"/>

      亚洲аv天堂无码,久久aⅴ无码一区二区三区,96免费精品视频在线观看,国产2021精品视频免费播放,国产喷水在线观看,奇米影视久久777中文字幕 ,日韩在线免费,91spa国产无码

      New method may solve bottleneck of microelectronics: researchers

      Source: Xinhua    2018-04-23 07:34:16

      LOS ANGELES, April 22 (Xinhua) -- Researchers from Boston University, Massachusetts Institute of Technology, the University of California Berkeley and University of Colorado Boulder have developed a new method to fabricate silicon chips that can communicate with light and are no more expensive than current chip technology, according to the study, published in the latest issue of Nature.

      The electrical signaling bottleneck between current microelectronic chips has left light communication as one of the only options left for further technological progress. The traditional method of data transfer-electrical wires-has a limit on how fast and how far it can transfer data. It also uses a lot of power and generates heat.

      With the relentless demand for higher performance and lower power in electronics, these limits have been reached.

      However, according to the new study, which is the culmination of a several-year-long project funded by the U.S. Defense Advanced Research Project Agency, the new microchip technology capable of optically transferring data could solve the severe bottleneck in current devices by speeding data transfer and reducing energy consumption by orders of magnitude.

      "Instead of a single wire carrying 10 to 100 gigabits per second, you can have a single optical fiber carrying 10 to 20 terabits per second--so about a thousand times more in the same footprint," researcher Milos Popovic from Boston University was quoted as saying in a press release.

      In the new paper, the researchers present a manufacturing solution applicable to even the most commercially widespread chips based on bulk silicon, by introducing a set of new material layers in the photonic processing portion of the silicon chip. They demonstrate that this change allows optical communication with no negative impact on electronics.

      "By carefully investigating and optimizing the properties of the additional material layers for photonic devices, we managed to demonstrate state-of-the-art system-level performance in terms of bandwidth density and energy consumption while starting from a much less expensive process compared to competing technologies," said co-first author of the paper Fabio Pavanello.

      The new platform, which brings photonics to state-of-the-art bulk silicon microelectronic chips, promises faster and more energy efficient communication that could vastly improve computing and mobile devices, according to the study.

      "For the most advanced current state-of-the-art and future semiconductor manufacturing technologies with electronic transistor dimensions below 20nm, there is no other way to integrate photonics than this approach," concluded associate professor Vladimir Stojanovic of UC Berkeley, whose team led some of the work.

      Editor: Liangyu
      Related News
      Xinhuanet

      New method may solve bottleneck of microelectronics: researchers

      Source: Xinhua 2018-04-23 07:34:16

      LOS ANGELES, April 22 (Xinhua) -- Researchers from Boston University, Massachusetts Institute of Technology, the University of California Berkeley and University of Colorado Boulder have developed a new method to fabricate silicon chips that can communicate with light and are no more expensive than current chip technology, according to the study, published in the latest issue of Nature.

      The electrical signaling bottleneck between current microelectronic chips has left light communication as one of the only options left for further technological progress. The traditional method of data transfer-electrical wires-has a limit on how fast and how far it can transfer data. It also uses a lot of power and generates heat.

      With the relentless demand for higher performance and lower power in electronics, these limits have been reached.

      However, according to the new study, which is the culmination of a several-year-long project funded by the U.S. Defense Advanced Research Project Agency, the new microchip technology capable of optically transferring data could solve the severe bottleneck in current devices by speeding data transfer and reducing energy consumption by orders of magnitude.

      "Instead of a single wire carrying 10 to 100 gigabits per second, you can have a single optical fiber carrying 10 to 20 terabits per second--so about a thousand times more in the same footprint," researcher Milos Popovic from Boston University was quoted as saying in a press release.

      In the new paper, the researchers present a manufacturing solution applicable to even the most commercially widespread chips based on bulk silicon, by introducing a set of new material layers in the photonic processing portion of the silicon chip. They demonstrate that this change allows optical communication with no negative impact on electronics.

      "By carefully investigating and optimizing the properties of the additional material layers for photonic devices, we managed to demonstrate state-of-the-art system-level performance in terms of bandwidth density and energy consumption while starting from a much less expensive process compared to competing technologies," said co-first author of the paper Fabio Pavanello.

      The new platform, which brings photonics to state-of-the-art bulk silicon microelectronic chips, promises faster and more energy efficient communication that could vastly improve computing and mobile devices, according to the study.

      "For the most advanced current state-of-the-art and future semiconductor manufacturing technologies with electronic transistor dimensions below 20nm, there is no other way to integrate photonics than this approach," concluded associate professor Vladimir Stojanovic of UC Berkeley, whose team led some of the work.

      [Editor: huaxia]
      010020070750000000000000011100001371294411
      主站蜘蛛池模板: 欧产日产国产精品精品| 色婷婷丁香| 小12箩利洗澡无码视频网站| 91精品国产高跟肉丝袜在线| 国内极度色诱视频网站| 嫩草院一区二区乱码| 亚洲av在线播放观看| 手机看片AV永久免费无码| 久久国产A∨一二三| 午夜影视啪啪免费体验区入口| 手机AV片在线| 2020精品国产自在现线看| 亚洲AV乱码一区二区三区香蕉| 一区二区三区在线视频在线观看| 亚洲国产黄色一区二区三区| 久久久久成人精品免费播放| 专干老肥熟女视频网站| 香蕉久久久久久久AV网站| 在线亚洲精品国产成人二区| 三级黄色片一区二区三区 | 亚洲色拍拍噜噜噜最新网站| 国产福利视频一区二区在线| 国产高清在线观看av片麻豆| 香蕉久久av男人一区二区| 亚洲av美女在线播放啊| 亚洲AV综合色区无码一区| 国产在线视频自拍| 亚洲精品美女久久久久99| 日韩精品中文字幕综合| 91白浆在线视频| 久久精品国产亚洲5555| 人妻猛烈进入中文字幕| 激情人妻中出中文字幕一区| 国产成人精品日本亚洲999| 国产成人美女AV| 午夜福利不卡无码视频| 精品视频在线观看免费无码| 日韩少妇人妻vs中文字幕| 久久黄色免费偷拍尿尿| 瓮安县| 中文毛片无遮挡高潮|