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CAREER: Circuit and System Techniques for High-Throughput, Energy-efficient Silicon-Photonic Interconnects in Advanced VLSI Systems

CAREER: Circuit and System Techniques for High-Throughput, Energy-efficient Silicon-Photonic Interconnects in Advanced VLSI Systems
职业:先进 VLSI 系统中高吞吐量、高能效硅光子互连的电路和系统技术
批准号:
0844994
负责人:
Rajeev Ram
金额:
$40.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-15 至 2015-05-31

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中文摘要
翻译
该奖项是根据2009年美国复苏和再投资法案(公法111-5)资助的。这项研究的目标是克服有限的带宽密度和电气互连的能量缩放,这导致了先进的集成系统,如众核处理器的性能缩放放缓。该方法是创建可扩展的和强大的收发器电路与集成单片硅光子提供无缝的光学片上和片外通信具有极高的能源效率和带宽density.Intellectual优点:这项研究改变了传统的研究和设计方法,通过开发新的通信和电路技术,通过紧密的相互作用与光子器件的属性。提出的解决方案包括用于节能非线性均衡和调制的鲁棒、高度数字化电路和系统技术,以及高灵敏度光学数据和时钟接收器,以及用于温度控制、测试和表征的电路。更广泛的影响:这项研究将使数据中心和互联网路由器的性能持续扩展,并通过保留大量投资和将光子技术引入先进的CMOS代工厂,为国民经济带来重大利益。通过麻省理工学院的项目,如Interphase Pre-UROP,Women Technology Program和K-12 Educational Outreach Summer Program,该项目将吸引女性和少数民族本科生和高中学生以及教师参与工程实验研究和设计的多学科方面。一个新开发的通信电路和系统设计研究生课程将适应高层次的本科生和入门级本科班的共同发展。这些课程、设计工具和项目将通过麻省理工学院的开放课程项目在互联网上提供。
英文摘要
This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5).The objective of this research is to overcome the limited bandwidth density and energy scaling of electrical interconnects, which have caused a slow-down in performance scaling of advanced integrated systems like manycore processors. The approach is to create scalable and robust transceiver circuits with integrated monolithic silicon photonics to provide seamless optical on-chip and off-chip communication with extremely high energy-efficiency and bandwidth density.Intellectual merit: This research transforms the traditional research and design approaches by developing novel communication and circuit techniques through tight interaction with photonic device properties. Proposed solutions include robust, highly-digital circuits and system techniques for energy efficient nonlinear equalization and modulation as well as high-sensitivity optical data and clock receivers, and circuits for temperature control, testing and characterization. Broader impacts: This research will enable continued performance scaling of data centers and internet routers, and bring significant benefits to the national economy by preserving the massive investments and introducing the photonic technology into advanced CMOS foundries. Through MIT programs like Interphase Pre-UROP, Women Technology Program, and K-12 Educational Outreach Summer Program the project will engage women and minority undergraduate and high-school students and teachers in multi-disciplinary aspects of experimental research and design in engineering. A newly developed graduate course in communication circuit and system design will be adapted for senior-level undergraduates and co-development of entry-level undergraduate class. These courses, design tools and projects will be available on the internet through MIT Open Course Ware initiative.
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