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SHOW PREVIEW: SPIE PHOTONICS WEST


LASER COMPONENTS will feature its coated laser optics in the 2μm wavelength range with high damage thresholds for high‐power Ho:YAG and Tm:YAG lasers. The company also provides a range of optics and photonic components for industrial lasers, including laser safety


for 3D printing and other industrial, medical, scientific and laser display applications. The laser output power can be scalable with multiple 10W fibre-coupled blue diode modules. www.frlaserco.com


The BeamSquared system being shown by OPHIR-SPIRICON is a compact, fully automated tool for measuring laser beam quality. The system is based on the company’s Ultracal baseline correction algorithm


equipment and beam shapers. It has recently introduced a collimated beam shaper module, which extends the working distance of the laser while maintaining a uniform intensity beam. The shape remains well defined with sharp edges and the option of being round, square, rectangular, elliptical, line or any other shape that the user requires. This is ideal for industrial surface treatment, where the working surface can be located at a wide variety of distances from the laser delivery system. www.lasercomponents.co.uk


that helped establish the ISO 11146-3 standard for beam measurement accuracy. BeamSquared delivers accuracy,


robustness, and reliability for continuous-use applications in manufacturing, science, and research and development. The system measures the propagation characteristics of both CW and pulsed lasers in UV, NIR and telecom wavelengths in less than one minute in its automated mode. Manual mode is


z adjusters. The achieved identical dynamics of all three axes now opens up entirely new processing strategies and opportunities. Furthermore, this new technology


available for CO2 lasers and


wavelengths greater than NIR. The system can measure waist diameters, full angle divergence, waist locations, Rayleigh lengths, M2 or K and BPP factors, astigmatism, and asymmetry. www.ophiropt.com


SCANLAB’S new z-axis system, which will be on display at the show, extends 2D scan heads to a 3D scan system. Based on galvanometer technology, the fully reflective design allows the new z-axis to meet the dynamics of the 2D scan head. The new system concept enables


the focus to be adjusted by moving a low-inertia mirror, enhancing the performance in a way that outperforms conventional lens-based


uses only reflective optical components, enabling reduced thermal lensing effects and the use of different wavelengths without dispersion. The new z-axis system can be combined perfectly with Scanlab’s


IntelliScan and HurryScan 2D scan system families. Typical applications for the new z-axis are micromachining, marking curved surfaces, deep engraving and ultrafast 3D processing. www.scanlab.de


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