Paritian

Electricity

Passive Crossover Calculator

Capacitor and inductor values for a first or second order passive crossover, from the crossover frequency and the driver impedances.

Results

Capacitor, first order high-pass 7.9577 µF
Inductor, first order low-pass 0.5093 mH
Capacitor, second order high-pass 5.6270 µF
Inductor, second order low-pass 0.7203 mH
Capacitor in the low-pass leg 5.6270 µF
Inductor in the high-pass leg 0.7203 mH
First order slope 6.0 dB/oct
Second order slope 12.0 dB/oct
Wavelength at that frequency 13.72 cm
One octave below 1250.0 Hz

What this tool does

A passive crossover is one capacitor and one inductor doing arithmetic with frequency: the capacitor passes what is above, the inductor passes what is below, and where they cross is set by the impedance they work into. The values here are for a nominal resistive load. **A real driver is not a resistor** — its impedance rises at resonance and with frequency, so these are a starting point to be measured and adjusted, not a finished design.

Formula

1st order: C = 1 ÷ (2π f Z), L = Z ÷ (2π f) · 2nd order Butterworth: C = 1 ÷ (2√2 π f Z), L = √2 Z ÷ (2π f)

Variables

SymbolMeaningUnit
fcCrossover frequencyHz
zwWoofer impedanceΩ
ztTweeter impedanceΩ
C1Capacitor, first order high-passµF
L1Inductor, first order low-passmH
C2Capacitor, second order high-passµF
L2Inductor, second order low-passmH
CLCapacitor in the low-pass legµF
LHInductor in the high-pass legmH
SLFirst order slopedB/oct
S2Second order slopedB/oct
WLWavelength at that frequencycm
OCOne octave belowHz

Worked example

  • Crossover frequency2500 Hz
  • Woofer impedance8 Ω
  • Tweeter impedance8 Ω
  • Capacitor, first order high-pass7.9577 µF
  • Inductor, first order low-pass0.5093 mH
  • Capacitor, second order high-pass5.6270 µF
  • Inductor, second order low-pass0.7203 mH
  • Capacitor in the low-pass leg5.6270 µF
  • Inductor in the high-pass leg0.7203 mH
  • First order slope6.0 dB/oct
  • Second order slope12.0 dB/oct
  • Wavelength at that frequency13.72 cm
  • One octave below1250.0 Hz

Limitations

  • The result is an estimate based only on the values you type. Real situations often include factors this calculator does not know about.
  • The calculation runs at full precision and only the display is rounded. If you copy an intermediate value and retype it, small differences can appear.
  • Mixing units is the most common source of error. Convert every input to the units shown next to each field before calculating.