SensorCatalog

Pressure unit converter

Type in any unit; all the others update.

Convert

Formulas and standards

All units convert through pascals: 1 bar = 100 000 Pa, 1 psi = 6 894.757 Pa, 1 atm = 101 325 Pa, 1 Torr = 101 325/760 Pa, 1 kgf/cm² = 98 066.5 Pa. Water columns use water at 4 °C and g = 9.80665 m/s² (1 mmH₂O = 9.80665 Pa); some instruments use 20 °C or 60 °F, about 0.1–0.2 % different.

Units don’t say gauge or absolute. For absolute from gauge, add local atmospheric pressure (1.01325 bar at sea level).

Specifying a pressure transmitter?

Send your range and output to SensorSpan

How the converter works

Every unit is converted through the pascal (Pa), the SI unit of pressure, using a fixed factor per unit. Type a value into any field; all others update at once, and the field you typed in stays highlighted as the source. Results are shown to seven significant figures, which is more than any industrial pressure measurement can resolve.

The conversion factors

Unit Pascals Definition
bar 100 000 Exact by definition
mbar, hPa 100 Exact; the same size
kPa, MPa 1 000, 1 000 000 SI multiples
psi 6 894.757 Pound-force per square inch
psf 47.880 Pound-force per square foot (psi ÷ 144)
atm 101 325 Standard atmosphere, exact
Torr 133.322 1/760 of an atmosphere, exact
mmHg 133.322 387 Mercury at 0 °C, standard gravity
inHg 3 386.389 Mercury at 0 °C
kgf/cm² 98 066.5 Exact, also called “technical atmosphere” (at)
mmH₂O, mH₂O 9.80665, 9 806.65 Water at 4 °C, standard gravity
inH₂O 249.089 Water at 4 °C

Torr and mmHg are almost but not exactly equal; they differ by about 0.000015 %.

Quick reference

For the most common pairs there are dedicated pages with tables, for example bar to psi, psi to bar, MPa to psi, kPa to psi, inH₂O to Pa and kgf/cm² to bar.

Gauge, absolute and differential pressure

Pressure units don’t say what the pressure is measured against:

To convert gauge to absolute, add the local atmospheric pressure, which is 1.01325 bar (14.696 psi) at sea level by convention but varies with altitude and weather. Converting units with this tool does not change the reference; 10 barg is 145.04 psig.

Water columns and temperature

Water-column units depend on the density of water, and that depends on temperature. This converter uses water at 4 °C (maximum density) and standard gravity, the most common convention. Some instruments and standards use water at 20 °C or 60 °F, which gives values about 0.1 to 0.2 % different. For low-range differential pressure transmitters in inH₂O, check which convention the transmitter uses.

Common mistakes

Mixing up psi and psia/psig. The unit conversion is the same, but the reference matters when comparing readings.

Using kg/cm² as a mass unit. The unit is kilogram-force per square centimetre; 1 kgf/cm² is 0.980665 bar, not 1 bar.

Assuming mbar and hPa are different. They are identical; meteorology uses hPa, industry mostly mbar.

Frequently asked questions

Why does the converter show so many digits?

To avoid rounding errors when converting back and forth. Round to the precision of your instrument.

Is there a gauge-to-absolute option?

No; add atmospheric pressure separately. Units don’t change the reference.

Can I share a conversion?

Yes. “Copy link” opens the converter with your value and unit already entered.

Which transmitter accuracy do I need?

Use the pressure transmitter accuracy calculator to combine reference accuracy, temperature effect and drift for your range.