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    • 1. 发明授权
    • Variable volume between flexible structure and support surface
    • 柔性结构和支撑表面之间的可变体积
    • US07710371B2
    • 2010-05-04
    • US11014490
    • 2004-12-16
    • Ping MeiJurgen DanielJames B. BoyceKathleen Dore Boyce, legal representativeJackson HoRachel LauYu Wang
    • Ping MeiJurgen DanielJames B. BoyceJackson HoRachel LauYu Wang
    • G09G3/34C25B9/00F04B17/00B41J2/14G02F1/153H04R19/00
    • C25D5/02C23C18/28C25D5/56H04R19/04
    • Cells can include variable volumes defined between a flexible structure, such as a polymer layer, and a support surface, with the flexible structure and support surface being attached in a first region that surrounds a second region in which they are unattached. Various adhesion structures can attach the flexible structure and the support surface. When unstretched, the flexible structure can lie in a flat position on the support surface. In response to a stretching force away from the support surface, the flexible structure can move out of the flat position, providing the variable volume. Electrodes, such as on the flexible structure, on the support surface, and over the flexible structure, can have charge levels that couple with each other and with the variable volume. A support structure can include a device layer with signal circuitry that provides a signal path between an electrode and external circuitry. One or more ducts can provide fluid communication with each cell's variable volume. Arrays of such cells can be implemented for various applications, such as optical modulators, displays, printheads, and microphones.
    • 细胞可以包括在诸如聚合物层的柔性结构和支撑表面之间限定的可变体积,其中柔性结构和支撑表面附接在围绕其未连接的第二区域的第一区域中。 各种粘合结构可以附接柔性结构和支撑表面。 当未拉伸时,柔性结构可以位于支撑表面上的平坦位置。 响应于远离支撑表面的拉伸力,柔性结构可以移出平坦位置,从而提供可变的体积。 诸如柔性结构的电极,在支撑表面上以及柔性结构上的电极可以具有彼此耦合并且具有可变体积的电荷水平。 支撑结构可以包括具有提供电极和外部电路之间的信号路径的信号电路的器件层。 一个或多个管道可以提供与每个电池的可变体积的流体连通。 可以对诸如光学调制器,显示器,打印头和麦克风的各种应用来实现这种单元的阵列。
    • 2. 发明申请
    • Variable volume between flexible structure and support surface
    • 柔性结构和支撑表面之间的可变体积
    • US20060131163A1
    • 2006-06-22
    • US11014490
    • 2004-12-16
    • Ping MeiJurgen DanielJames BoyceKathleen BoyceJackson HoRachel LauYu Wang
    • Ping MeiJurgen DanielJames BoyceKathleen BoyceJackson HoRachel LauYu Wang
    • C25D21/12
    • C25D5/02C23C18/28C25D5/56H04R19/04
    • Cells can include variable volumes defined between a flexible structure, such as a polymer layer, and a support surface, with the flexible structure and support surface being attached in a first region that surrounds a second region in which they are unattached. Various adhesion structures can attach the flexible structure and the support surface. When unstretched, the flexible structure can lie in a flat position on the support surface. In response to a stretching force away from the support surface, the flexible structure can move out of the flat position, providing the variable volume. Electrodes, such as on the flexible structure, on the support surface, and over the flexible structure, can have charge levels that couple with each other and with the variable volume. A support structure can include a device layer with signal circuitry that provides a signal path between an electrode and external circuitry. One or more ducts can provide fluid communication with each cell's variable volume. Arrays of such cells can be implemented for various applications, such as optical modulators, displays, printheads, and microphones.
    • 细胞可以包括在诸如聚合物层的柔性结构和支撑表面之间限定的可变体积,其中柔性结构和支撑表面附接在围绕其未连接的第二区域的第一区域中。 各种粘合结构可以附接柔性结构和支撑表面。 当未拉伸时,柔性结构可以位于支撑表面上的平坦位置。 响应于远离支撑表面的拉伸力,柔性结构可以移出平坦位置,从而提供可变的体积。 诸如柔性结构的电极,在支撑表面上以及柔性结构上的电极可以具有彼此耦合并且具有可变体积的电荷水平。 支撑结构可以包括具有提供电极和外部电路之间的信号路径的信号电路的器件层。 一个或多个管道可以提供与每个电池的可变体积的流体连通。 可以对诸如光学调制器,显示器,打印头和麦克风的各种应用实现这种单元的阵列。
    • 3. 发明申请
    • ELECTRONIC PAYMENT CARD MANUFACTURING PROCESS
    • 电子支付卡制造流程
    • US20110062239A1
    • 2011-03-17
    • US12558505
    • 2009-09-12
    • Rachel LauPaul TsaoKerry Brown
    • Rachel LauPaul TsaoKerry Brown
    • G06K19/06
    • G06K19/06196G06K19/06206H01L25/18H01L2224/48091H01L2224/73265H01L2224/92247H01L2924/1461H01L2924/00014H01L2924/00
    • A payment card manufacturing process for a magnetic device (QChip) with a bit coil array to individually write several dynamic magnetic data bits into the magnetic material. The magnetic device fits inside the payment card's magnetic strip and contributes to the data recorded statically in the magnetic stripe. The magnetic device edges physically nearest the leading and trailing dynamic magnetic data bits are trimmed very closely and precisely by scoring the tops with deep reactive ion etching to produce deep trenches, and then back-grinding up from underneath to the trench bottoms. The magnetic device is inserted into a high precision die or laser cut opening in the magnetic stripe in each payment card. The locations of the static magnetic bits in the magnetic stripe are precisely recorded maintaining continuous signal integrity and integration during card personalization after electronically sensing the X,Y locations of the magnetic device's dynamic magnetic data bits.
    • 一种用于具有位线圈阵列的磁性装置(QChip)的支付卡制造过程,以将多个动态磁数据位分别写入磁性材料。 磁性装置安装在支付卡的磁条内部,并有助于磁条中静态记录的数据。 通过用深反应离子蚀刻对顶部进行刻痕以产生深沟槽,然后从底部到沟槽底部进行后研磨,物理上最靠近前导和后退动态磁数据位的磁性装置边缘被非常接近和精确地修剪。 将磁性装置插入每个支付卡中的磁条中的高精度模具或激光切割开口中。 在磁性设备的动态磁数据位的X,Y位置电子感应之后,磁条中静态磁头的位置被精确记录,保持了卡个性化期间的连续信号完整性和集成。