LSI On-Chip Optical Interconnection with Si Nano-Photonics
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概要
- 論文の詳細を見る
LSI on-chip optical interconnections are discussed from the viewpoint of a comparison between optical and electrical interconnections. Based on a practical prediction of our optical device development, optical interconnects will have an advantage over electrical interconnects within a chip that has an interconnect length less than about 10mm at the hp32-22nm technology node. Fundamental optical devices and components used in interconnections have also been introduced that are small enough to be placed on top of a Si LSI and that can be fabricated using methods compatible with CMOS processes. A SiON waveguide showed a low propagation loss around 0.3dB/cm at a wavelength of 850nm, and excellent branching characteristics were achieved for MMI (multimode interference) branch structures. A Si nano-photodiode showed highly enhanced speed and efficiency with a surface plasmon antenna. By combining our Si nano-photonic devices with the advanced TIA-less optical clock distribution circuits, clock distribution above 10GHz can be achieved with a small footprint on an LSI chip.
- (社)電子情報通信学会の論文
著者
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Tsuchizawa Tai
Ntt Microsystem Integration Labs.
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Ushida Jun
Mirai-selete
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NOSE Koichi
MIRAI-Selete
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KINOSHITA Masao
MIRAI-Selete
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MIZUNO Masayuki
MIRAI-Selete
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WATANABE Toshifumi
NTT Microsystem Integration Labs.
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YAMADA Koji
NTT Microsystem Integration Labs.
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ITABASHI Seiichi
NTT Microsystem Integration Labs.
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FUJIKATA Junichi
Nano Electronics Res. Labs., NEC Corp.
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NISHI Kenichi
Nano Electronics Res. Labs., NEC Corp.
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GOMYO Akiko
Nano Electronics Res. Labs., NEC Corp.
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USHIDA Jun
Nano Electronics Res. Labs., NEC Corp.
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ISHI Tsutomu
Nano Electronics Res. Labs., NEC Corp.
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YUKAWA Hiroaki
MIRAI-Selete
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OKAMOTO Daisuke
Nano Electronics Res. Labs., NEC Corp.
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NAKADA Masafumi
Nano Electronics Res. Labs., NEC Corp.
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SHIMIZU Takanori
Nano Electronics Res. Labs., NEC Corp.
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OHASHI Keishi
Nano Electronics Res. Labs., NEC Corp.
関連論文
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