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Polymer optical interconnects - A scalable large-area panel processing approach

Uhlig, Steffen (author)
Linköpings universitet,Tekniska högskolan,Institutionen för teknik och naturvetenskap
Frohlich, L. (author)
Fröhlich, L., Fraunhofer-Institut für Silicatforschung, Würzburg D-97082, Germany
Chen, Miaoxiang (author)
Linköpings universitet,Tekniska högskolan,Institutionen för teknik och naturvetenskap
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Arndt-Staufenbiel, N. (author)
Fraunhofer-Institut für Zuverlässigkeit und Mikrointegration, Berlin D-13355, Germany
Lang, G. (author)
Fraunhofer-Institut für Zuverlässigkeit und Mikrointegration, Berlin D-13355, Germany
Schroder, H. (author)
Schröder, H., Fraunhofer-Institut für Zuverlässigkeit und Mikrointegration, Berlin D-13355, Germany
Houbertz, R. (author)
Fraunhofer-Institut für Silicatforschung, Würzburg D-97082, Germany
Popall, M. (author)
Fraunhofer-Institut für Silicatforschung, Würzburg D-97082, Germany
Robertsson, Mats (author)
Linköpings universitet,Tekniska högskolan,Institutionen för teknik och naturvetenskap
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 (creator_code:org_t)
2006
2006
English.
In: IEEE Transactions on Advanced Packaging. - 1521-3323 .- 1557-9980. ; 29:1, s. 158-170
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • A flexible approach to producing optical interconnects on 609.6 * 609.6 mm large-area panels is demonstrated. Stepwise projection patterning from 101.6 * 101.6 mm masks has generated optical waveguide patterns over the whole panel using large-area projection lithography equipment. The waveguide routing design allows optical waveguides on different 101.6 * 101.6 mm tiles to be interconnected. Four different waveguide connecting geometries in the border region between tiles have been fabricated and tested. Multimode waveguides from inorganic-organic hybrid polymers (ORMOCER) (cross section: = 50 µm * 10 µm) with refractive index step between core and cladding ?n = 0.01 were produced. The index step was adjusted by mixing two diffrent ORMOCER systems. The materials show good adhesion to numerous substrates, such as glass and silicon. Application concepts such as flexible manufacturing of optoelectrical hybrid backplanes with two-dimensional interconnect, a three-dimensional optical interconnect with optical vias, and a hybrid backplane with the optical interconnect in a strip-format on a separate plane right above the electrical plane are proposed. Promising new technologies are presented along with preliminary demonstrativ viability. © 2006 IEEE.

Keyword

Flexible manufacturing approach
Hybrid polymers
Large-area processing
Optical backplane
Optical interconnect review
ORMOCER
Polymer optical waveguide
Projection UV lithogaphy
TECHNOLOGY
TEKNIKVETENSKAP

Publication and Content Type

ref (subject category)
art (subject category)

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