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    • 3. 发明申请
    • TOUCH BUTTON FALSE ACTIVATION SUPPRESSION
    • 触摸按钮虚拟激活抑制
    • US20110090169A1
    • 2011-04-21
    • US12997373
    • 2008-06-10
    • Marko Karhiniemi
    • Marko Karhiniemi
    • G06F3/041
    • G06F3/04883G06F3/0418H03K17/962H03K2017/9613H03K2217/960705
    • A touch member (210) comprises a touch surface (20, 30) having at least two sensor electrodes (21-23) that are separated from each other on the touch surface (20, 30). Each of the sensor electrodes (21-23) have a certain signal level threshold with relation to activate/lock the touch member (210). The touch surface (20, 30) is divided into a first area and a second area each comprising at least one of the sensor electrodes (21-23). Upon touching the touch member (210) in an unlocked state, the at least two electrodes (21-23) are arranged to measure periodically a signal level received from each of the electrodes (21-23) to indicate a touch location, report periodically the touch location with respect to the first area of the touch surface (20, 30), and report the measured signal level of each of the electrodes (21-23) in the second area of the touch surface (20, 30). The controller (214) sends an instruction to select an operation state of the touch member (210) based on calculated touch location information of the reported touch location and compared signal level information of the reported measured signal level.
    • 触摸构件(210)包括具有在触摸表面(20,30)上彼此分离的至少两个传感器电极(21-23)的触摸表面(20,30)。 传感器电极(21-23)中的每一个具有与激活/锁定触摸部件(210)有关的某个信号电平阈值。 触摸表面(20,30)被分成第一区域和第二区域,每个区域包括至少一个传感器电极(21-23)。 在触摸构件(210)处于未锁定状态时,所述至少两个电极(21-23)被布置成周期性地测量从每个电极(21-23)接收的信号电平以指示触摸位置,周期性地报告 相对于触摸表面(20,30)的第一区域的触摸位置,并且将触摸表面(20,30)的第二区域中的每个电极(21-23)的测量信号电平报告。 控制器(214)基于计算出的触摸位置的触摸位置信息发送选择触摸部件(210)的操作状态的指令,并且比较所报告的测量信号电平的信号电平信息。
    • 4. 发明授权
    • Sensors
    • 传感器
    • US07830365B2
    • 2010-11-09
    • US11449434
    • 2006-06-07
    • Marko KarhiniemiJuhani TuovinenJari Nousiainen
    • Marko KarhiniemiJuhani TuovinenJari Nousiainen
    • G06F3/041
    • G06F3/045G06F2203/04113
    • A sensor includes a rectangular conductive sheet. Electrical connectors are connected at each corner of the sheet. A number of non-conductive features, e.g. apertures, are formed in this sheet. In one embodiment, V-shaped features extend from near the corners of the sheet towards the centre of the sheet and then turn towards an adjacent corner. Smaller V-shaped features reside in the area between the larger features and the closest edge of the sheet. In another embodiment, a spider web formation of conductive tracks or paths is provided. This provides hardware correction of pincushion error. It reduces or eliminates the need for software correction of pincushion error.
    • 传感器包括矩形导电片。 电连接器连接在纸张的每个角落。 许多非导电特征,例如, 孔,形成在该片中。 在一个实施例中,V形特征从片材的角部附近向片材的中心延伸,然后转向相邻的拐角。 较小的V形特征位于较大特征和片材最近边缘之间的区域。 在另一个实施例中,提供了导电轨道或路径的蜘蛛网形成。 这提供枕形错误的硬件校正。 它减少或消除了对枕形误差的软件校正的需要。
    • 5. 发明申请
    • KEYPAD APPARATUS
    • 键盘装置
    • US20110221680A1
    • 2011-09-15
    • US13125624
    • 2008-10-31
    • Marko KarhiniemiJuhani Tuovinen
    • Marko KarhiniemiJuhani Tuovinen
    • G06F3/02H03K17/975
    • G06F3/0202G06F3/03G06F3/044H01H2239/006H03K17/962H03K17/975H03K2217/960775
    • The disclosure relates to implementing different key types on a keypad or keyboard. The implementation can be enabled e.g. by an apparatus including a substrate (28) including a capacitive sensor element (29), the capacitive sensor element having a first electrode (24) forming a first capacitor with an object touching or coming into proximity of the first electrode, wherein the capacitive sensor element is configured to generate a first signal responsive to the object touching or coming into proximity of the capacitive sensor element, a first capacitor circuit coupled to at least the first electrode, and a dome (26) configured to complete, responsive to the dome being depressed, an electric circuit including at least the first capacitor and the first capacitor circuit to form a second capacitor circuit, wherein the second capacitor circuit is configured to generate a second signal.
    • 本公开涉及在键盘或键盘上实现不同的键类型。 该实现可以被启用,例如 通过包括包括电容传感器元件(29)的基板(28)的装置,电容传感器元件具有形成第一电容器的第一电极(24),物体接触或接近第一电极,其中电容传感器 元件被配置为产生响应于物体接触或进入电容传感器元件附近的第一信号,耦合到至少第一电极的第一电容器电路和配置成响应于圆顶的完成的圆顶(26) 包括至少包括第一电容器和第一电容器电路的电路,以形成第二电容器电路,其中第二电容器电路被配置为产生第二信号。
    • 7. 发明申请
    • Uniform threshold for capacitive sensing
    • 电容传感均匀阈值
    • US20080314725A1
    • 2008-12-25
    • US11821205
    • 2007-06-22
    • Marko KarhiniemiJari Nouslainen
    • Marko KarhiniemiJari Nouslainen
    • H03K17/975
    • G06F3/044G06F2203/04809
    • The specification and drawings present a new apparatus and method for providing and using a uniform threshold for capacitive touch sensing in a user interface having a non-flat touch surface. The capacitive touch sensor can to provide a sensor signal using the uniform capacitance threshold level as a function of a location of an object (e.g., finger, stylus, etc.) on or near the non-flat touch surface of a user interface module using a substantially uniform distance between the non-flat touch surface and a capacitive touch sensor layer, and/or using a gradient of a dielectric constant of materials between the non-flat touch surface and the capacitive touch sensor layer according to a predetermined criterion.
    • 本说明书和附图提出了一种用于在具有非平坦触摸表面的用户界面中提供和使用用于电容式触摸感测的均匀阈值的新装置和方法。 电容式触摸传感器可以使用均匀电容阈值电平作为用户接口模块的非平坦触摸表面上或附近的对象(例如,手指,触笔等)的位置的函数来提供传感器信号,所述非平坦触摸表面使用 非平坦触摸表面和电容式触摸传感器层之间的基本上均匀的距离,和/或根据预定标准使用非平坦触摸表面和电容式触摸传感器层之间的材料介电常数的梯度。
    • 8. 发明授权
    • Touch button false activation suppression
    • 触摸按钮虚激活抑制
    • US08395594B2
    • 2013-03-12
    • US12997373
    • 2008-06-10
    • Marko Karhiniemi
    • Marko Karhiniemi
    • G06F3/041
    • G06F3/04883G06F3/0418H03K17/962H03K2017/9613H03K2217/960705
    • A touch member (210) comprises a touch surface (20, 30) having at least two sensor electrodes (21-23) that are separated from each other on the touch surface (20, 30). Each of the sensor electrodes (21-23) have a certain signal level threshold with relation to activate/lock the touch member (210). The touch surface (20, 30) is divided into a first area and a second area each comprising at least one of the sensor electrodes (21-23). Upon touching the touch member (210) in an unlocked state, the at least two electrodes (21-23) are arranged to measure periodically a signal level received from each of the electrodes (21-23) to indicate a touch location, report periodically the touch location with respect to the first area of the touch surface (20, 30), and report the measured signal level of each of the electrodes (21-23) in the second area of the touch surface (20, 30). The controller (214) sends an instruction to select an operation state of the touch member (210) based on calculated touch location information of the reported touch location and compared signal level information of the reported measured signal level.
    • 触摸构件(210)包括具有在触摸表面(20,30)上彼此分离的至少两个传感器电极(21-23)的触摸表面(20,30)。 传感器电极(21-23)中的每一个具有与激活/锁定触摸部件(210)有关的某个信号电平阈值。 触摸表面(20,30)被分成第一区域和第二区域,每个区域包括至少一个传感器电极(21-23)。 在触摸构件(210)处于未锁定状态时,所述至少两个电极(21-23)被布置成周期性地测量从每个电极(21-23)接收的信号电平以指示触摸位置,周期性地报告 相对于触摸表面(20,30)的第一区域的触摸位置,并且将触摸表面(20,30)的第二区域中的每个电极(21-23)的测量信号电平报告。 控制器(214)基于计算出的触摸位置的触摸位置信息发送选择触摸部件(210)的操作状态的指令,并且比较所报告的测量信号电平的信号电平信息。
    • 9. 发明授权
    • Uniform threshold for capacitive sensing
    • 电容传感均匀阈值
    • US08063330B2
    • 2011-11-22
    • US11821205
    • 2007-06-22
    • Marko KarhiniemiJari Nousiainen
    • Marko KarhiniemiJari Nousiainen
    • H03K17/975
    • G06F3/044G06F2203/04809
    • The specification and drawings present a new apparatus and method for providing and using a uniform threshold for capacitive touch sensing in a user interface having a non-flat touch surface. The capacitive touch sensor can to provide a sensor signal using the uniform capacitance threshold level as a function of a location of an object (e.g., finger, stylus, etc.) on or near the non-flat touch surface of a user interface module using a substantially uniform distance between the non-flat touch surface and a capacitive touch sensor layer, and/or using a gradient of a dielectric constant of materials between the non-flat touch surface and the capacitive touch sensor layer according to a predetermined criterion.
    • 本说明书和附图提出了一种用于在具有非平坦触摸表面的用户界面中提供和使用用于电容式触摸感测的均匀阈值的新装置和方法。 电容式触摸传感器可以使用均匀电容阈值电平作为用户接口模块的非平坦触摸表面上或附近的对象(例如,手指,触笔等)的位置的函数来提供传感器信号,所述非平坦触摸表面使用 非平坦触摸表面和电容式触摸传感器层之间的基本上均匀的距离,和/或根据预定标准使用非平坦触摸表面和电容式触摸传感器层之间的材料介电常数的梯度。