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Laser Material Processing - 36 Pages

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Catalogue excerpts

Laser Material Processing 1

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2 02 Company Profile Qioptiq designs and manufactures photonic products precision manufacturing and responsive global and solutions, serving a wide range of markets and sourcing. Due to a series of acquisitions, Qioptiq applications in the medical and life sciences, industrial has an impressive history and pedigree, benefiting manufacturing, defense and aerospace, and research from the knowledge and experience of LINOS, and development sectors. Point Source, Rodenstock Precision Optics, Spindler & Hoyer, Gsänger, Optem, Pilkington, Avimo and The company is known for its high-quality standard others....

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Index Medical & Life Sciences Company Profile 02 – 03 Our Core Compentencies 04 – 05 LINOS F-Theta-Ronar Lenses Industrial Manufacturing Overview 06 – 09 355 nm 10 – 11 532 nm 12 – 13 1064 nm 14 – 15 Protective Glasses Insitu Inspection System Defense & Aerospace 16 17 LINOS Focus-Ronar Lenses 18 – 19 LINOS Beam Expanders Fixed Magnification 24 Variable Magnification 25 Motorized Magnification 26 Research & Development Overview 20 – 23 Systems 4x and 7x, 10x 27 Systems 15x, 16x/25x without/ with spatial filter 28 System 50x and 75x with spatial filter 29 System bm.x for UV range 30 – 31 System...

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04 4 Our Core Competencies: The Qioptiq Laseroptics and Lenses Benefit from our many years of experience in the Development development of optical systems for laser material • Development of processing! - Optical system design - Mechanical design Our broad selection of beam expansion systems, - Coating design LINOS F-Theta-Ronar lenses and LINOS Focus-Ronar • FEM-analysis including thermal effects lenses meets even the most stringent demands. • dvanced tolerance analysis and yield A This comprehensive Qioptiq range covers everything from fixed beam expanders to modular, variable and motorized...

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05 5 Manufacturing Quality Control • tate-of-the-art machinery for optics and S • utomated measurement equipment A mechanics production • evelopment of in-house processes for D precise assembly of optical elements • Fit mounting techniques for optical parameters (e.g. focal length) • easurements of the image M spot diameter (1/e2) for Gaussian illumination for different wavelengths • Active positioning and gluing technologies • UV to NIR transmission measurements • Cleanroom facilities • MTF testing at various wavelengths • oating process from conventional C • After sales service deposition up...

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LINOS F-Theta-Ronar Lenses LINOS F-Theta-Ronar Lenses Translating identical scan angles into identical scan paths An F-Theta-Ronar lens provides an image in accordance with the so-called F-Theta condition y‘ = f‘ x Θ For instance, a laser beam bundle is directed by means of movable mirrors and focused by an F-Theta-Ronar lens. The material surface to be processed, the object to be read or the film to be written is scanned in accordance with the scanning angle Theta resulting 06 from the deflection (by line or area). To avoid the curvature of field which normally occurs, the deflecting unit is...

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LINOS F-Theta-Ronar Lenses Utilization of a maximum allowable entrance beam diameter The primary technical data of the standard LINOS Because of the optically advantageous properties 10 to 15. F-Theta-Ronar lenses is listed in the tables on pages of lasers (monochromaticity and coherence), it is possible to obtain a diffraction-limited quality of It also gives details of the relevant diameters of the the image point when using high-grade F-Theta- entrance beam bundles and the position of the Ronar lenses. To utilize this property in practice, the deflecting elements. entrance pupil must be filled...

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LINOS F-Theta-Ronar Lenses Product range of LINOS F-Theta-Ronar lenses LINOS F-Theta-Rapid-Ronar lenses The product portfolio includes the standard F-Theta- effective scan lenses for high-speed galvo systems, Ronar lenses, telecentric F-Theta-Ronar lenses, complementing the existing well-known LINOS F-Theta Rapid-Ronar lenses and the new series of F-Theta-Ronar lens series. The focal lengths 63 mm, F-Theta-Power-Ronar 100 mm, 160 mm and 254 mm allow diagonal scan and F-Theta-Energy-Ronar lenses. The F-Theta-Rapid-Ronar lenses are small, cost lengths of 41 mm, 62 mm, 100 mm and 157 mm respectively....

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LINOS F-Theta-Ronar Lenses Customized solutions allow optimization Qioptiq is the laser industry‘s first contact to talk about exciting projects such as: lenses for ultraviolet radiation, high power versions, lenses for USP lasers and special applications like micro machining. As a matter of course Qioptiq answers all technical questions with the help the world leading optical designers. Qioptiq has developed and produced a number of customized F-Theta-Ronar lenses for the Telecentric LINOS F-Theta-Ronar lenses most varied application areas. Based on this know- If a non-flat surface is scanned,...

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LINOS F-Theta-Ronar Lenses LINOS F-Theta-Ronar 355 nm The following is valid for the overview​tables below: • he entrance beam diameter (beam-Ø)​ T refers to the intensity 1/e2 at Gaussian​ illumination. The image spot diameter​ (spot-Ø) refers to the intensity 1/e2 at​ Gaussian illumination. It can be​calculated by the formula: 2y‘: scan length or diagonal [mm] EFL: focal length [mm] 2Θ: overall scan angle [°] π/180: conversion factor into radians • he listed F-Theta-Ronar lenses​ fulfil T the F-Theta-condition better​ than 0.1% except for a few versions.​ These lenses, which have a larger scan​...

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LINOS F-Theta-Ronar Lenses 11 Maximum scan field [mm2] Overall scan angle [°] ±Θmax Entra​ ce​beam​ n diame​ er​[mm] ​ t Øbeam Image spot diameter (1/e2) for​Gaussian​ illumination [μm] Mirror distances [mm] m1/m2 Screw thread or lens diameter Protective glass 99x99 ±25.0 7 15 12/16 M85x1 PG3 99x99 ±25.0 7 15 12/16 M85x1 PG4 170x170 ±27.3 10 17 13/30 M85x1 PG11 Subject to technical changes

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LINOS F-Theta-Ronar Lenses LINOS F-Theta-Ronar 532 nm The following is valid for the overview​​​tables below: • he entrance beam diameter (beam-Ø)​​​ T refers to the intensity 1/e2 at Gaussian​​​ illumination. The image spot diameter​​​ (spot-Ø) refers to the intensity 1/e2 at​​​ Gaussian illumination. It can be​​​calculated by the formula: 2y‘: scan length or diagonal [mm] EFL: focal length [mm] 2Θ: overall scan angle [°] π/180: conversion factor into radians • he listed F-Theta-Ronar lenses​​​ fulfil T the F-Theta-condition better​​​ than 0.1% except for a few versions.​​​ These lenses, which...

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