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    • 2. 发明授权
    • Liquid crystal display device having uniform integrated spacers
    • 液晶显示装置具有均匀的集成间隔物
    • US06788380B2
    • 2004-09-07
    • US10685862
    • 2003-10-15
    • George A. MelnikLucian R. AlbuPeter J. JanssenStefan HausserJoerg SpenglerKarl-Heinz Kraft
    • George A. MelnikLucian R. AlbuPeter J. JanssenStefan HausserJoerg SpenglerKarl-Heinz Kraft
    • G02F11339
    • G02F1/13454G02F1/133509G02F1/13394G02F2203/02
    • A reflective liquid crystal display (LCD) device includes a plurality of openings patterned in the pixel metal layer in the peripheral region of the device exposing the insulating layer beneath, a plurality of light-shielding islands beneath the openings in the pixel metal layer, and a plurality of walls formed on the islands surrounding the openings and extending substantially between the islands and the pixel metal layer. A plurality of spacers are disposed on the exposed portions of the insulating layer in the peripheral region for supporting the transparent (e.g., glass) layer above and providing a space for the liquid crystal material. The structure enhances display uniformity by making the spacers formed in the peripheral area more closely match the spacers formed in the pixel area of the device. The structure also prevents light from reaching the substrate in the peripheral region of the device and permits portions of the second metal layer formed in the peripheral region of the device to be used for signal routing.
    • 反射型液晶显示器(LCD)装置包括在该器件的外围区域中的像素金属层中图案化的多个开口,其暴露下面的绝缘层,在像素金属层的开口下面的多个遮光岛,以及 多个壁形成在围绕开口的岛上并且基本上在岛和像素金属层之间延伸。 在外围区域中的绝缘层的露出部分上设置多个间隔物,用于支撑上面的透明(例如玻璃)层并为液晶材料提供空间。 该结构通过使形成在周边区域中的间隔件更紧密地匹配在器件的像素区域中形成的间隔来增强显示均匀性。 该结构还防止光在器件的周边区域中到达衬底,并且允许形成在器件的外围区域中的第二金属层的部分用于信号路由。
    • 9. 发明授权
    • Method and apparatus for chemical analysis of fluids
    • 流体化学分析方法和装置
    • US08585878B2
    • 2013-11-19
    • US12673845
    • 2008-08-29
    • Lucian R. AlbuHans ZouJeff Shimizu
    • Lucian R. AlbuHans ZouJeff Shimizu
    • G01N27/26
    • 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。
    • 10. 发明授权
    • Electromagnetic localization system
    • 电磁定位系统
    • US08452376B2
    • 2013-05-28
    • US12596837
    • 2008-04-22
    • Daniel R. ElgortLucian R. Albu
    • Daniel R. ElgortLucian R. Albu
    • A61B5/00
    • A61B5/07A61B5/06A61B5/062G01B15/00
    • A localization system to localize an interventional instrument in the body of a patient. The localization system includes an electromagnetic wave source which splits an electromagnetic signal into components propagating along a probe path and a reference path, respectively. The probe path includes a signal outlet for emitting the signal at the point to be located and at least one detector for picking up the emitted signal. A correlator is used to determine the correlation between the signal components that propagated along the probe path and the reference path respectively. Knowing the length of the reference path, the unknown distance between the signal outlet and the detector in the probe path can be estimated based on the correlation information.
    • 本地化系统用于将介入器械定位在患者体内。 定位系统包括电磁波源,其将电磁信号分解成分别沿着探测路径和参考路径传播的分量。 探针路径包括用于在待定位点发射信号的信号出口和用于拾取发射信号的至少一个检测器。 相关器用于确定沿着探测路径传播的信号分量与参考路径之间的相关性。 知道参考路径的长度,可以基于相关信息来估计信号出口和探测路径中的检测器之间的未知距离。