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Speaker Crossover Calculator

First order (six dB/octave) two-way crossover

high pass impedance: ohm
Low pass impedance: ohm
frequency: Hz
Calculate the first-order divider
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C1= μf
L1= mH

Second order (twelve dB/octave) two-way crossover

Linkwitz-Riley Butterworth Bessel
high pass impedance: ohm
Low pass impedance: ohm
frequency: Hz
Calculate the second order divider
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C1= μf
L1= mH
C2= mH
L2= mH

3rd order (18dB/octave) two-way crossover

high pass impedance: ohm
Low pass impedance: ohm
frequency: Hz
Calculate third-order crossover
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C1= μf
C2= mH
L1= mH
L2= mH
L3= mH
C3= μf

Fourth-order (24dB/octave) two-way crossover

high pass impedance: ohm
Low pass impedance: ohm
frequency: Hz
calculate
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C1= μf
C2= mH
L1= mH
L2= mH
C3= μf
C4= μf
L3= mH
L4= mH

Zobel Sebel Circuit (Impedance Stabilized)

DC Resistance (Re): ohm
Equivalent inductance (Le):
calculate
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C1= μf
R1= ohm

L L-shaped speaker horn attenuation circuit

drive impedance: ohm
ideal attenuation: dB
calculate
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R1= ohm
R2= ohm

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