DocumentCode :
17303
Title :
Development of Versatile Polymer Waveguide Flex Technology for Use in Optical Interconnects
Author :
Dangel, Roger ; Horst, Folkert ; Jubin, Daniel ; Meier, Norbert ; Weiss, Jonas ; Offrein, Bert Jan ; Swatowski, Brandon W. ; Amb, Chad M. ; Deshazer, David J. ; Weidner, W. Ken
Author_Institution :
IBM Res.-Zurich Lab., Rueschlikon, Switzerland
Volume :
31
Issue :
24
fYear :
2013
fDate :
Dec.15, 2013
Firstpage :
3915
Lastpage :
3926
Abstract :
We report on the implementation of novel flexible polymer waveguide interconnects. They are based on newly developed mechanically flexible low-loss silicone waveguides. In addition to meeting the generic requirements of rigid waveguide interconnects, several flex-material challenges were mastered: a) mechanical flexibility permitting waveguide flexing down to radii of 1.0 mm without cracking; b) minimization of waveguide curling induced by the CTE mismatch between flex substrates and polymer layers to enable assembly and connectorization; c) greatly improved cladding adhesion on standard PCB flex substrates, such as polyimide; and d) high environmental stability despite the reduced polymer cross-linking required for better mechanical flexibility. The new waveguides exhibit excellent stability in damp heat (2000 h in 85°C/85% rH) and under thermal shock (500 cycles from -40° to +120°C), and lead-free solder reflow up to 260°C. Using the newly engineered “Dow Corning WG-1017 Optical Waveguide Clad Dev Sample” and the established “Dow Corning WG-1010 Optical Waveguide Core”, we were able to develop a manufacturing process suitable for large areas and offering high process control and stability to produce waveguides having optical loss values of less than 0.05 dB/cm at 850 nm VCSEL wavelength and fulfilling requirements (a) to (d) above. We describe this manufacturing process and how we have overcome the material challenges mentioned. Furthermore, we present characterization and manufacturing results, show demonstrators, and outline the potential of flexible waveguides as versatile electro-optic assembly platform.
Keywords :
electro-optical devices; optical interconnections; optical losses; optical polymers; optical waveguides; silicon; PCB flex substrates; cladding adhesion; electro-optic assembly platform; flex-material challenges; mechanically flexible low-loss silicone waveguides; optical interconnects; optical waveguide clad dev sample; versatile polymer waveguide flex technology; Coatings; Flexible printed circuits; Manufacturing; Optical polymers; Optical waveguides; Substrates; Optical interconnects; optical losses; optical polymers; optical waveguides; reliability;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2282499
Filename :
6605503
Link To Document :
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