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MRI: Acquisition of Bit Error Rate Tester (BERT) to Facilitate Rapid Deployment of High Speed FPGAs

MRI: Acquisition of Bit Error Rate Tester (BERT) to Facilitate Rapid Deployment of High Speed FPGAs
MRI:收购误码率测试仪 (BERT) 以促进高速 FPGA 的快速部署
批准号:
1429941
负责人:
Aldo Morales
金额:
$44.87万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-01 至 2017-08-31

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中文摘要
翻译
该提案的目标是加强哈里斯堡宾夕法尼亚州立大学信号完整性中心(PSH)的研究计划,并将其提升到一个新的水平。信号完整性被定义为分析电气互连的工程领域,如USB和高清多媒体接口(HDMI),其目标是改善计算机系统的设计,可靠性和性能。宾夕法尼亚州中部的哈里斯堡被称为世界连接器之都,这里有超过25家电气连接器公司,致力于设计和生产非常高传输速率的互连。 其中包括一些世界上最大的参与者。信号完整性中心专注于研究和开发新的信号完整性应用,旨在帮助本地连接器行业保持全球竞争力。请注意,电连接器行业对宾夕法尼亚州中部经济的影响价值超过80亿美元。在中心内,本科生和硕士生有机会参与研究和培训,因此有更好的机会在处理信号完整性应用的当地(和国家)公司实习和就业。建议者的目标是购买一台先进的误码率测试仪(BERT)及其所需的配件,用于支持本地行业的研究和培训。BERT系统用于验证和表征高速串行数据传输电路,接口(如USB和HDMI)和系统。本建议书中要求的专用BERT测试设备有几个需求。 首先,在每秒10兆比特(Gb/s)及以上时,测量挑战是严格的。例如,在这种高速下,位脉冲的持续时间变得更短,实际上低于皮秒范围;因此,测量抖动变得非常困难。此外,需要考虑仪器在亚皮秒范围内的固有抖动;因此,测量设备的抖动必须显著小于要测量的抖动。这台设备将补充信号完整性中心拥有的测试能力。这笔资金将把中心的能力提升到一个新的水平,因为它在信号完整性社区中越来越出名,这反过来有助于吸引优秀的硕士生和其他大学和行业的合作兴趣。 此外,这项建议将为本科生和研究生提供更多的研究机会,并开发课程,培训当地劳动力使用设备。该中心还将与南卡罗来纳州大学合作,为他们的研究生信号完整性计划提供测量机会。 此外,所要求的设备将由PSH的射频(RF)无线组使用。哈里斯堡地区社区学院和伊丽莎白敦学院的学生将有机会学习使用高端BERT的新测量技能。该项目将加强与本地连接器公司的合作关系,为其研发团队测试现场可编程门阵列(FPGA)解决方案。 提议者还将研究纳入本科教育。例如,S. Agili和A. Morales在PSH成立了信号完整性中心,涉及本科生,如FPGA中的快速原型设计,高级抖动分析,去嵌入技术和S参数测量中随机误差的Monte Carlo模拟。提案人也是NSF STEM提案(奖项#DUE-1154516)的PI和Co-PI,旨在增加合格的STEM学生的数量,旨在吸引和留住代表性不足的群体中有学术才能和经济需要的学生。
英文摘要
The goal of this proposal is to enhance the research initiatives at the Center for Signal Integrity, Penn State University, Harrisburg (PSH) and advance them to the next level. Signal integrity is defined as the engineering field that analyzes electrical interconnects, such as USB and High-Definition Multimedia Interfaces (HDMI), with the goal of improving the design, reliability and performance of computer systems. Harrisburg, Central Pennsylvania, is known as the Connector Capital of the World,where there are more than twenty-five electrical connector companies that deal with designing and producing interconnects for very high transmission rates. Among them are some of the world's biggest players. The Center for Signal Integrity is focused on the research and development of new signal integrity applications with the goal of helping this local connector industry to remain globally competitive. Note that the impact of the electrical connector industry in Central Pennsylvania's economy is valued over 8 billion dollars. Within the Center, undergraduate and master students have the opportunity to get involved in research and training, and hence have better chances to access internships and employment in local (and national) companies dealing with signal integrity applications. The proposers are targeting to acquire an advanced Bit Error Rate Tester (BERT) and its required accessories that will be used for research and training in support of the local industry.A BERT system is used to verify and characterize high-speed serial data transmission circuits, interfaces (such as USB and HDMIs) and systems. There are several needs for the specialized BERT test equipment requested in this proposal. First, at 10 Gigabits per second (Gb/s), and above, the measurement challenges are stringent. For instance, at that high speed the duration of the bit pulses becomes shorter, indeed below the picosecond range; hence, it becomes extremely difficult to measure jitter. In addition, the instrument intrinsic jitter, at this sub-picosecond range, needs to be taken into account; as a consequence, the measuring equipment's jitter must be significantly less than the jitter to be measured. This piece of equipment will complement the testing capacity that the Center for Signal Integrity possesses. This funding will elevate the Center capabilities to the next level, since it is becoming well-known in the signal integrity community which in turn helps to attract good master students and collaboration interests from other universities and industry. In addition, this proposal will open more opportunities for undergraduate and graduate research and develop courses to train the local workforce in the usage of the equipment. The Center will be also collaborating with the University of South Carolina to provide measuring access to their graduate Signal Integrity program. Furthermore, the requested equipment will be used by the Radio Frequency (RF) Wireless group at PSH. Students at Harrisburg Area Community College and Elizabethtown College will be provided access to learn new measuring skills with a high-end BERT. This project will enhance the partnership with local connector companies to test Field Programmable Gate Arrays (FPGAs) solutions to their research and development teams. The proposers are also integrating research in undergraduate education. For example, Dr. S. Agili and Dr. A. Morales founded the Center for Signal Integrity at PSH, involving undergraduate students, such as rapid prototyping in FPGA, advanced jitter analysis, de-embedding techniques and Monte Carlo simulation for random errors in S-parameters measurements. The proposers are also the PI and Co-PI for an NSF STEM proposal (Award # DUE-1154516) aimed to increase the pool of qualified STEM students, targeted to attract and retain academically-talented and financially needy students of under-represented groups.
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