Presentation 2007-08-23
Development of Chip-to-Chip Optical Interconnection Technologies for High Performance Computers
Mikio ODA, Hikaru KOUTA,
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Abstract(in English) Electrical signals on substrates became faster as LSI signals became faster. Optical signals, which can transmit faster data than electrical signals, are necessary for LSI-to-LSI interconnection. Because there are limitations of high-speed and high-density electrical signals. It is important that LSI closely cooperates with optical interconnection technologies and become a package including optical interfaces. In order to realize LSI-to-LSI optical transmission, we developed super-high-density substrates and packaging technologies for optical modules. We succeeded to transmit 10Gbps optical signals between 10Gbps LSIs.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) High performance LSI / Limitation of high speed and density of electrical circuits / LSI-to-LSI interconnection by optical signals / Super-high-density substrate for optical modules / 10Gbps optical transmission
Paper # EMD2007-37,CPM2007-58,OPE2007-75,LQE2007-38
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Conference Information
Committee LQE
Conference Date 2007/8/16(1days)
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Registration To Lasers and Quantum Electronics (LQE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Development of Chip-to-Chip Optical Interconnection Technologies for High Performance Computers
Sub Title (in English)
Keyword(1) High performance LSI
Keyword(2) Limitation of high speed and density of electrical circuits
Keyword(3) LSI-to-LSI interconnection by optical signals
Keyword(4) Super-high-density substrate for optical modules
Keyword(5) 10Gbps optical transmission
1st Author's Name Mikio ODA
1st Author's Affiliation Nano Electronics Research Laboratories, NEC Corporation()
2nd Author's Name Hikaru KOUTA
2nd Author's Affiliation Nano Electronics Research Laboratories, NEC Corporation
Date 2007-08-23
Paper # EMD2007-37,CPM2007-58,OPE2007-75,LQE2007-38
Volume (vol) vol.107
Number (no) 199
Page pp.pp.-
#Pages 4
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