Q.
H.W2:
a) Using 0.1 µF capacitors, design an active broadband first-order bandpass filter
that has a lower cutoff frequency of 200 Hz, an upper cutoff frequency of 2000
Hz, and a passband gain of 0 dB.
b) Write the transfer function for the scaled filter.
c) Use the transfer function derived in part (b) to find H(jwo)where wo is the
center frequency of the filter.
d) What is the passband gain (in decibels) of the filter at wo?
H.W3:
a) Design a narrow-band bandreject filter having a center frequency of 4 kHz and
a quality factor of 10. Base the design on C = 0.5 µF.
b) Draw the circuit diagram of the filter and label all component values on the
diagram.
c) What is the scaled transfer function of the filter?
Transcribed Image Text:uO 9:10 Asiacell I. H.W4.pdf Homework (Chapter Four) H.W1: Design a series RLC type bandpass filter with cutoff frequencies of 10 kHz and 11 kHz. Assuming C = 80 pF, find R, L, and Q. H.W2: a) Using 0.1 µF capacitors, design an active broadband first-order bandpass filter that has a lower cutoff frequency of 200 Hz, an upper cutoff frequency of 2000 Hz, and a passband gain of 0 dB. b) Write the transfer function for the scaled filter. c) Use the transfer function derived in part (b) to find H(jwo)where wo is the center frequency of the filter. d) What is the passband gain (in decibels) of the filter at wo? H.W3: a) Design a narrow-band bandreject filter having a center frequency of 4 kHz and a quality factor of 10. Base the design on C = 0.5 µF. b) Draw the circuit diagram of the filter and label all component values on the diagram. c) What is the scaled transfer function of the filter?
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