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    • 92. 发明授权
    • Sensing photons from objects in channels
    • 从通道中的物体感测光子
    • US07358476B2
    • 2008-04-15
    • US11315992
    • 2005-12-22
    • Peter KieselMeng H. LeanOliver SchmidtArmin R. VölkelNoble M. Johnson
    • Peter KieselMeng H. LeanOliver SchmidtArmin R. VölkelNoble M. Johnson
    • G01J3/50
    • G01N21/05G01N21/645G01N21/65G01N21/658G01N2021/0346G01N2021/1734G01N2021/6421G01N2021/6482
    • A fluidic structure includes a channel and along the channel is a series of sensing components to obtain information about objects traveling within the channel, such as droplets or other objects carried by fluid. At least one sensing component includes a set of cells of a photosensor array. The set of cells photosense a range of photon energies that emanate from objects, and include a subset of cells that photosense within subranges. A processor can receive information about objects from the sensing components and use it to obtain spectral information. The processor can perform an initial analysis using information from one set of sensing components and, based on the results, control a fluidic device in the channel, such as a gate, to retain objects, such as for concentration and more detailed analysis by other sensing components, or to purge objects from the channel.
    • 流体结构包括通道,并且沿着通道是一系列感测部件,以获得关于在通道内行进的物体的信息,例如由流体携带的液滴或其它物体。 至少一个感测组件包括一组光电传感器阵列的单元。 该组细胞照射从物体发出的一系列光子能量,并且包括在子范围内的光密度的子集。 处理器可以从感测组件接收关于对象的信息,并使用它来获得光谱信息。 处理器可以使用来自一组感测组件的信息来执行初始分析,并且基于结果,控制通道中的流体装置(例如门),以保留对象,例如通过其他感测进行浓度和更详细的分析 组件,或从通道清除对象。
    • 96. 发明授权
    • Piezoelectric diaphragm structure with outer edge electrode
    • 压电膜片结构,外缘电极
    • US07084555B2
    • 2006-08-01
    • US10739478
    • 2003-12-18
    • John R. BachellerieSteven A. BuhlerJohn S. FitchMeng H. LeanKarl A. Littau
    • John R. BachellerieSteven A. BuhlerJohn S. FitchMeng H. LeanKarl A. Littau
    • H01L41/08
    • H01L41/0973H01L41/047
    • A multi-electrode piezoelectric diaphragm structure includes a diaphragm, piezoelectric material located on the diaphragm, which is defined as having a first area, and a second area. The first area of the piezoelectric is poled in a first direction, and the second area of the piezoelectric is poled in a second direction. The poled first direction is in a Z-axis of the piezoelectric and the poled second direction is in a Radial axis of the piezoelectric. A first electrode is positioned in the first area, on the first surface, of the piezoelectric. A second electrode is positioned in the second area, on the first surface, of the piezoelectric. A third electrode is located on a second surface of the piezoelectric. The application of voltages to the first, second and third electrodes generates electric fields in the piezoelectric material resulting in actuation of the piezoelectric material, or the application of pressure or strain to the diaphragm generates electric potentials at the first, second and third electrodes.
    • 多电极压电膜结构包括隔膜,位于膜片上的压电材料,其被定义为具有第一区域,第二区域。 压电体的第一区域沿第一方向极化,并且压电体的第二区域在第二方向上极化。 极化的第一方向在压电体的Z轴上,并且极化的第二方向处于压电体的径向轴线。 第一电极位于压电体的第一表面的第一区域中。 第二电极位于压电体的第一表面的第二区域中。 第三电极位于压电体的第二表面上。 施加电压到第一,第二和第三电极在压电材料中产生电场,导致压电材料的致动,或施加压力或应变到隔膜在第一,第二和第三电极处产生电位。