Engineering Reference

Surface Finish Converter

Ra, RMS, and Rz across µm and µin, with the nearest ISO N grade and the process that typically produces it.

Equivalents
Ra
3.20 µm
126 µin
RMS (approx.)
140 µin
3.55 µm
Rz (approx.)
12.8 µm
typically 3 to 7 × Ra
Nearest ISO grade
N8
Ra 3.2 µm nominal
Typical process at this finish: standard machining (a common general-machining callout)
Ra ↔ µin is exact (× 39.37). RMS and Rz are standard approximations; different measurement definitions, not unit conversions.

ISO N grades at a glance

Each grade doubles the roughness of the one before it

GradeRa (µm)Ra (µin)Typical process
N40.28honing, lapping
N50.416fine grinding
N60.832grinding, fine turning
N71.663finish turning, reaming
N83.2125standard machining
N96.3250rough machining
N1012.5500rough turning, sawing

Finish symbols hide on every sheet of the drawing.

Mavlon reads surface finish callouts, general notes included, and carries each one into your AS9102 Form 3 as an inspectable characteristic.

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Frequently asked questions

How do you convert Ra to RMS?
RMS ≈ 1.11 × Ra for a typical machined surface. They are different statistical measures of the same profile, so the factor is an approximation, not a unit conversion. 3.2 µm Ra is roughly 140 µin RMS.
How do you convert Ra µm to µin?
Multiply by 39.37; this one is exact. 0.8 µm Ra = 31.5 µin Ra, 3.2 µm Ra = 126 µin Ra.
What is the relationship between Ra and Rz?
Rz is typically 3 to 7 × Ra depending on process, with 4 × as the common planning estimate. If the drawing specifies Rz, measure Rz; do not accept parts off the ratio.
What finish is standard for machined aerospace parts?
There is no universal default; 3.2 µm Ra (125 µin) is a common general-machining callout, 1.6 µm Ra often for located or sealing faces, 0.8 µm Ra and finer for bearing surfaces. The title block or general notes set the default; callouts override it.