Presentation 2009-10-30
Development of Optical module using Optoelectronic Ferrule
Wataru SAKURAI, Tooru Nakanishi, Mitsuaki TAMURA,
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Abstract(in English) With the rapid expansion of today's digitally-networked information society, information electronic equipment is increasingly required to process large-volume information at high speed. Recently, the optical interconnection technology is getting a lot of attention as a mean to achieve high-speed transmission. The authors have developed a new type of optoelectronic ferrule for application to optical interconnection modules. The optoelectronic ferrule is fabricated by integrally molding a minute lead frame with the electrode at the end face of a plastic multi-fiber ferrule. The use of the optoelectronic ferrule allows the parts count to be reduced and eliminates the need for precise core alignment, thus making it possible to manufacture photoelectrical conversion modules at lower costs. We also developed 4-ch optical module using the optoelectronic ferrules for inter-board and on-board interconnections. Furthermore, we successfully demonstrated transmission of HD movies as an application of the optical module.
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Keyword(in English) Optical interconnection / optical modules / optoelectronic ferrule
Paper # OFT2009-45
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Conference Information
Committee OFT
Conference Date 2009/10/22(1days)
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Paper Information
Registration To Optical Fiber Technology (OFT)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Development of Optical module using Optoelectronic Ferrule
Sub Title (in English)
Keyword(1) Optical interconnection
Keyword(2) optical modules
Keyword(3) optoelectronic ferrule
1st Author's Name Wataru SAKURAI
1st Author's Affiliation Sumitomo Electric Industries, LTD. Optical Communications R & D Department()
2nd Author's Name Tooru Nakanishi
2nd Author's Affiliation Sumitomo Electric Industries, LTD. Optical Communications R & D Department
3rd Author's Name Mitsuaki TAMURA
3rd Author's Affiliation Sumitomo Electric Industries, LTD. Optical Communications R & D Department
Date 2009-10-30
Paper # OFT2009-45
Volume (vol) vol.109
Number (no) 255
Page pp.pp.-
#Pages 4
Date of Issue