Design a basic wide-band, RC band stop filter with a lower cut-off frequency of 200HZ and a higher cut-off frequency of 800HZ. Var VIN Band Stop Response -3dB Pass Band Pass Band Frequency (Hz) -3 dB Low Pass Response High Pass Response Frequency (Hz) st. 2020

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Design a basic wide-band, RC band stop filter with a lower cut-off frequency of 200Hz and a
higher cut-off frequency of 800HZ.
Var
VIN
-3 dB
Band Stop
Response
Pass Band
Pass Band
Frequency (Hz)
-3 dB
Low Pass
Response
High Pass
Response
Frequency (Hz)
Figure 1: Band Stop Filter Characteristics
Assuming a capacitor, C value for both filter sections (Clp, Chp) of 0.2ul
calculate the values of
the two resistors, RLP and Rhp using the formula:
1. From the Low pass filter formula, Find RLp:
fi =
2. From the High pass filter formula, Find RHP:
1
fu
2tRµpChp
%3D
3. Calculate the center frequency (fc) and Bandwidth (BW):
a. fc = \fi x fu
DW
„Copyright © Amican Collegef the Middra East. 2020
Transcribed Image Text:Design a basic wide-band, RC band stop filter with a lower cut-off frequency of 200Hz and a higher cut-off frequency of 800HZ. Var VIN -3 dB Band Stop Response Pass Band Pass Band Frequency (Hz) -3 dB Low Pass Response High Pass Response Frequency (Hz) Figure 1: Band Stop Filter Characteristics Assuming a capacitor, C value for both filter sections (Clp, Chp) of 0.2ul calculate the values of the two resistors, RLP and Rhp using the formula: 1. From the Low pass filter formula, Find RLp: fi = 2. From the High pass filter formula, Find RHP: 1 fu 2tRµpChp %3D 3. Calculate the center frequency (fc) and Bandwidth (BW): a. fc = \fi x fu DW „Copyright © Amican Collegef the Middra East. 2020
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