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    • 7. 发明申请
    • METHOD AND APPARATUS FOR CHEMICAL ANALYSIS OF FLUIDS
    • 流体化学分析方法与装置
    • US20110089050A1
    • 2011-04-21
    • US12673845
    • 2008-08-29
    • Lucian R. AlbuHans ZouJeff Shimizu
    • Lucian R. AlbuHans ZouJeff Shimizu
    • G01N27/413G01N27/416
    • A63B69/0002A63B69/3641A63B2069/0008A63B2209/00A63B2210/50A63B2225/09A63B2225/093
    • An apparatus and method for electrochemical fluid analysis comprises a chamber (1202) having a depth dimension for accommodating a volume of a fluid under test, first and second electrodes (A1) disposed within the chamber and extending along the depth dimension in spaced relation with each other, and a soluble solid, such as an annealed polymer, e.g. EUDRAGIT occupying a lateral gap between the first and second electrodes. The rate of dissolution as monitored by electrochemical impedance spectroscopy (EIS) of the soluble solid within the fluid depends on the chemical concentration of a corresponding analyte present in solution in the fluid. In one embodiment a silicon-based integrated circuit device defining an upper margin includes an array of electrodes disposed along said upper margin to permit direct exposure of the electrode array to the fluid under test. The device is constructed using CMOS technology.
    • 用于电化学流体分析的装置和方法包括具有用于容纳待测流体体积的深度尺寸的腔室(1202),设置在腔室内的第一和第二电极(A1),并且沿与所述腔室间隔开的深度尺寸延伸 另一种和可溶性固体,例如退火的聚合物,例如 EUDRAGIT占据第一和第二电极之间的横向间隙。 通过流体中可溶性固体的电化学阻抗谱(EIS)监测的溶解速率取决于流体中溶液中存在的相应分析物的化学浓度。 在一个实施例中,限定上边缘的硅基集成电路器件包括沿着所述上边缘设置的电极阵列,以允许电极阵列直接暴露于待测流体。 该器件采用CMOS技术构建。
    • 9. 发明申请
    • LENS SYSTEM
    • 镜头系统
    • US20100171820A1
    • 2010-07-08
    • US12666545
    • 2008-06-25
    • Bernardus Hendrikus Wihelmu HendriksJeff ShimizuStein Kuiper
    • Bernardus Hendrikus Wihelmu HendriksJeff ShimizuStein Kuiper
    • H04N7/18G02B15/00G02B21/02G02B23/24
    • G02B23/243G02B26/103
    • A lens system comprises a first lens group and a second lens group, and is configured to form an image at a first magnification and at a second magnification. The lens system has a common optical axis in both magnifications. The lens system is further configured to form an intermediate image between the first lens group and the second lens group at the first magnification. The intermediate image formed in the first magnification is further imaged onto an optical detector. In the first magnification, the second lens group acts as a relay lens imaging the intermediate image onto the optical detector. In the second magnification, the first and second lens groups together form an image on the optical detector without forming an intermediate image.
    • 透镜系统包括第一透镜组和第二透镜组,并且被配置为以第一放大率和第二放大率形成图像。 透镜系统具有两个放大倍率的共同光轴。 透镜系统还被配置为在第一放大率下在第一透镜组和第二透镜组之间形成中间图像。 在第一放大率中形成的中间图像进一步成像到光学检测器上。 在第一放大率中,第二透镜组用作将中间图像成像到中间透镜到光学检测器。 在第二放大倍数中,第一和第二透镜组一起在光学检测器上形成图像,而不形成中​​间图像。