Acceleration in G’s to Displacement in Mils Calculator
Convert between peak acceleration in g, peak-to-peak displacement in mils, and vibration frequency in CPM. Enter any two variables to solve the third for a discrete sinusoidal frequency.
US + metric
Formula shown
Shareable results
Acceleration, Displacement & Frequency
g pk
mil pk-pk
CPM
Enter any two variables
The highlighted field is calculated automatically using a single-frequency sinusoidal relationship.
Peak acceleration0.18405g pk(1.805 m/s² pk)
Filtered, discrete frequency only
Acceleration must be peak amplitude and displacement must be peak-to-peak. This conversion does not apply to broadband, random, shock, transient, or unfiltered overall vibration.
For the US vibration inputs shown, A(g pk) = 1.4201698269 × 10⁻⁸ × X(mil pk-pk) × CPM². The coefficient is derived from standard gravity and the exact international inch.
For preliminary analysis and educational use. Verify amplitude conventions, frequency filtering, sensor bandwidth, mounting, calibration, and signal-processing settings before using a result for machinery decisions.
This calculator converts among acceleration, displacement, and frequency for one sinusoidal vibration component. Choose the variable to calculate, then enter the other two. US vibration units use peak acceleration in g, peak-to-peak displacement in mils, and cycles per minute (CPM); the metric view uses g peak, micrometres peak-to-peak, and hertz.
The sinusoidal relationship
For displacement x(t) = Xpk sin(2πft), differentiating twice gives a peak acceleration magnitude of Apk = (2πf)²Xpk. Because the entered displacement is peak-to-peak, Xpk = Xpp/2, so Apk = (2πf)²Xpp/2. Frequency in hertz is CPM divided by 60.
Solve in any direction
Acceleration (A) — enter peak-to-peak displacement and frequency.
Displacement (Xpp) — enter peak acceleration and frequency.
Frequency (CPM or Hz) — enter peak acceleration and peak-to-peak displacement.
Worked example
A filtered sinusoidal vibration of 1 mil peak-to-peak at 3,600 CPM (60 Hz) has a peak displacement amplitude of 0.5 mil and a peak acceleration of 0.18405 g, equivalent to 1.80495 m/s². Solving backward with 0.18405 g and 3,600 CPM returns 1 mil peak-to-peak.
Amplitude conventions matter
This tool pairs peak acceleration with peak-to-peak displacement. Do not enter RMS acceleration without converting it to peak for a sinusoid (peak = RMS × √2). Likewise, do not enter zero-to-peak displacement in the peak-to-peak field without doubling it.
Discrete-frequency assumption
The conversion is valid for a single sinusoidal component at a known frequency, such as a filtered spectral line. It does not convert broadband, random, transient, shock, or unfiltered overall vibration. For a spectrum, convert each frequency component separately while keeping a consistent amplitude convention.
Assumptions and limits
The vibration is sinusoidal and occurs at one discrete, filtered frequency.
Acceleration is peak amplitude and displacement is peak-to-peak excursion.
CPM means cycles per minute. It equals shaft rpm only for a 1× rotational vibration component.
The mathematical result does not account for sensor bandwidth, integration noise, filtering, mounting, or calibration uncertainty.
Brüel &Kjær Sound and Vibration Handbook sinusoidal relationshipsNIST SP 811 standard gravity and inch definition
Verified
Constants and formula two-source checked (PumpCalcs engineering review, 2026-08-26).
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