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    • 1. 发明授权
    • Combining touch screen and other sensing detections for user interface control
    • 结合触摸屏和其他感应检测功能,实现用户界面控制
    • US08928609B2
    • 2015-01-06
    • US13544713
    • 2012-07-09
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • G06F3/041
    • G06F3/044G06F3/0416
    • A touch sensitive display includes a capacitive touch sensor configured to output capacitance values. A motion sensor makes a motion detection and generates a motion signal including a motion value indicative of sensed motion detection. A touch detection circuit is coupled to receive the capacitance values and motion values. The touch detection circuit processes the capacitance values to make a hovering detection and a touching detection with respect to the display. The touch detection circuit further generates an output signal including the motion value correlated in time with each of the hovering detection and touching detection. The output signal may be processed as a user interface control signal. The output signal may also be processed to determine an impulsive strength of the touching detection as a function of an elapsed time between hover and touch and the measured motion values.
    • 触敏显示器包括被配置为输出电容值的电容式触摸传感器。 运动传感器进行运动检测并产生运动信号,该运动信号包括指示检测到的运动检测的运动值。 耦合触摸检测电路以接收电容值和运动值。 触摸检测电路处理电容值以对显示进行悬停检测和触摸检测。 触摸检测电路进一步生成包括与悬停检测和触摸检测中的每一个相关的运动值的输出信号。 可以将输出信号作为用户界面控制信号进行处理。 还可以处理输出信号以确定触摸检测的脉冲强度作为在悬停和触摸之间经过的时间以及所测量的运动值的函数。
    • 2. 发明申请
    • COMBINING TOUCH SCREEN AND OTHER SENSING DETECTIONS FOR USER INTERFACE CONTROL
    • 组合触摸屏和用户界面控制的其他感应检测
    • US20140009430A1
    • 2014-01-09
    • US13544713
    • 2012-07-09
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • G06F3/044
    • G06F3/044G06F3/0416
    • A touch sensitive display includes a capacitive touch sensor configured to output capacitance values. A motion sensor makes a motion detection and generates a motion signal including a motion value indicative of sensed motion detection. A touch detection circuit is coupled to receive the capacitance values and motion values. The touch detection circuit processes the capacitance values to make a hovering detection and a touching detection with respect to the display. The touch detection circuit further generates an output signal including the motion value correlated in time with each of the hovering detection and touching detection. The output signal may be processed as a user interface control signal. The output signal may also be processed to determine an impulsive strength of the touching detection as a function of an elapsed time between hover and touch and the measured motion values.
    • 触敏显示器包括被配置为输出电容值的电容式触摸传感器。 运动传感器进行运动检测并产生运动信号,该运动信号包括指示检测到的运动检测的运动值。 耦合触摸检测电路以接收电容值和运动值。 触摸检测电路处理电容值以对显示进行悬停检测和触摸检测。 触摸检测电路进一步生成包括与悬停检测和触摸检测中的每一个相关的运动值的输出信号。 可以将输出信号作为用户界面控制信号进行处理。 还可以处理输出信号以确定触摸检测的脉冲强度作为在悬停和触摸之间经过的时间以及所测量的运动值的函数。
    • 5. 发明授权
    • Manufacturing method of a microelectromechanical switch
    • 微机电开关的制造方法
    • US07022542B2
    • 2006-04-04
    • US10746868
    • 2003-12-24
    • Chantal CombiBenedetto Vigna
    • Chantal CombiBenedetto Vigna
    • H01L21/00
    • H01H59/0009
    • The method for manufacturing a micromechanical switch includes manufacturing a hanging bar, on a first semiconductor substrate, equipped at an end thereof with a contact electrode, and a frame projecting from the first semiconductor substrate. A second semiconductor substrate with conductive tracks includes a second input/output electrode and a third starting electrode, and first and second spacers electrically connected to the conductive tracks. The frame is abutted with the first spacers so that the fourth contact electrode abuts on the second input/output electrode in response to an electrical signal provided to the hanging bar by the third starting electrode.
    • 微机电开关的制造方法包括在第一半导体基板上制造悬挂杆,第一半导体基板的一端配备有接触电极,以及从第一半导体基板突出的框架。 具有导电轨道的第二半导体衬底包括第二输入/输出电极和第三起始电极,以及电连接到导电轨道的第一和第二间隔件。 框架与第一间隔件邻接,使得第四接触电极响应于通过第三起动电极提供给吊杆的电信号而抵靠第二输入/输出电极。
    • 8. 发明授权
    • Micrometric actuation, hard disk read/write unit with a flexure and microactuator formed in a monolithic body of semiconductor material
    • 微量致动,硬盘读/写单元,具有形成在半导体材料的整体中的挠曲和微型致动器
    • US06624981B1
    • 2003-09-23
    • US09512148
    • 2000-02-23
    • Benedetto Vigna
    • Benedetto Vigna
    • G11B5596
    • G11B5/484Y10S977/725
    • A hard disk read/write unit is formed in a monolithic body of semiconductor material, including a suspension structure, a coupling or flexure element integral with the suspension structure, and a microactuator, integral with the coupling. The monolithic body has a first portion accommodating integrated electronic components, and a second portion, accommodating the coupling and the microactuator. The coupling is formed from a central region, accommodating the microactuator; an annular region, separated from the central region by a first trench, and from the suspension by a second trench; a first pair of suspension arms, extending between the central region and the annular region, along a first axis; and a second pair of suspension arms, extending between the annular region and the suspension structure, along a second axis perpendicular to the first axis. The first and second pair of arms, with a reduced thickness, impart to the coupling yielding for rotations around the first and second axes of the central region.
    • 硬盘读/写单元形成在半导体材料的整体主体中,包括悬挂结构,与悬架结构一体的耦合或挠曲元件,以及与联接器成一体的微致动器。 整体式主体具有容纳集成电子部件的第一部分和容纳联轴器和微型致动器的第二部分。 联轴器由容纳微型致动器的中心区域形成; 通过第一沟槽与中心区域分离的环形区域,以及由第二沟槽从悬浮液分离的环形区域; 第一对悬臂,沿着第一轴线延伸在所述中心区域和所述环形区域之间; 以及第二对悬挂臂,沿着垂直于第一轴线的第二轴线在环形区域和悬架结构之间延伸。 具有减小的厚度的第一和第二对臂赋予了围绕中心区域的第一和第二轴线的旋转的耦合屈服。