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MSRAAF2S Fiches technique(PDF) 4 Page - Mixed Signal Integration

No de pièce MSRAAF2S
Description  Resistor Programmable Active Audio Filter
PDF  8 Pages
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Fabricant  MSI [Mixed Signal Integration]
Site Internet  https://www.mix-sig.com
Logo MSI - Mixed Signal Integration

MSRAAF2S Fiches technique(HTML) 4 Page - Mixed Signal Integration

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Resistor Programmable Audio Active Filter
Data Sheet
6/2014
Web Site “www.mix-sig.com”
© 2004-2014 Mixed Signal Integration 4
Mixed Signal Integration Corporation reserves the right to to change any product or specification without notice at any time. Mixed Signal Integration
products are not designed or authorized for use in life support systems. Mixed Signal Integration assumes no responsibility for errors in this docu-
ment.
(RFO1 * RFO2)1/2 = 1E9/Fo
RQ = Q * RFO2 ((RFO1/RFO2)1/2))))
SIMPLIFIED
If RFO1 = RFO2; RFO1=RFO2=1E9/Fo
RQ = Q * RFO2
LOWPASS
KLP = Lowpass Gain
RLP = RFO1/KLP ; RBP =
; INHP to GND
BANDPASS
KBP = Bandpass Gain
RBP = RQ/KBP; RLP =
; INHP to GND
HIGH PASS
Gain = 1
RLP =
; RBP =
NOTCH
RLP = RFO1 ; RBP =
ALL PASS
An External Op Amp Inverter is required
RLP = RFO1 ; RBP = RQ ; R1 = R2
LOW PASS ELLIPTIC
An External Resistor Divider is required on INHP
RLP = RFO1 ; RBP =
FZ = Fo * (((R2 + R1)/R2)1/2)
HIGHPASS ELLIPTIC
RLP = (Fo/Fz)2 * RFO1 ; RBP =
Choosing RFO
For applications where Q is > = 1, making RFO1 =
RFO2 will usually be a good simplification. For appli-
cations where Q is significantly less than one, the
maximum signal can be reduced. For example, if Q =
0.5, RFO2 = 100K and RQ = 50K, the signal at OUT1
will be twice OUT2 and will clip for large signals. By
using the general equations, it can be seen that one
solution to this problem would be to make RFO2 =
RQ = 50K and RFO1 = 200K.
R3
R4
INHP
INPUT
GND
_
+
R2
R1
RBP
GND
INBP
INPUT



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