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Optical Interconnects at the Chip and Board Level: Challenges and Solutions DAVID V. PLANT, MEMBER, IEEE, AND ANDREW G. KIRK, MEMBER, IEEE Invited Paper This paper discusses short-distance optical interconnects
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Document Date: 2012-08-13 13:31:52


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File Size: 427,05 KB

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City

Pittsburgh / F. Waveguide / /

Company

Perot / C. Macrooptical Systems / Accelight Networks / OPTICALLY INTERCONNECTED ELECTRONICS / /

Country

United States / Canada / /

Currency

USD / /

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Event

Product Issues / /

Facility

D. V. Plant / PLANT AND KIRK / cm square / Solutions DAVID V. PLANT / Canadian Institute / McGill University / /

IndustryTerm

chip-to-chip / optical and optomechanical hardware / microchannel systems / symmetric telecentric imaging system / macrooptical systems / communication systems / clustered optical systems / silicon driver chip / parallel optical interconnection systems / optical systems / candidate technology / tolerant optical systems / particular applications / free-space demonstration systems / software packages / parallel optical interconnect technology / large digital systems / rigid free-space optical systems / metal / metal layer / driver chip / optoelectronic devices / waveguide-based solutions / possible solution / in situ alignment sensing systems / multistage free-space optical systems / optomechanical technologies / optoelectronic chip / adjacent electronic devices / demonstrator systems / microoptical systems / nonluminescent optoelectronic devices / interconnect applications / distributed digital systems / large and complex systems / medical imaging applications / /

Movie

D. V / /

MusicAlbum

Monte Carlo / /

Organization

Canadian Institute for Telecommunications Research / Department of Electrical and Computer Engineering / McGill University / Montreal / /

Person

ANDREW G. KIRK / /

Position

driver / designer / Nortel/NSERC Industrial Research Chair / /

Product

parts / /

ProvinceOrState

Pennsylvania / /

Technology

semiconductor / parallel optical interconnect technology / optoelectronic-VLSI technologies / integrated circuits / optical fiber / Optoelectronic-VLSI technology / laser / lasers / optoelectronic chip / silicon driver chip / underlying CMOS driver chip / OPTICAL INTERCONNECTS AT CHIP / optoelectronics / IrDA protocol / candidate technology / four QCSE/PIN-based optoelectronic-VLSI chips / simulation / adjacent CMOS chip / integrated circuit / medical imaging / /

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