Pressure calibration compares the readings of a pressure gauge, transducer, or other pressure instrument against a more accurate, traceable reference and documents the error at several points across its range. Most pressure instruments are calibrated once a year, with shorter intervals for critical, heavily used, or harsh-service instruments.
Pressure readings drive safety limits, process control, and product acceptance in nearly every plant. This guide explains how gauges and transducers are calibrated, what traceability actually means on your certificate, and how to set a sensible schedule for pressure calibration.
During pressure calibration, the instrument under test and a reference standard are connected to the same pressure source. The technician sets a series of test pressures, usually rising and then falling across the range, and records both readings at each point. The difference is the instrument's error, and it is compared against the instrument's stated accuracy.
The right method depends on what kind of pressure the instrument measures:
Pressure is reported in many units, including psi, bar, kPa, inches of water, and inches of mercury. Your certificate should state the units used, and they should match how the instrument is read in the field.
Pressure gauges display pressure directly. Analog gauges use a Bourdon tube, diaphragm, or bellows that moves a pointer across a dial. Digital gauges use an internal pressure sensor and display a numeric reading, often with higher accuracy and features such as min/max recording.
Common types include standard pressure gauges, compound gauges that read both pressure and vacuum, differential pressure gauges, vacuum gauges, and manometers.
The gauge is connected to a pressure source alongside a reference standard, such as a deadweight tester or a high-accuracy digital calibrator. The technician checks several points across the range, typically including zero and full scale, in both rising and falling pressure. For analog gauges, the technician lightly taps the gauge before each reading to free any sticking in the movement, and checks for hysteresis, the difference between the rising and falling readings.
Dial gauges are often specified to ASME B40.100, which defines accuracy grades for pressure gauges. The grade on your gauge sets the tolerance it is checked against.
A pressure transducer converts pressure into an electrical signal, such as millivolts or volts, that another device reads. A pressure transmitter does the same job but outputs a standardized signal, most often 4 to 20 mA, designed to travel long distances to a PLC or control system. Neither one has a display of its own in many installations, so errors can go unnoticed until a process drifts.
The technician applies known pressures from a reference standard and measures the electrical output at each point. The results show whether the output matches the expected value across the range. Two adjustments are most common:
If the device is adjusted, it is tested again so the certificate shows both the as-found and as-left results.
Traceability means every calibration in the chain, from your gauge back to national standards, is documented and has a stated measurement uncertainty. In the U.S., that chain typically leads to NIST. Without it, a calibration certificate is just a claim.
Each of these standards is itself calibrated by a higher-level lab, and that link is what carries traceability down to your instrument.
The reference standard should be meaningfully more accurate than the instrument being tested. A common rule of thumb is a test accuracy ratio of at least 4:1. The certificate should also state the measurement uncertainty, so you can judge whether a reading close to the tolerance limit truly passes.
Aldinger's pressure calibrations are performed under its ISO/IEC 17025:2017 accreditation through A2LA.
Annual calibration is the usual starting point for pressure gauges and transducers. Your quality system, customer contracts, or industry regulations may set a different interval, and those requirements come first. From there, calibration history is the best guide: an instrument that is consistently found in tolerance may support its current interval, while one found out of tolerance needs a shorter one.
Recalibrate right away after an overpressure event, a drop, a repair, or a move to a new location, regardless of the due date.
Aldinger calibrates pressure instruments up to 15,000 psi, with on-site service from Dallas, Houston, and Little Rock and mail-in service to our laboratory.
What is the difference between a pressure transducer and a pressure transmitter?
Both convert pressure into an electrical signal. A transducer typically outputs a low-level voltage signal, while a transmitter outputs a standardized signal, usually 4 to 20 mA, built to travel long distances to a control system.
What is a deadweight tester?
A deadweight tester produces a known pressure by placing calibrated masses on a piston of precisely known area. Because it relies on mass and area rather than an electronic sensor, it is one of the most accurate pressure references available. Deadweight testers need periodic calibration too.
Can pressure gauges be calibrated on-site?
Yes. Aldinger calibrates pressure gauges, transducers, and many other pressure and vacuum instruments at customer facilities, which keeps equipment close to production and reduces downtime.
What happens if my gauge fails calibration?
The certificate will show the as-found readings that were out of tolerance. Depending on the instrument, it may be adjusted and retested, sent for repair, or replaced. It is also worth reviewing any measurements made with that instrument since its last passing calibration.
What pressure range can Aldinger calibrate?
Aldinger calibrates pressure instruments up to 15,000 psi, along with vacuum gauges and vacuum transducers.
For over 50 years, Aldinger has helped customers across Texas and Arkansas keep pressure instruments accurate and compliant, on-site or in our lab. Send us your equipment list and we will build a calibration schedule that fits your operation.