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    • 2. 发明授权
    • Cathode burn-in procedures for a field emission display that avoid display non-uniformities
    • 阴极烧录程序用于场发射显示,避免显示不均匀性
    • US06512335B1
    • 2003-01-28
    • US09896402
    • 2001-06-28
    • James C. DunphyWilliam J. CummingsColin D. StannersLawrence S. Pan
    • James C. DunphyWilliam J. CummingsColin D. StannersLawrence S. Pan
    • G09G310
    • G09G3/22G09G2310/066H01J9/44H01J2209/0223
    • Methods for performing cathode burn-in with respect to an FED display that avoid display non-uniformities near and around the spacer wall structures. In a first method, the anode is floated or receives a negative voltage with respect to the electron emitter. A positive voltage is then applied to the focus waffle structure with respect to the electron emitter. The cathode is then energized thereby preventing emitted electrons from escaping the focus well. Under these conditions, cathode burn-in conditioning can occur but electrons are energetically forbidden from hitting the anode or the spacer walls except for a small region near the focus waffle. Under the second method, the anode is grounded or allowed to float. A negative bias is applied to the focus waffle. This causes electrons to be collected at the M2 layer of the gate. Electrons are energetically forbidden from hitting any portion of the tube except the M2 layer. Under either method, no electrons hit the spacer walls and therefore display non-uniformities near and around the spacer wall structures are avoided.
    • 相对于避免在间隔壁结构附近和周围显示不均匀性的FED显示器进行阴极老化的方法。 在第一种方法中,阳极漂浮或接收相对于电子发射器的负电压。 然后将正电压相对于电子发射器施加到焦点楔形结构。 然后使阴极通电,从而防止发射的电子逸出。 在这些条件下,可能会发生阴极老化调节,但除了靠近焦点华夫饼附近的小区域外,电子被大力禁止撞击阳极或间隔壁。 在第二种方法下,阳极接地或允许浮动。 对焦点华夫饼施加负偏压。 这导致电子在门的M2层被收集。 除了M2层之外,电子被大力禁止撞击管的任何部分。 在任一方法下,没有电子撞击间隔壁,因此避免了在间隔壁结构附近和周围显示不均匀性。
    • 8. 发明授权
    • Display element having filter material diffused in a substrate of the display element
    • 具有过滤材料的显示元件在显示元件的基板中扩散
    • US08344377B2
    • 2013-01-01
    • US12265689
    • 2008-11-05
    • Brian J. GallyWilliam J. Cummings
    • Brian J. GallyWilliam J. Cummings
    • H01L29/04
    • G02B26/001
    • Optical filter functionality is incorporated into a substrate of a display element thereby decreasing the need for a separate thin film filter and, accordingly, reducing a total thickness of a filtered display element. Filter functionality may be provided by any filter material, such as pigment materials, photoluminescent materials, and opaque material, for example. The filter material may be incorporated in the substrate at the time of creating the substrate or may be selectively diffused in the substrate through a process of masking the substrate, exposing the substrate to the filter material, and heating the substrate in order to diffuse the filter material in the substrate.
    • 光学滤光器功能被并入到显示元件的衬底中,从而减少对单独的薄膜滤光器的需要,并因此减少滤波后的显示元件的总厚度。 过滤器功能可以由任何过滤材料提供,例如颜料材料,光致发光材料和不透明材料。 过滤材料可以在制造衬底时被结合到衬底中,或者可以通过掩模衬底,将衬底暴露于过滤材料并加热衬底以便扩散过滤器的过程而选择性地扩散到衬底中 基材中的材料。
    • 9. 发明申请
    • SPATIAL LIGHT MODULATOR WITH INTEGRATED OPTICAL COMPENSATION STRUCTURE
    • 具有综合光学补偿结构的空间光调制器
    • US20120099177A1
    • 2012-04-26
    • US13337494
    • 2011-12-27
    • Clarence ChuiJeffrey B. SampsellWilliam J. CummingsMing-Hau Tung
    • Clarence ChuiJeffrey B. SampsellWilliam J. CummingsMing-Hau Tung
    • G02B26/00
    • G02F1/21G02B26/001G02F1/1335G02F2001/13356
    • A spatial light modulator comprises an integrated optical compensation structure, e.g., an optical compensation structure arranged between a substrate and a plurality of individually addressable light-modulating elements, or an optical compensation structure located on the opposite side of the light-modulating elements from the substrate. The individually addressable light-modulating elements are configured to modulate light transmitted through or reflected from the transparent substrate. Methods for making such spatial light modulators involve fabricating an optical compensation structure over a substrate and fabricating a plurality of individually addressable light-modulating elements over the optical compensation structure. The optical compensation structure may be a passive optical compensation structure. The optical compensation structure may include one or more of a supplemental frontlighting source, a diffuser, a black mask, a diffractive optical element, a color filter, an anti-reflective layer, a structure that scatters light, a microlens array, and a holographic film.
    • 空间光调制器包括集成的光学补偿结构,例如,布置在基板和多个可单独寻址的光调制元件之间的光学补偿结构,或位于光调制元件的相对侧上的光学补偿结构 基质。 可单独寻址的光调制元件被配置为调制透射通过或从透明基板反射的光。 制造这种空间光调制器的方法包括在衬底上制造光学补偿结构,并在光学补偿结构上制造多个单独可寻址的光调制元件。 光学补偿结构可以是无源光学补偿结构。 光学补偿结构可以包括补充前照明光源,漫射器,黑色掩模,衍射光学元件,滤色器,抗反射层,散射光的结构,微透镜阵列和全息图中的一个或多个 电影。
    • 10. 发明授权
    • Spatial light modulator with integrated optical compensation structure
    • 具有集成光学补偿结构的空间光调制器
    • US08111445B2
    • 2012-02-07
    • US12014657
    • 2008-01-15
    • Clarence ChuiJeffrey B. SampsellWilliam J. CummingsMing-Hau Tung
    • Clarence ChuiJeffrey B. SampsellWilliam J. CummingsMing-Hau Tung
    • G02B26/00
    • G02F1/21G02B26/001G02F1/1335G02F2001/13356
    • A spatial light modulator comprises an integrated optical compensation structure, e.g., an optical compensation structure arranged between a substrate and a plurality of individually addressable light-modulating elements, or an optical compensation structure located on the opposite side of the light-modulating elements from the substrate. The individually addressable light-modulating elements are configured to modulate light transmitted through or reflected from the transparent substrate. Methods for making such spatial light modulators involve fabricating an optical compensation structure over a substrate and fabricating a plurality of individually addressable light-modulating elements over the optical compensation structure. The optical compensation structure may be a passive optical compensation structure. The optical compensation structure may include one or more of a supplemental frontlighting source, a diffuser, a black mask, a diffractive optical element, a color filter, an anti-reflective layer, a structure that scatters light, a microlens array, and a holographic film.
    • 空间光调制器包括集成的光学补偿结构,例如,布置在基板和多个可单独寻址的光调制元件之间的光学补偿结构,或位于光调制元件的相对侧上的光学补偿结构 基质。 可单独寻址的光调制元件被配置为调制透射通过或从透明基板反射的光。 制造这种空间光调制器的方法包括在衬底上制造光学补偿结构,并在光学补偿结构上制造多个单独可寻址的光调制元件。 光学补偿结构可以是无源光学补偿结构。 光学补偿结构可以包括补充前照明光源,漫射器,黑色掩模,衍射光学元件,滤色器,抗反射层,散射光的结构,微透镜阵列和全息图中的一个或多个 电影。