DocumentCode
2165925
Title
An innovative flexible and accurate packaging technique suited to fabricate low cost micro optoelectronic modules
Author
Scussat, M. ; Würsch, A. ; Clavel, R. ; Salathé, R.P.
Author_Institution
Ecole Polytech. Fed. de Lausanne, Switzerland
fYear
2000
fDate
2000
Firstpage
26
Lastpage
32
Abstract
Several groups are presently investigating the opportunity to fabricate miniaturized optical devices characterized by high attachment precision. An automated surface mounted technique based on standardized supports of 10×10×4 mm3 size and on active in-situ alignment of the optical elements had been developed in our laboratories. This surface mounted device (SMD) technique is well suited for a flexible production of small optical devices and it allows a two dimensional layout. It is limited in precision to ±1 μm and it is not adapted for further miniaturization. It is briefly described in this paper. Here, we mainly report on a new automated and low cost optical-SMD packaging technique, named “Three Dimensional Miniaturized Optical Surface Mounted Device (TRIMO-SMD)”, based on a in-situ active alignment of standardized 2.5×3.5×1 mm3 elements by a laser soldering reflow process. A sub micron alignment precision is achieved and a attachment strength of -20 N is guaranteed. The technique offers the potential of 3 dimensional layouts and integration on the same layout of electronic and optical elements
Keywords
micro-optics; modules; surface mount technology; TRIMO-SMD; active alignment; attachment strength; automation; fabrication; laser soldering reflow; micro optoelectronic module; packaging technology; three-dimensional miniaturized optical surface mounted device; Costs; Diode lasers; Integrated optics; Laser beams; Optical devices; Optical interconnections; Optical pumping; Optical resonators; Optical sensors; Packaging;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components & Technology Conference, 2000. 2000 Proceedings. 50th
Conference_Location
Las Vegas, NV
Print_ISBN
0-7803-5908-9
Type
conf
DOI
10.1109/ECTC.2000.853111
Filename
853111
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