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CAREER: Reconfigurable Traveling Wave Silicon Integrated Circuits for Millimeter-Wave Testing

CAREER: Reconfigurable Traveling Wave Silicon Integrated Circuits for Millimeter-Wave Testing
职业:用于毫米波测试的可重构行波硅集成电路
批准号:
1055635
负责人:
James Buckwalter
金额:
$40.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-02-01 至 2015-06-30

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中文摘要
翻译
本研究的目的是演示一个毫米波网络分析系统,该系统工作在100和300 GHz之间的频率,现有的测试和测量解决方案是困难和昂贵的。该方法是开发宽带,可重构的高频电路,采用最近发现的行波电路技术称为建设性波放大。通过沿单个传输线沿着引入局部化的分路反馈网络,可以通过改变分路反馈网络来改变行波传播。在任一方向上传播的波可以在很宽的频率范围内被放大。该项目的智力价值包括可重构毫米波电路的发明,该电路既提高了毫米波电路设计的最新水平,又提高了测试能力。建设性波放大是这项研究的一个变革性方面,因为它放宽了已知的高频晶体管的限制。研究工作包括对所提出的方法进行理论分析,以及使用硅集成电路工艺进行实验验证。该项目的更广泛影响包括开发毫米波频率下新的科学,医疗和工业应用的使能技术。高频电路的单片集成可以大大降低网络分析的成本。 综合教育计划包括将毫米波电路设计和测量原理纳入本科和研究生课程。为了将研究成果带给更广泛的受众,首席研究员将创建一系列在线教学视频,向高中,本科和研究生级别的学生介绍射频电路设计,测试和测量。
英文摘要
The objective of this research is to demonstrate a millimeter-wave network analysis system that operates at frequencies between 100 and 300 GHz where existing test and measurement solutions are difficult and costly. The approach is to develop wideband, reconfigurable high-frequency circuits that employ a recently discovered traveling wave circuit technique called constructive wave amplification. By introducing localized shunt feedback networks along a single transmission line, traveling wave propagation may be altered through changes to the shunt feedback network. Waves traveling in either direction may be amplified over a wide range of frequencies. The intellectual merit of this project includes the invention of reconfigurable, millimeter-wave circuits that advance both the state-of-the-art for millimeter-wave circuit design as well as test capabilities. Constructive wave amplification is a transformative aspect to this research because it relaxes known high-frequency transistor limitations. The research effort includes the theoretical analysis of the proposed approaches as well as experimental verification using silicon integrated circuit processes.The broader impacts of this project include the development of enabling technologies for new scientific, medical, and industrial applications at millimeter-wave frequencies. The proposed monolithic integration of high-frequency circuitry could lead to substantially reduced cost of network analysis. The integrated educational plan includes incorporation of principles of millimeter-wave circuit design and measurement into undergraduate and graduate level courses. To bring the research outcomes to a broader audience, the principal investigator will create a series of instructional videos available online that introduce students at the high-school, undergraduate, and graduate levels to radio frequency circuit design, test, and measurement.
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SpecEES: Collaborative Research: Energy Efficient Millimeter Wave Cellular Networks
CAREER: Reconfigurable Traveling Wave Silicon Integrated Circuits for Millimeter-Wave Testing
Enabling Algorithms, Signal Processing, and Circuits for Agile Cognitive Radio in CMOS Technology
Enabling Algorithms, Signal Processing, and Circuits for Agile Cognitive Radio in CMOS Technology
  • 批准号:
    1343389
  • 项目类别:
    Standard Grant
  • 资助金额:
    $119.96万
  • 财政年份:
    2013
  • 负责人:
    James Buckwalter
  • 依托单位:
海外基金