Presentation 2012-07-26
Power Budget Analysis of GI-Core Polymer Optical Waveguide Link for Optical Printed Circuit Board
Takaaki ISHIGURE, Sho YAKABE, Ryota ISHIGURO,
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Abstract(in English) Optical interconnect has been highly anticipated as a promising technology to realize high-performance computing systems (HPCs) with high-speed and low-power-consumption. For the data transmission between boards and between racks in current HPCs, multimode optical fiber (MMF) based links have been already installed. The next technical issue is how to realize on-board optical interconnects, by which high-speed optical signals are distributed closer to the processing chips on-board. In this paper, we focus on polymer optical waveguide based links for on-board interconnects, and discuss their link power budget in order to support a data rate of 20Gb/s and beyond. Specifically, we demonstrate that GI-core polymer waveguides we have been promoting exhibit a link power budget advantage of 3dB and higher compared to conventional SI-core polymer waveguides.
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Keyword(in English) Polymer Optical Waveguide / On-board Optical Interconnect / Coupling Loss / Link Power Budget
Paper # MW2012-40,OPE2012-33,EST2012-22,MWP2012-21
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Committee EST
Conference Date 2012/7/19(1days)
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Registration To Electronic Simulation Technology (EST)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Power Budget Analysis of GI-Core Polymer Optical Waveguide Link for Optical Printed Circuit Board
Sub Title (in English)
Keyword(1) Polymer Optical Waveguide
Keyword(2) On-board Optical Interconnect
Keyword(3) Coupling Loss
Keyword(4) Link Power Budget
1st Author's Name Takaaki ISHIGURE
1st Author's Affiliation Faculty of Science and Technology, Keio University()
2nd Author's Name Sho YAKABE
2nd Author's Affiliation Graduate School of Science and Technology, Keio University
3rd Author's Name Ryota ISHIGURO
3rd Author's Affiliation Graduate School of Science and Technology, Keio University
Date 2012-07-26
Paper # MW2012-40,OPE2012-33,EST2012-22,MWP2012-21
Volume (vol) vol.112
Number (no) 157
Page pp.pp.-
#Pages 6
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