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    • 2. 发明授权
    • Object position sensing apparatus
    • 物体位置检测装置
    • US08120371B2
    • 2012-02-21
    • US12163678
    • 2008-06-27
    • Shawn P. DayDavid ElyBob L. Mackey
    • Shawn P. DayDavid ElyBob L. Mackey
    • G01R27/26G06F3/041
    • G06F3/044
    • An object position sensing apparatus including a substrate, a conductive crossbar, and a plurality of resistive elements coupled to the crossbar is described. The resistive elements are coupled to circuitry that can apply an excitation signal, such as a voltage change, to the resistive elements. For each resistive element, an electrical effect responsive to the excitation signal, such as a change in charge flowing to the resistive element, is determined. When an object is proximate to the plurality of resistive elements, the electrical effects change, and a position of the object in one or multiple dimensions can be determined from changes in the electrical effects.
    • 描述了一种包括衬底,导电横杆以及耦合到横杆的多个电阻元件的物体位置检测装置。 电阻元件耦合到可以向电阻元件施加诸如电压变化的激励信号的电路。 对于每个电阻元件,确定响应于激发信号的电效应,例如流向电阻元件的电荷的变化。 当物体靠近多个电阻元件时,电效应改变,并且可以根据电效应的变化来确定物体在一个或多个维度中的位置。
    • 7. 发明授权
    • Conductive focus waffle
    • 导电聚焦华夫饼
    • US06528930B1
    • 2003-03-04
    • US09660318
    • 2000-09-12
    • David C. ChangArthur J. LearnBob L. MackeyPaul M. DrummDavid L. Morris
    • David C. ChangArthur J. LearnBob L. MackeyPaul M. DrummDavid L. Morris
    • H01J916
    • H01J9/148H01J9/025H01J29/467H01J2329/00
    • A conductive focus waffle structure for focusing electrons emitted from a cathode portion of a flat panel display device. In one embodiment, the conductive focus waffle structure comprises a grid of material comprised of substantially orthogonally oriented rows and columns. The substantially orthogonally oriented rows and columns define openings therebetween having sufficient size to allow electrons emitted from a cathode portion of a flat panel display device to pass therethrough. The focus waffle grid further comprises a lower dielectric portion adapted to be coupled to the cathode portion of the flat panel display device and an upper conductive portion coupled to the lower dielectric portion, the upper conductive portion adapted to focus the electrons passing through the openings.
    • 一种用于聚焦从平板显示装置的阴极部分发射的电子的导电聚焦华夫饼结构。 在一个实施例中,导电聚焦华夫饼结构包括由基本上正交取向的行和列组成的材料格栅。 基本上正交取向的行和列限定了具有足够尺寸的开口,以允许从平板显示装置的阴极部分发射的电子通过。 焦点楔形栅格还包括适于联接到平板显示装置的阴极部分的下介电部分和耦合到下电介质部分的上导电部分,上导电部分适于聚焦穿过开口的电子。
    • 8. 发明授权
    • Encapsulated flat panel display components
    • 封装平板显示器组件
    • US06380670B1
    • 2002-04-30
    • US09505823
    • 2000-02-29
    • Duane A. HavenArthur J. LearnBob L. MackeyJohn D. PorterTheodore S. Fahlen
    • Duane A. HavenArthur J. LearnBob L. MackeyJohn D. PorterTheodore S. Fahlen
    • H01J162
    • H01J29/028H01J29/085H01J29/94H01J2329/863H01J2329/8645H01J2329/8665
    • An encapsulated matrix structure and formation method for preventing contamination caused by thermally induced outgassing and electron stimulated desorption of contaminants. In one embodiment, the present invention is comprised of a matrix structure which is adapted to be coupled to a faceplate of a flat panel display. The matrix structure is located on the faceplate so as to separate adjacent sub-pixel regions. The present embodiment further includes a contaminant prevention structure which covers the matrix structure. The contaminant prevention structure of the present embodiment has a physical structure such that contaminants originating within the matrix structure are confined therein. The contaminant prevention structure can also be designed to prevent electrons from impinging on the black matrix and desorbing contaminants. In so doing, the present invention prevents deleterious thermally induced outgassing and electron stimulated desorption of contaminants by the matrix structure.
    • 用于防止由热诱导的除气和电子刺激的污染物解吸引起的污染的封装的基质结构和形成方法。 在一个实施例中,本发明包括适于耦合到平板显示器的面板的矩阵结构。 矩阵结构位于面板上,以分离相邻的子像素区域。 本实施例还包括覆盖矩阵结构的防污染结构。 本实施例的污染物防止结构具有使源于矩阵结构的污染物被限制在其中的物理结构。 防污染结构也可以设计成防止电子撞击黑色基质并解吸污染物。 这样做,本发明可防止有害的热诱导脱气和电子受到基质结构污染物的解吸附。
    • 9. 发明授权
    • Multi-level conductive matrix formation method
    • 多层导电矩阵形成方法
    • US5858619A
    • 1999-01-12
    • US940819
    • 1997-09-30
    • David C. ChangArthur J. LearnBob L. MackeyPaul M. DrummDavid L. Morris
    • David C. ChangArthur J. LearnBob L. MackeyPaul M. DrummDavid L. Morris
    • H01J9/227G03F7/00H01J9/18H01J9/24B05D5/12
    • G03F7/0035G03F7/0007H01J9/185H01J9/242H01J2329/863
    • A method for forming a three-dimensional multi-level conductive matrix structure for a flat panel display device. In one embodiment, the present invention forms first pixel separating structures across a surface of a faceplate of a flat panel display. The first pixel separating structures separate adjacent first sub-pixel regions. In this embodiment, the first pixel separating structures are formed by applying a first layer of photo-imagable material across the surface of the faceplate. Next, portions of the first layer of photo-imagable material are removed to leave regions of the first layer of photo-imagable material covering respective first sub-pixel regions. Then, a first layer of conductive material is applied over the surface of the faceplate such that the first layer conductive material is disposed between the aforementioned regions of the first layer of photo-imagable material. The present invention then removes the regions of the first layer of photo-imagable material leaving only first pixel separating structures formed of the first layer of conductive material, disposed between the first sub-pixel regions. The present invention performs similar steps in order to form second pixel separating structures between the second sub-pixel regions. The second pixel separating structures are formed substantially orthogonally oriented with respect to the first pixel separating structures and, in the present embodiment, have a different height than the first pixel separating structures. In so doing, a three-dimensional multi-level conductive matrix structure is formed.
    • 一种用于形成用于平板显示装置的三维多层导电矩阵结构的方法。 在一个实施例中,本发明在平板显示器的面板的表面上形成第一像素分离结构。 第一像素分离结构分离相邻的第一子像素区域。 在该实施例中,通过在面板的表面上施加第一层可光成像材料来形成第一像素分离结构。 接下来,去除第一层可光成像材料的部分以留下覆盖相应的第一子像素区域的第一层可光成像材料的区域。 然后,将第一层导电材料施加在面板的表面上,使得第一层导电材料设置在第一层可光成像材料的上述区域之间。 然后,本发明移除第一层可光成像材料的区域,仅留下由第一子像素区域之间的第一导电材料层形成的第一像素分离结构。 为了在第二子像素区域之间形成第二像素分离结构,本发明执行类似的步骤。 第二像素分离结构相对于第一像素分离结构基本上正交地定向,并且在本实施例中,具有与第一像素分离结构不同的高度。 这样做形成三维多层导电矩阵结构。
    • 10. 发明申请
    • OBJECT POSITION SENSING APPARATUS
    • 对象位置感应装置
    • US20090322355A1
    • 2009-12-31
    • US12163678
    • 2008-06-27
    • Shawn P. DayDavid ElyBob L. Mackey
    • Shawn P. DayDavid ElyBob L. Mackey
    • G01R27/08G06F15/00
    • G06F3/044
    • An object position sensing apparatus including a substrate, a conductive crossbar, and a plurality of resistive elements coupled to the crossbar is described. The resistive elements are coupled to circuitry that can apply an excitation signal, such as a voltage change, to the resistive elements. For each resistive element, an electrical effect responsive to the excitation signal, such as a change in charge flowing to the resistive element, is determined. When an object is proximate to the plurality of resistive elements, the electrical effects change, and a position of the object in one or multiple dimensions can be determined from changes in the electrical effects.
    • 描述了一种包括衬底,导电横杆以及耦合到横杆的多个电阻元件的物体位置检测装置。 电阻元件耦合到可以向电阻元件施加诸如电压变化的激励信号的电路。 对于每个电阻元件,确定响应于激发信号的电效应,例如流向电阻元件的电荷的变化。 当物体靠近多个电阻元件时,电效应改变,并且可以根据电效应的变化来确定物体在一个或多个维度中的位置。