Inductors In Series Calculator

Use Omni's inductors in series calculator to work out the equivalent inductance of a series circuit.

Clear
Total inductance7.9 mH3 components in series — they add directly
Number of components3
Sum of the values7.9 mHwhich is the answer, in this arrangement
Smallest value1 mH
Largest value4.7 mH
Component 11 mH12.66% of the total
Component 22.2 mH27.85% of the total
Component 34.7 mH59.49% of the total
In parallel instead599.768 µHthe same components, arranged the other way
Note for capacitorsthey combine the opposite waycapacitors add in parallel and combine reciprocally in series — the reverse of what you see here

The formula

series and parallel combination — capacitors work the opposite way

Capacitors are the exception

Resistors and inductors add in series and combine reciprocally in parallel. Capacitors do exactly the reverse: they add in parallel and combine reciprocally in series.

It is not arbitrary. What actually adds in series is always impedance, and a capacitor's impedance is inversely proportional to its capacitance. Adding impedances in series therefore means adding reciprocals of capacitance, which is where the apparent inversion comes from. Physically, putting capacitors in series is like making the dielectric thicker, which reduces capacitance; putting them in parallel is like making the plates bigger, which increases it.

Two useful consequences. Whenever reciprocals add, the total is always smaller than the smallest individual component, and n identical components give exactly one nth of a single value. That gives you a quick sanity check: a parallel resistance larger than any of its resistors is an arithmetic error.