1. The transfer function of a second-order high-pass analog filter (inverse Chebyshev, fc-2KHZ, fs-44100HZ, 60DB) is expressed as: (s-jo.1014) (s+ j1014) H(s) = (s+2.267-j2.2692) (s+2.267+ j2.2692) fe 3+7.267 It is necessary to transform the given analog filter into the appropriate digital filter by bilinear transformation.
1. The transfer function of a second-order high-pass analog filter (inverse Chebyshev, fc-2KHZ, fs-44100HZ, 60DB) is expressed as: (s-jo.1014) (s+ j1014) H(s) = (s+2.267-j2.2692) (s+2.267+ j2.2692) fe 3+7.267 It is necessary to transform the given analog filter into the appropriate digital filter by bilinear transformation.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![1. The transfer function of a second-order high-pass analog filter (inverse Chebyshev,
fe-2KHZ, fs-44100HZ, 60DB) is expressed as:
(s-j0.1014) (s + j1014)
H(s) =
(s+2.267- j2.2692) (s+2.267 + j2.2692)
S+ 2.267
fe
It is necessary to transform the given analog filter into the appropriate digital filter by
bilinear transformation.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F920cf533-1733-4c18-b13a-a1fb71feb791%2F81fee7bd-8341-442a-a978-87569a97b0e2%2F7jfamd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. The transfer function of a second-order high-pass analog filter (inverse Chebyshev,
fe-2KHZ, fs-44100HZ, 60DB) is expressed as:
(s-j0.1014) (s + j1014)
H(s) =
(s+2.267- j2.2692) (s+2.267 + j2.2692)
S+ 2.267
fe
It is necessary to transform the given analog filter into the appropriate digital filter by
bilinear transformation.
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