an active high pass filter with a specified. Design break frequency of 100 krad/sec and a Passband gain equal to 24. use a capacitor vahe of loonf For these design, Show: ⑥A circuit diagram of final filter design, Label all Components and Indicate the Input and Output Locations. Do not Include De the op-amp. Power ⑥The Jw transfer Function For The Filters The Passband gam in dB Ho Jenerate to use the tf and bode command In MATLAB a bode Plot for the filter I that the Passband gain in dB break Frequency are correct I (Label both). Confirming and the A

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Specified
Pass band
Design
an active high pass filter with a
break frequency of 100 krad/sec and a
equal to 24. use a capacitor vahe of loonf
For these design, Showi
gam
⑥A circuit diagram of final filter design, Label
all Components and Indicate the Input and
Output Locations. Do not luctude De
the op-amp.
Power to
The Jw transfer Function for the filter, I
The Passband gain in dB
Ho generate
use the tf and bode command In MATLAB
a bode Plot for the filter I
that the Passband gain in dB
break Frequency
Confirming
ad the
CLabel both).
and
Correct
Transcribed Image Text:Specified Pass band Design an active high pass filter with a break frequency of 100 krad/sec and a equal to 24. use a capacitor vahe of loonf For these design, Showi gam ⑥A circuit diagram of final filter design, Label all Components and Indicate the Input and Output Locations. Do not luctude De the op-amp. Power to The Jw transfer Function for the filter, I The Passband gain in dB Ho generate use the tf and bode command In MATLAB a bode Plot for the filter I that the Passband gain in dB break Frequency Confirming ad the CLabel both). and Correct
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