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Inductive Reactance Calculator

Result

31.415927Ω

Result: 31.415927 Ω

A coil opposes alternating current more and more as the frequency rises: a 100 mH choke is 31.4 Ω on 50 Hz mains and 628 Ω at 1 kHz. At direct current the reactance is zero and only the wire's own resistance remains.

The numbers at a glance

Held fixed: Frequency 50.00 Hz.

Inductance (H)Result (Ω)
0.0250007.853982
0.05000015.707963
0.07500023.561945
0.100000Your value31.415927
0.12500039.269908
0.15000047.123890
0.17500054.977871
0.20000062.831853

Worked examples

How it's calculated

XL = 2 × π × f × L

  1. StepEnter the frequency of the signal in hertz.
  2. StepEnter the inductance in henries — 100 mH is 0.1.
  3. ResultRead the reactance in ohms; it rises with both inputs.

Reference table

Frequency, inductanceWhat that isReactance
400, 0.0022 mH at 400 Hz aircraft power5.026548
50, 0.1100 mH choke on 50 Hz mains31.415927
60, 0.1The same choke on 60 Hz mains37.699112
1000, 0.0110 mH at 1 kHz62.831853
60, 0.5500 mH transformer winding188.495559

Questions

What is inductive reactance?

The opposition a coil offers to alternating current, measured in ohms. It stores energy in a magnetic field and returns it each half cycle instead of turning it into heat.

Why does it rise with frequency?

A coil resists any change in the current through it, and a faster alternation is a faster change. At direct current nothing changes, so the reactance is zero.

Can I add it to a resistance in the same circuit?

Not directly. The coil's current lags the voltage by a quarter cycle, so the two combine as Z = √(R² + XL²).

Where do I get the inductance from?

From the part's data sheet, from a meter, or — for a home-wound air-core coil — from the coil inductance calculator linked below.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.