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RC Low-Pass Filter Calculator

Result

159.1549Hz

Result: 159.1549 Hz
How the result movesµF → Hz

A resistor in series with a capacitor to ground passes the slow part of a signal and holds back the fast part. The boundary is the −3 dB cutoff, where the output has fallen to about 70.7 % of the input. Enter ohms and microfarads: 100 nF is 0.1 µF, 1 nF is 0.001 µF.

Worked examples

How it's calculated

f_c = 1 / (2π × R × C)

  1. StepEnter the resistor value in ohms — 4.7 kΩ is 4700.
  2. StepEnter the capacitor value in microfarads — 22 nF is 0.022.
  3. ResultRead the cutoff frequency; the time constant is 1 / (2π × f_c).

Reference table

R (Ω), C (µF)Time constant τCutoff (Hz)
1000, 11 ms159.1549
10000, 0.11 ms159.1549
100000, 0.001100 µs1591.5494
4700, 0.022103.4 µs1539.2161
2200, 1022 ms7.2343

Questions

How do I calculate the cutoff frequency of an RC low-pass filter?

Divide 1 by 2π times the resistance times the capacitance in farads: f_c = 1 / (2π × R × C). For a 1 kΩ resistor and a 1 µF capacitor that is 159.1549 Hz. Convert the capacitance from microfarads to farads first — the calculator does it for you.

What does the cutoff frequency mean?

The cutoff is the −3 dB point of the filter. Exactly there the output amplitude has dropped to about 70.7 % of the input, and the power to half. Below it signals pass almost untouched; above it they roll off at 6 dB per octave.

Do I enter the capacitance in farads or microfarads?

In microfarads (µF), and this is the one mistake that ruins the answer without looking wrong. A 100 nF capacitor is 0.1 µF, a 10 nF capacitor is 0.01 µF and a 1 nF capacitor is 0.001 µF. Entering raw farads gives a cutoff a million times too high.

What is the time constant of an RC filter?

The time constant is τ = R × C in seconds, and it is the same fact seen in the time domain: f_c = 1 / (2πτ). After one time constant the capacitor voltage reaches about 63 % of a step change, after five it is within 1 %. The reference table below lists τ next to each cutoff.

What is an RC low-pass filter used for?

It passes low frequencies and attenuates high ones. It smooths a noisy DC supply, debounces switches and sensors, strips high-frequency noise and rolls off treble in audio. One resistor in series with one capacitor to ground is the whole circuit.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.