Application Reports

We show you examples of how our OWIS Components can be assembled into alignment and handling systems and how we can support you with OWIS Engineering.

OWIS positioning systems in digital-holographic 3D measurement technology

The digital-holographic 3D measurement technology enables fast and at the same time highly precise measurement of the workpiece surface. To position the workpieces, Fraunhofer Institute for Physical Measurement Techniques IPM uses two LINPOS linear stages with direct drive.

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Large area 3D surface inspection with white light interferometry

For the Gesellschaft für Bild- und Signalverarbeitung (GBS) mbH, who are active in optical metrology, we have developed a customer-specific gantry system. This system enables a precise and accurate approach of individual measuring points as well as scanning of the entire surface in a working space of 1,250 mm x 550 mm x 45 mm.

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Setup for the determination of atomic distances

At the TU Berlin, Prof. Dr. Birgit Kanngiesser‘s “Analytical X-ray Physics“ group succeeded in developing a method that efficiently uses the light of an X-ray tube and directs it to a detector with little loss of brilliance. This allows measurements for the determination of atomic distances to be carried out even in smaller Caboratories. OWIS positioning systems simplify the handling decisively.

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Solid phase fluoro spectrometer

The fluorescence spectroscopy uses fluorescence phenomena for the analysis of substances. It differs from several other spectroscopies as it measures the emission instead of the absorption of fluorescent radiation. The research institute „wfk – Cleaning Technology Institute e.V.“ in Krefeld, Germany, for example examines dirt on fabric surfaces in order to identify fluorescent-marked bacteria. This procedure is used for the evaluation of a successful hygiene of a washing process.

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Line laser alignment

A perfectly aligned line laser shall project a homogeneous line. The laser manufacturers are facing various challenges such as straightness of the line, a homogeneous distribution of intensity as well as the orientation of the line in regards to the housing. In order to achieve the goal of a homogeneous line, an anamorphic refractive optic needs to be aligned precisely to a collimated beam of a laser module.

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The FXE instrument

Femtosecond spectroscopy with X-rays is one of the tasks of the European XFEL, the 3.4 km long X-ray laser located in the Hamburg area. The FXE Group (Femtosecond X-Ray Experiments) carries out time-resolved studies on the dynamics of solid objects, fluids and gases. For this purpose, an X-ray emissions spectrometer was installed, which combines 16 single diffraction crystals.

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