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    • 2. 发明申请
    • Device for Digital Communication Through Capacitive Coupling
    • 通过电容耦合进行数字通信的装置
    • US20140028607A1
    • 2014-01-30
    • US13560963
    • 2012-07-27
    • Liquan TanJonah A. HarleyFeiqiao Brian Yu
    • Liquan TanJonah A. HarleyFeiqiao Brian Yu
    • G06F3/044
    • G06F3/044G06F3/03545G06F3/0416G06F3/045
    • A computing device configured to communicate with an input device. The computing device includes a processor, a touch interface, such as a touch screen, and a receiving unit. The touch interface is configured to detect an input signal corresponding to an object approaching or contacting a surface. The receiving unit is configured to receive, through the touch interface, at least one input signal from the input device, and the receiving unit amplifies the at least one input signal creating at least one amplified input signal. Additionally, at least one of the processor or the receiving unit analyzes the at least one amplified input signal and creates at least one output digital signal corresponding to the at least one input signal.
    • 被配置为与输入设备通信的计算设备。 计算设备包括处理器,诸如触摸屏的触摸界面和接收单元。 触摸界面被配置为检测对应于接近或接触表面的对象的输入信号。 接收单元被配置为通过触摸界面接收来自输入设备的至少一个输入信号,并且接收单元放大至少一个输入信号,产生至少一个放大的输入信号。 此外,处理器或接收单元中的至少一个分析至少一个放大的输入信号,并创建与至少一个输入信号对应的至少一个输出数字信号。
    • 9. 发明授权
    • Pivot-less watt linkage, pivot-less watt linkage-based suspension and micromachined device incorporating same
    • 无枢轴瓦特联动,无转位瓦特联动悬挂和结合相同的微加工装置
    • US06668674B2
    • 2003-12-30
    • US10042805
    • 2001-12-19
    • Storrs T. HoenJonah A. Harley
    • Storrs T. HoenJonah A. Harley
    • G05G100
    • F16H21/04Y10T74/18968Y10T74/20Y10T74/20006Y10T74/20207
    • The pivot-less Watt linkage supports a first rigid element relative to a second rigid element and permits relative motion between the rigid elements. The pivot-less Watt linkage comprises an elongate, rigid, floating beam, an elongate first flexible beam, an elongate second flexible beam and a flexible member. The first flexible beam extends in a first direction from a first point on the floating beam to the first rigid element. The second flexible beam extends in a second direction, substantially opposite the first direction, from a second point on the floating beam to the first rigid element. The second point is spatially separated from the first point along the length of the floating beam. The flexible member extends in the first direction from a third point on the floating beam to the second rigid element. The third point is intermediate between the first point and the second point.
    • 无枢转的瓦特连接件相对于第二刚性元件支撑第一刚性元件并允许刚性元件之间的相对运动。 无枢转的瓦特联动装置包括细长的,刚性的浮动梁,细长的第一柔性梁,细长的第二柔性梁和柔性构件。 第一柔性梁在第一方向上从浮动梁上的第一点延伸到第一刚性元件。 第二柔性梁在与第一方向大致相反的第二方向上从浮动梁上的第二点延伸到第一刚性元件。 第二点与沿着浮动梁的长度的第一点在空间上分离。 柔性构件在第一方向上从浮动梁上的第三点延伸到第二刚性元件。 第三点在第一点和第二点之间。
    • 10. 发明授权
    • Stylus orientation detection
    • 触笔方向检测
    • US08638320B2
    • 2014-01-28
    • US13166743
    • 2011-06-22
    • Jonah A. HarleyLi-Quan TanDebanjan MukherjeeSteven Porter Hotelling
    • Jonah A. HarleyLi-Quan TanDebanjan MukherjeeSteven Porter Hotelling
    • G06F3/033
    • G06F3/044G06F3/03545
    • Stylus orientation detection is disclosed. In an example, the orientation of a stylus relative to a contacting surface, e.g., a touch panel, can be detected by detecting a capacitance at one or more locations on the stylus relative to the surface, and then using the capacitance(s) to determine the orientation of the stylus relative to the surface. In another example, the orientation of a stylus relative to a contacting surface, e.g., a touch panel, can be detected by first detecting the orientation of the stylus relative to a reference, detecting the orientation of the contacting surface relative to the reference, and then calculating the orientation of the stylus relative to the contacting surface using the two detected orientations.
    • 披露了触针取向检测。 在一个示例中,触针相对于接触表面(例如触摸面板)的取向可以通过检测触针上相对于表面的一个或多个位置处的电容来检测,然后使用电容 确定触控笔相对于表面的方向。 在另一示例中,触针相对于接触表面(例如触摸面板)的取向可以通过首先检测触针相对于基准的取向,检测接触表面相对于基准的取向来检测,以及 然后使用两个检测到的取向计算触针相对于接触表面的取向。