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    • 27. 发明申请
    • Mutual capacitance touch sensing device
    • 互电容式触摸感应装置
    • US20080006453A1
    • 2008-01-10
    • US11482286
    • 2006-07-06
    • Steve Hotelling
    • Steve Hotelling
    • G06F3/044
    • G06F3/044H03K17/962H03K2217/96077H03K2217/960775
    • A mutual capacitive touch sensing device is disclosed. The touch sensing device includes a mutual capacitive sensing controller having a plurality of distinct drive lines and a plurality of distinct sense lines; a source for driving a current or voltage separately though each drive line; and a mutual capacitance sensing circuit that monitors the capacitance at the sensing lines. The touch sensing device also includes a plurality of independent and spatially distinct mutual capacitive sensing nodes set up in a non two dimensional array. Each node includes a drive electrode that is spatially separated from a sense electrode. The drive electrode is coupled to one of the drive lines and the sense electrode is coupled to one of the sense lines. Each node is set up with a different combination of drive and sense line coupled thereto.
    • 公开了一种互电容式触摸感测装置。 触摸感测装置包括具有多个不同驱动线和多个不同感测线的互电容感测控制器; 用于分别通过每个驱动线驱动电流或电压的源; 以及监测感测线路处的电容的互电容感测电路。 触摸感测装置还包括以非二维阵列建立的多个独立和空间上不同的相互电容感测节点。 每个节点包括与感测电极在空间上分离的驱动电极。 驱动电极耦合到驱动线之一,并且感测电极耦合到感测线之一。 每个节点设置有与其耦合的驱动和感测线的不同组合。
    • 28. 发明申请
    • Feedback responsive input arrangements
    • 反馈响应输入安排
    • US20070043725A1
    • 2007-02-22
    • US11204873
    • 2005-08-16
    • Steve HotellingScott BrennemanBart AndreChad BronsteinBrian HuppiChris LigtenbergEugene WhangZachary Zeliff
    • Steve HotellingScott BrennemanBart AndreChad BronsteinBrian HuppiChris LigtenbergEugene WhangZachary Zeliff
    • G06F17/30
    • G06F3/016
    • Feedback responsive input arrangements are presented where arrangements includes: a sensor in mechanical communication with a surface layer, the sensor configured to generate electronic signals in response to applied forces exerted upon the surface layer; a processing module configured to convert electronic signals into user-defined programmatic dimensions; and a tactile feedback response component configured to actuate in response to electronic signals. In some embodiments, user defined programmatic dimensions are selected from the group consisting of: a state dimension, a magnitude dimension, and a temporal dimension. In some embodiments, the processing module is further configured to process user-defined programmatic dimensions into user-defined programmatic actions. In some embodiments, user-defined programmatic actions are coupled to graphical environments, the graphical environments configured to provide a graphic feedback response based on user-defined programmatic actions. In some embodiments user-defined programmatic actions are coupled to an aural environment, the aural environment configured to provide an aural feedback.
    • 呈现反馈响应输入布置,其中布置包括:与表面层机械连通的传感器,所述传感器被配置为响应施加在表面层上的施加的力产生电子信号; 处理模块,被配置为将电子信号转换成用户定义的程序维度; 以及被配置为响应于电子信号致动的触觉反馈响应部件。 在一些实施例中,从由以下各项组成的组中选择用户定义的程序化维度:状态维度,幅度维度和时间维度。 在一些实施例中,处理模块还被配置为将用户定义的程序化维度处理为用户定义的编程动作。 在一些实施例中,用户定义的编程动作耦合到图形环境,图形环境被配置为基于用户定义的编程动作提供图形反馈响应。 在一些实施例中,将用户定义的编程动作耦合到听觉环境,所述听觉环境被配置为提供听觉反馈。