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    • 4. 发明授权
    • Systems and methods for press force detectors
    • 压力检测器的系统和方法
    • US09574954B2
    • 2017-02-21
    • US14987907
    • 2016-01-05
    • Interlink Electronics, Inc.
    • Jeffrey R. BakerEdwin Keshesh YousafianDeclan Christopher Flannery
    • G01L1/16G01L9/02G01L9/06
    • G01L1/16G01L9/02G01L9/065
    • Certain example embodiments include a press sensor element that includes a piezoelectric layer having a first surface in communication with a first layer, the first layer including a first conductive region, where the first conductive region covers at least a central portion the first surface. The sensor element includes a second surface in communication with a second layer, the second layer including a second conductive region, a third conductive region, and a first non-conductive void region separating the second conductive region and the third conductive region. An area of the first conductive region is configured in size relative to an area of the third conductive region to substantially reduce a thermally-induced voltage change between two or more of the first, second, and third conductive regions responsive to a corresponding temperature change of at least a portion of the piezoelectric layer.
    • 某些示例性实施例包括压力传感器元件,其包括具有与第一层连通的第一表面的压电层,第一层包括第一导电区域,其中第一导电区域至少覆盖第一表面的中心部分。 传感器元件包括与第二层连通的第二表面,第二层包括第二导电区域,第三导电区域和分离第二导电区域和第三导电区域的第一非导电空隙区域。 所述第一导电区域的面积被配置为相对于所述第三导电区域的面积而大小,以基于相应的温度变化来基本上减少所述第一,第二和第三导电区域中的两个或更多个之间的热感应电压变化 压电层的至少一部分。
    • 5. 发明申请
    • SYSTEMS AND METHODS FOR PRESS FORCE DETECTORS
    • 用于压力检测器的系统和方法
    • US20160131542A1
    • 2016-05-12
    • US14987907
    • 2016-01-05
    • Interlink Electronics, Inc.
    • Jeffrey R. BakerEdwin Keshesh YousafianDeclan Christopher Flannery
    • G01L1/16
    • G01L1/16G01L9/02G01L9/065
    • Certain example embodiments include a press sensor element that includes a piezoelectric layer having a first surface in communication with a first layer, the first layer including a first conductive region, where the first conductive region covers at least a central portion the first surface. The sensor element includes a second surface in communication with a second layer, the second layer including a second conductive region, a third conductive region, and a first non-conductive void region separating the second conductive region and the third conductive region. An area of the first conductive region is configured in size relative to an area of the third conductive region to substantially reduce a thermally-induced voltage change between two or more of the first, second, and third conductive regions responsive to a corresponding temperature change of at least a portion of the piezoelectric layer.
    • 某些示例性实施例包括压力传感器元件,其包括具有与第一层连通的第一表面的压电层,第一层包括第一导电区域,其中第一导电区域至少覆盖第一表面的中心部分。 传感器元件包括与第二层连通的第二表面,第二层包括第二导电区域,第三导电区域和分离第二导电区域和第三导电区域的第一非导电空隙区域。 所述第一导电区域的面积被配置为相对于所述第三导电区域的面积而大小,以基于相应的温度变化来基本上减少所述第一,第二和第三导电区域中的两个或更多个之间的热感应电压变化 压电层的至少一部分。
    • 6. 发明授权
    • Multifunctional scroll sensor
    • 多功能滚动传感器
    • US08531392B2
    • 2013-09-10
    • US11192619
    • 2005-07-29
    • Steve B. BrantonJeffrey R. BakerDavid Lee StallardDustin J. Luck
    • Steve B. BrantonJeffrey R. BakerDavid Lee StallardDustin J. Luck
    • G09G5/00
    • G06F3/0482G06F3/03547G06F3/0485G08C17/02G08C2201/30
    • An apparatus and method for using a scroll sensor providing a touch sensitive control input surface for a plurality of control functions is provided. The input surface is divided into a plurality of regions. Each region is assigned to one of the plurality of control functions. At least one of these control functions accepts parametric control input. A first touch is received at one of the regions on the input surface. The control function assigned to the touched region is selected. If the selected control function is one of the control functions accepting parametric control input, a second touch on the input surface is received as parametric control input during an activation period for the selected control function. The second touch may be received as parametric control input at any point of the input surface.
    • 提供一种使用提供用于多个控制功能的触敏控制输入面的滚动传感器的装置和方法。 输入表面被分成多个区域。 每个区域被分配给多个控制功能之一。 这些控制功能中的至少一个接受参数控制输入。 在输入表面的一个区域上接收第一触摸。 选择分配给触摸区域的控制功能。 如果所选择的控制功能是接受参数控制输入的控制功能之一,则在所选择的控制功能的激活周期期间接收作为参数控制输入的输入表面上的第二次触摸。 可以在输入表面的任何点处接收作为参数控制输入的第二触摸。
    • 9. 发明授权
    • Miniature highly manufacturable mouse pointing device
    • 微型高度可制造的鼠标定位设备
    • US07050045B2
    • 2006-05-23
    • US10337458
    • 2003-01-07
    • Jeffrey R. BakerCarlos S. SanchezJames D. Tickle
    • Jeffrey R. BakerCarlos S. SanchezJames D. Tickle
    • G09G5/08
    • G06F3/0338H01H13/785H01H2201/032H01H2203/02H01H2221/012H04N2005/4417
    • A pointing device may be directly soldered to a printed circuit board. In one embodiment, a bottom substrate defines a sensing region with a plurality of interdigitated conductive trace regions. Each trace region includes interdigitated common and sense traces. At least one via passes through the bottom substrate for each trace. Each via supports a conductive path from one trace to at least one lead element. Each lead element is solderable to a printed circuit board. A flexible substrate is constructed from a heat resistant polymer. The flexible substrate has a resistive layer deposited on a bottom side. A raised pedestal is formed on the bottom substrate top face around at least a portion of the sensing region. The pedestal separates the interdigitated conductive traces from the flexible substrate resistive layer. A button on a keypad membrane may be used to depress the flexible substrate onto the trace region.
    • 指示设备可以直接焊接到印刷电路板。 在一个实施例中,底部基板限定具有多个叉指导电迹线区域的感测区域。 每个迹线区域包括交叉的公共和感测迹线。 每个迹线至少有一个通孔穿过底部基板。 每个通孔支持从一个迹线到至少一个引线元件的导电路径。 每个引线元件可焊接到印刷电路板。 柔性基材由耐热聚合物构成。 柔性基板具有沉积在底侧的电阻层。 凸起的基座围绕感测区域的至少一部分形成在底部基板顶面上。 基座将交错的导电迹线与柔性基板电阻层分开。 可以使用键盘膜上的按钮将柔性基板压在迹线区域上。