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RL Time Constant Calculator

Result

10.00ms

Result: 10.00 ms
How the result movesΩ → ms

Millihenries divided by ohms give milliseconds directly: a 100 mH coil in series with 10 Ω has a time constant of 10 ms. After one time constant the current has reached about 63 % of its final value, after five about 99 %. Use the total series resistance, coil winding included.

Worked examples

How it's calculated

τ = L ÷ R

  1. StepEnter the inductance in millihenries — a 1 H coil is 1000 mH.
  2. StepEnter the total series resistance, the coil's own winding plus any resistor.
  3. ResultRead the time constant in milliseconds; five times that is practically steady state.

Reference table

L (mH), R (Ω)Steady state 5ττ in ms
10, 225 ms5
47, 1002.35 ms0.47
100, 1050 ms10
220, 4.7234.04 ms46.81
500, 10002.5 ms0.5

Questions

How do I calculate the time constant of an RL circuit?

Divide the inductance by the resistance. In millihenries over ohms the answer comes out in milliseconds, so 100 mH and 10 Ω give 10 ms. That is how long the current takes to reach about 63 % of its final value after switch-on.

What does the time constant tell me?

It sets how fast the current rises or falls. After 1τ the current is at about 63 % of its final value, after 2τ about 86 %, after 3τ about 95 % and after 5τ about 99 %. A larger inductance or a smaller resistance lengthens τ and slows the change.

Why is steady state taken as five time constants?

After five time constants the current is within about 1 % of its final value, which engineers treat as settled. It is a working convention, not a physical boundary — the curve never quite arrives. For 100 mH and 10 Ω that means roughly 50 ms.

Should I include the coil's own resistance?

Yes, use the total series resistance: the inductor's winding resistance plus any external resistor. Leaving the coil out makes R too small and the computed time constant too long. Measure the coil's DC resistance and add it.

Do I enter henries or millihenries?

Millihenries. A 1 H coil is 1000 mH and a 100 µH coil is 0.1 mH. Entering raw henries would give an answer a thousand times too large.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.