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    • 3. 发明申请
    • Linearized touch sensor having protective coating
    • 具有保护涂层的线性触摸传感器
    • US20070126707A1
    • 2007-06-07
    • US11293723
    • 2005-12-02
    • Terence Jones
    • Terence Jones
    • G09G5/00
    • G06F3/045
    • A touch sensor is disclosed. The sensor includes an electrically resistive layer that covers a touch sensitive area. The sensor further includes an electrically insulative layer that is disposed on the electrically resistive layer. The insulative layer has one or more open areas. Each open area exposes a portion of the resistive layer. The sensor also includes a plurality of electrically conductive segments that are disposed on the insulative layer. Each conductive segment makes electrical contact with the resistive layer through at least one of the open areas in the insulative layer. The conductive segments improve linearity of the touch sensitive area.
    • 公开了一种触摸传感器。 传感器包括覆盖触敏区域的电阻层。 传感器还包括设置在电阻层上的电绝缘层。 绝缘层具有一个或多个开放区域。 每个开放区域暴露电阻层的一部分。 传感器还包括设置在绝缘层上的多个导电段。 每个导电段通过绝缘层中的至少一个开放区域与电阻层电接触。 导电段改善了触敏区的线性。
    • 8. 发明申请
    • Leaf Seal Arrangement
    • 叶密封布置
    • US20080048399A1
    • 2008-02-28
    • US11632453
    • 2005-07-06
    • Richard NicholsonTerence Jones
    • Richard NicholsonTerence Jones
    • F16J15/453
    • F16J15/3292F01D11/001
    • A leaf seal arrangement is provided in which within a housing there are edge portions to inter associate with non parallel chamfer edges in leaf seal elements. In such circumstances, deflection of the leaf seal elements in an outward direction or inward direction relative to a rotating shaft creates variation in a control gap X, XX between the edges and the chamfer edge. Such increase or decrease in the control gap X, XX adjusts the aerodynamic radial force that is presented to the leaf seal elements whereby those elements can be more accurately maintained at a desired leaf position for optimizing leakage whilst achieving better wear resistance performance.
    • 提供了一种叶片密封装置,其中在壳体内具有边缘部分以与叶片密封元件中的不平行的倒角边缘相关联。 在这种情况下,叶片密封元件相对于旋转轴在向外的方向或向内方向上的偏转产生边缘和倒角边缘之间的控制间隙X,XX的变化。 控制间隙X,XX的这种增加或减少调节呈现给叶片密封元件的空气动力学径向力,由此这些元件可以更精确地保持在期望的叶位置,以优化泄漏,同时实现更好的耐磨性能。