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    • 5. 发明授权
    • Generic patterned conductor for customizable electronic devices
    • 用于可定制电子设备的通用图案导体
    • US07745733B2
    • 2010-06-29
    • US11120025
    • 2005-05-02
    • George F. JamborMichael J. Robrecht
    • George F. JamborMichael J. Robrecht
    • H05K1/00
    • G06F3/045G06F3/041G06F3/044G06F3/047H05K1/0289H05K1/0393H05K3/4611H05K3/4635H05K2203/0554H05K2203/1545
    • A method of making a multilayered product having a repeating conductive pattern that includes determining a repeating pattern configuration such as a grid of conductive traces for use in a range of active element configurations, and forming a continuous web of multilayered product having at least one layer of conductive material configured according to the determined repeating pattern configuration. The continuous web is suitable for use in a range of active element configurations. The method may also include altering the continuous web to form a customized active element. Forming the continuous web may include providing a first roll of continuous webbing stock, the first roll having at least a portion of the repeating pattern formed thereon, providing a second roll of continuous webbing stock, the second roll having at least a portion of the repeating conductive pattern formed thereon, and laminating the first and second rolls of continuous webbing stock together.
    • 一种制备具有重复导电图案的多层产品的方法,所述多层产品包括确定重复图案构型,例如用于一系列活性元件构型的导电迹线格栅,以及形成具有至少一层 导电材料根据所确定的重复图案构型配置。 连续卷材适用于一系列有源元件配置。 该方法还可以包括改变连续卷材以形成定制的活性元件。 形成连续幅材可以包括提供第一卷连续织带坯料,第一辊具有形成在其上的重复图案的至少一部分,提供第二卷连续织带坯料,第二辊具有重复的至少一部分 形成在其上的导电图案,以及将第一和第二辊的连续织带材料层叠在一起。
    • 7. 发明授权
    • Passive light stylus and user input device using same
    • 被动光笔和用户输入装置使用相同
    • US07348969B2
    • 2008-03-25
    • US10748880
    • 2003-12-30
    • Michael J. RobrechtBernard O. Geaghan
    • Michael J. RobrechtBernard O. Geaghan
    • G06F3/033
    • G06F3/042G06F3/03542G06F3/03545
    • The present disclosure provides a passive light stylus that produces a defined intensity profile detectable by a user input device when at least a portion of a tip of the stylus is proximate an input surface of the user input device. In some embodiments, the stylus includes a housing including an entrance aperture configured to collect ambient light and an exit aperture configured to emit the collected light, where the exit aperture is proximate a tip of the stylus. The stylus also includes a light guide disposed within the housing, where the light guide is in optical communication with the entrance aperture and the exit aperture such that the light guide directs collected light from the entrance aperture to the exit aperture.
    • 本公开提供了一种被动光笔,当触针的尖端的至少一部分靠近用户输入装置的输入表面时,其产生由用户输入装置可检测的限定的强度分布。 在一些实施例中,触笔包括壳体,其包括被配置为收集环境光的入口孔和被配置为发射收集的光的出口孔,其中出口孔接近触针的尖端。 触针还包括设置在壳体内的光导,其中光导与入射孔和出射孔光学连通,使得光导将收集的光从入射孔引导到出射孔。
    • 10. 发明授权
    • Light emitting stylus and user input device using same
    • 发光手写笔和用户输入设备使用相同
    • US07298367B2
    • 2007-11-20
    • US10721685
    • 2003-11-25
    • Bernard O. GeaghanMichael J. Robrecht
    • Bernard O. GeaghanMichael J. Robrecht
    • G06F3/037
    • G06F3/042G06F3/03545G06F3/0386
    • The present invention provides a user input device that includes and array of light detectors and a light emitting stylus configured to emit a beam of light detectable by the light detectors. The light beam is wide enough at the plane of the detectors so that at least two detectors are illuminated for all positions of interest. This allows the light beam position to be interpolated to obtain positional resolution that is greater than would be expected simply due to the spacing between detectors. Interpolation can be further aided by using a light beam that has a known variance in cross-sectional intensity. The present invention also provides for determining the orientation of the stylus by comparing the detected shape of the light beam cross-section to the known shape of the light beam cross-section.
    • 本发明提供了一种用户输入设备,其包括光学检测器阵列和配置成发射可由光检测器检测的光束的发光探针。 光束在检测器的平面处足够宽,以便对所有感兴趣的位置照亮至少两个检测器。 这允许光束位置被内插以获得比由检测器之间的间隔简单地预期的位置分辨率。 可以通过使用具有已知的横截面强度方差的光束来进一步辅助插值。 本发明还提供了通过将检测到的光束横截面的形状与光束横截面的已知形状进行比较来确定触针的取向。