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Analog Lowpass Filter Prototype Design ELEC 423 Prof. Siripong Potisuk
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Linear Design Specifications Passband: F p = the passband cutoff frequency p = the passband ripple ( p > 0) Stopband: F T = the stopband cutoff frequency S = the stopband attenuation ( S > 0) Transition band: the band of frequencies between F p and F T.
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Logarithmic Design Specifications
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Analog Lowpass Butterworth Filter Maximally flat passband filter magnitude response decreases monotonically starting from 1 at DC (F = 0) As n, the order of the filter, increases, the transition band decreases (steeper roll-off)
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Design Parameters n, the order of the filter
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Design Parameters F C, the 3-dB cutoff frequency
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Example. Design a Butterworth lowpass filter to meet the following linear design specifications: F p = 1000 Hz, F T = 2000 Hz, and p = s = 0.05.
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Transfer Function na0a0 a1a1 a2a2 a3a3 a4a4 111 211.4142141 31221 412.6131263.4142142.6131261
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Analog Frequency Transformations Convert toReplace s with Lowpass with cutoff 0 Highpass with cutoff 0 Bandpass with cutoffs 1 and 2 Bandstop with cutoffs 1 and 2
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Example. Determine the transfer function of the following filters: (a)1 st order highpass Butterworth filter, (b) 2 nd order analog bandpass filter.
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