Question IV can be achieved using the circuit of Figure 4. Find A band-pass filter R1 C1 HE R2 Us (a) the network function H = VV, (b) the low- and high-frequency cutoff frequencies w1 and w2, (c) the pass-band gain when o1 «@<< C2 Figure 4 02, and
Question IV can be achieved using the circuit of Figure 4. Find A band-pass filter R1 C1 HE R2 Us (a) the network function H = VV, (b) the low- and high-frequency cutoff frequencies w1 and w2, (c) the pass-band gain when o1 «@<< C2 Figure 4 02, and
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![A band-pass filter
Question IV
can be achieved using the circuit of
Figure 4. Find
R1
C1
R2
Us
(a) the network function H = VV,
(b) the low- and high-frequency cutoff
frequencies w1 and w2,
(c) the pass-band gain when w1 « @<<
w2, and
(d) Sketch the Bode diagram for H(@) when
C2
Figure 4
R1=10 k N, C1=1 µF, R2= 10 k N,
and C2= 0.1 µF.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F50f8516f-ca69-4754-af99-d30dbf47eb66%2Fefd4082b-95b0-43ad-829a-21efe6e399c6%2Fnunfcio_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A band-pass filter
Question IV
can be achieved using the circuit of
Figure 4. Find
R1
C1
R2
Us
(a) the network function H = VV,
(b) the low- and high-frequency cutoff
frequencies w1 and w2,
(c) the pass-band gain when w1 « @<<
w2, and
(d) Sketch the Bode diagram for H(@) when
C2
Figure 4
R1=10 k N, C1=1 µF, R2= 10 k N,
and C2= 0.1 µF.
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