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Fraunhofer Institute for Silicate Research ISC

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  最終更新日:2023年02月27日

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For optical and opto-electronic applications, Fraunhofer ISC develops and licenses superior optical polymers and corresponding process techniques. Thereby, µm-structures, such as micro-optical components, wave guides, (freeform-) lenses and gratings but also illumination optics can be created. Additive process techniques are used in order to generate optical sub-µm resolution structures but also macroscopic elements of several cm with a high optical quality. The special materials developed at Fraunhofer ISC are thermally stable hybrid polymers (ORMOCER®) and composites as well as wet-processed inorganic layers. By this set of materials, a wide range of refractive indices and transmission properties can be addressed, also in combination with various electrical, mechanical, thermal or biological specifications. The objective of the R&D service of Fraunhofer ISC is the increasing of quality at lower cost using sustainable technologies.

Fraunhofer Institute for Silicate Research ISC 取り扱い製品

Cm-scale array of complex optical structure with highly accurate µ-features

Cm-scale array of complex optical structure with highly accurate µ-features

 

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Lenses fabricated on CMOS processed plasmonic color-sensing detectors to reduce dependency on incident angle

Lenses fabricated on CMOS processed plasmonic color-sensing detectors to reduce dependency on incident angle

 

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Outcoupling element made of 15.000 individual prisms written via Two-Photon-Polymerization technique in inorganic-organic hybrid polymer

Outcoupling element made of 15.000 individual prisms written via Two-Photon-Polymerization technique in inorganic-organic hybrid polymer

 

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Optical element as freeform projector - processed by 3D print (ink-jet) (in cooperation with Fraunhofer IOF)

Optical element as freeform projector - processed by 3D print (ink-jet) (in cooperation with Fraunhofer IOF)

 

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Organic-free 3-dimensional µ-structure generated by Two-Photon-Polymerization

Organic-free 3-dimensional µ-structure generated by Two-Photon-Polymerization

 

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