Presentation | 2012-02-23 Technology Development for Energy Efficient Large Scale Edge Router : NEDO Project on "Next-generation High-efficiency Network Device" Shinji Tsuji, Kazunori Shinoda, Yong Lee, Hiroki Yamashita, Kazuhiko Kurata, Masaaki Nido, Shigeyuki Yanagimachi, Yoshinori Watanabe, Mutsuo Hidaka, Hideo Suzuki, Masashige Ishizaka, Shinji Nishimura, Naoya Nishimura, Tohru Asami, |
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PDF Download Page | PDF download Page Link |
Abstract(in Japanese) | (See Japanese page) |
Abstract(in English) | To meet the coming demands in explosive increase in data traffic in Internet, high speed signal communications beyond 20Gbps are required for network equipments. We have focused on future carrier-class edge routers, and have developed optical backplane technologies applicable to the router ranging from component level to system level. Technology achievements including compact 100 Gbps transceiver, related device technologies, application model, scalable technology, and high speed signal measurement system are introduced in this paper. |
Keyword(in Japanese) | (See Japanese page) |
Keyword(in English) | High Speed Router / Energy Saving / Optical Backplane / CMOS / Semiconductor Laser / Hybrid Integration / Super Conductor Circuits |
Paper # | IA2011-69 |
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Committee | IA |
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Conference Date | 2012/2/16(1days) |
Place (in Japanese) | (See Japanese page) |
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Topics (in Japanese) | (See Japanese page) |
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Paper Information | |
Registration To | Internet Architecture(IA) |
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Language | JPN |
Title (in Japanese) | (See Japanese page) |
Sub Title (in Japanese) | (See Japanese page) |
Title (in English) | Technology Development for Energy Efficient Large Scale Edge Router : NEDO Project on "Next-generation High-efficiency Network Device" |
Sub Title (in English) | |
Keyword(1) | High Speed Router |
Keyword(2) | Energy Saving |
Keyword(3) | Optical Backplane |
Keyword(4) | CMOS |
Keyword(5) | Semiconductor Laser |
Keyword(6) | Hybrid Integration |
Keyword(7) | Super Conductor Circuits |
1st Author's Name | Shinji Tsuji |
1st Author's Affiliation | Photonics Electronics Technology Research Association:Hitachi() |
2nd Author's Name | Kazunori Shinoda |
2nd Author's Affiliation | Photonics Electronics Technology Research Association:Hitachi |
3rd Author's Name | Yong Lee |
3rd Author's Affiliation | Photonics Electronics Technology Research Association:Hitachi |
4th Author's Name | Hiroki Yamashita |
4th Author's Affiliation | Photonics Electronics Technology Research Association:Hitachi |
5th Author's Name | Kazuhiko Kurata |
5th Author's Affiliation | Photonics Electronics Technology Research Association:NEC |
6th Author's Name | Masaaki Nido |
6th Author's Affiliation | Photonics Electronics Technology Research Association:NEC |
7th Author's Name | Shigeyuki Yanagimachi |
7th Author's Affiliation | Photonics Electronics Technology Research Association:NEC |
8th Author's Name | Yoshinori Watanabe |
8th Author's Affiliation | Alaxala Networks |
9th Author's Name | Mutsuo Hidaka |
9th Author's Affiliation | International Superconductive Research Center |
10th Author's Name | Hideo Suzuki |
10th Author's Affiliation | International Superconductive Research Center |
11th Author's Name | Masashige Ishizaka |
11th Author's Affiliation | Photonics Electronics Technology Research Association |
12th Author's Name | Shinji Nishimura |
12th Author's Affiliation | Photonics Electronics Technology Research Association:Hitachi |
13th Author's Name | Naoya Nishimura |
13th Author's Affiliation | Alaxala Networks |
14th Author's Name | Tohru Asami |
14th Author's Affiliation | Faculty of Engineering, The University of Tokyo |
Date | 2012-02-23 |
Paper # | IA2011-69 |
Volume (vol) | vol.111 |
Number (no) | 444 |
Page | pp.pp.- |
#Pages | 3 |
Date of Issue |