Science
The functioning of an acceleratorParticle accelerators were developed by physicists to study the elementary nature of matter. Nowadays, they are usually immense, highly international... More relies on the ultra-precise controlAn NMR-controlled field is one whose strength is monitored by NMR. As opposed to NMR-regulated. More of hundreds of magnets. Although every magnet is a single point of failure, around-the-clock operation has to be assured for months at a time, often with a lifespan of decades. The fact that accelerators all over the world do exactly this is a tribute to human ingenuity – and to good magnetometers!
Metrolab is the only supplier of a complete rangeThe range of a probe is defined by the minimum and maximum field strength it can measure. On an instrument,... More of industrial-quality, high-precision magnetometers in the extremely demanding environment of particle accelerators. Our NMRNuclear Magnetic Resonance. A resonance phenomenon seen when you irradiate a sample in a magnetic field with an RF field.... More precisionPrecision is how closely multiple measurements will be clustered. Also called reproducibility or repeatability. In everyday speech, often confused with... More magnetometers are the ultimate instruments for calibrationDuring calibration, the instrument reading is compared to one or more references to verify its accuracy. The references themselves need... More, real-time field controlAn NMR-controlled field is one whose strength is monitored by NMR. As opposed to NMR-regulated. More, and dipole mappingThe process of measuring magnetic field intensity at many different points, in order to understand the structure of the field... More; whereas our digital integrators have entered history as the reference for more difficult magnet mappingThe process of measuring magnetic field intensity at many different points, in order to understand the structure of the field... More jobs. For two decades, acceleratorParticle accelerators were developed by physicists to study the elementary nature of matter. Nowadays, they are usually immense, highly international... More operators and particle physicists have relied on our equipment to get and stay operational.
Research & Development
R&D is in our DNA, we support your research and collaborate on new developments
AcceleratorParticle accelerators were developed by physicists to study the elementary nature of matter. Nowadays, they are usually immense, highly international... More operator
Metrolab systems support acceleratorParticle accelerators were developed by physicists to study the elementary nature of matter. Nowadays, they are usually immense, highly international... More operators in their daily and most advanced tasks.
Scientists
Metrolab systems also help particle physicists perform their experiments.
Technology
Related technologies
NMR / EPR
Metrolab is espacially know for their precisionPrecision is how closely multiple measurements will be clustered. Also called reproducibility or repeatability. In everyday speech, often confused with... More NMRNuclear Magnetic Resonance. A resonance phenomenon seen when you irradiate a sample in a magnetic field with an RF field.... More teslameters
Hall
The Hall effectA popular magnetometer technology, using a semiconductor plate. One injects current on one axis of the plate and measures a... More is the most common method for measuring medium to high fields, for a wide rangeThe range of a probe is defined by the minimum and maximum field strength it can measure. On an instrument,... More of applications
Fluxmeter
Metrolab has historically been especially known for its integrators, primarily in the acceleratorParticle accelerators were developed by physicists to study the elementary nature of matter. Nowadays, they are usually immense, highly international... More world.
Fluxgate
Fluxgate magnetometers evolved during the second World War as a means of detecting submarines