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    • 113. 发明公开
    • MODE SUPPRESSION RESONATOR
    • MODENUNTERDRÜCKUNGS谐振器
    • EP2319120A1
    • 2011-05-11
    • EP09791349.5
    • 2009-08-11
    • Lockheed Martin Corporation
    • SQUILLACIOTI, Ronald, L.
    • H01P7/06
    • H01P7/06
    • The present disclosed technique pertains to high Q mode resonators, and, more particularly, to a technique for separating a high Q mode from masking low Q modes. In a first aspect, it includes a high Q mode resonator, comprising: a housing defining a clover-shaped resonating cavity; a dielectric material filling the cavity; an input to the cavity; and an output from the cavity. In a second aspect, it includes a high Q mode resonator, comprising: a housing defining a clover-shaped resonating cavity, the cavity comprising four intersecting right angle, cylindrical chambers; a fluid dielectric material filling the cavity; an input to the cavity; and an output from the cavity. In a third aspect, it includes a method, comprising: introducing a signal to a resonating cavity; resonating the signal within a chamber, the resonating cavity shifting the resonance of the low Q mode higher in frequency than it shifts the high Q mode; and permitting egress of the signal from the resonating cavity. In a fourth aspect, it includes a method for use in designing a high Q mode resonator, comprising: calculating the dimensions of the simple cylindrical cavity for the frequency desired for the high Q mode; and decreasing the outer radius of the simple cylindrical cavity while holding the sum of the inner and outer radius equal to the initial simple cylindrical radius.
    • 120. 发明公开
    • NANO-GETTER DEVICE
    • 纳米设备
    • EP2274090A1
    • 2011-01-19
    • EP09700124.2
    • 2009-01-02
    • Lockheed Martin Corporation
    • PALENA, Patricia, D.BARTO, Richard, R., Jr.BORDERS, Tammie, L.STUART, Jeffrey, A.
    • B01J19/00G03F7/00
    • G01N33/54373B82Y30/00
    • A nanostrυctured device for detecting biological or chemical, analytes, cancer and other physiological conditions, includes a carrier substrate, a transducer film disposed over the substrate surface, and a dendrimer structure tethered to the transducer film. The transducer film generates a first signal in response to a mechanical stress applied thereto. The first signal indicates the detection of the analyte, cancer or other physiological condition. The dendrimer structure includes a plurality of receptors for binding the analytes or one or more biomarkers indicative of cancer or other physiological conditions to the dendrimer structure. The dendrimer structure applies the mechanical stress to the transducer film, which is proportional to the strain induced into the dendrimer by the analyte or biomarkers binding to the receptors, the mechanical stress causing the transducer film to generate the first signal indicating the detection of the analyte or biomarkers indicative of the physiological condition.
    • 用于检测生物或化学分析物,分析物,癌症和其它生理条件的纳米构造装置包括载体基底,设置在基底表面上的换能器膜和连接到换能器膜的树枝状聚合物结构。 换能器膜响应施加于其上的机械应力而产生第一信号。 第一个信号表示检测到分析物,癌症或其他生理状况。 树枝状聚合物结构包括用于将分析物结合的多种受体或指示癌症或其他生理条件的一种或多种生物标志物与树状聚合物结构。 树枝状聚合物结构对换能器膜施加机械应力,该机械应力与通过分析物或与受体结合的生物标志物引入树枝状聚合物的应变成比例,机械应力引起换能器膜产生指示检测分析物的第一信号 或指示生理状况的生物标志物。