NexView NX2 profilometers are the most powerful next-generation interferometric systems with a unique combination of measurement technologies for large measurement range and speed while maintaining excellent measurement repeatability. CSI(Coherence Scanning Interferometry) and PSI (Phase Shifting Interferometry) modes are uniquely combined so that the user gains the advantage of both approaches simultaneously, eliminating the need to choose between one or the other surface measurement method.
In addition, this optical profilometer, combined with sophisticated software analysis, allows measurement of virtually any surface, including transparent multilayers, coarse and highly polished reflective metal layers, highly scattering surfaces, and many others. All without the need to select a measurement mode. With unique patented technology, simultaneously measure the profile and thickness of thin transparent layers at the same time as measuring the substrate profile.
The NexView NX2 profilometer can be fully automated with a pre-programmed sequence of commands, which can be used for repeated part measurements during quality control or for measuring multiple sample locations in a single measurement. At the touch of a button, a surface profile of the object to be measured can be obtained very quickly and with unrivalled accuracy.
The profiler meets the parameters of the ISO 25178 standard for surface measurements and is also vibration-resistant, so it can be used for measurements in virtually any environment. It measures with sub-nanometer accuracy regardless of the field of view. This non-contact roughness tester enables, among other things, the determination of ISO-compliant roughness, flatness, steppedness, steepness of slope, for height ranges from tenths of a nanometer up to 20 mm.
The supplied Mx™ software allows control of the profilometer and subsequent advanced analysis of the measured data. The results obtained can then be visualized using interactive 3D maps and any deviations from the desired results can be evaluated.