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    • 2. 发明申请
    • GUARDING AND SHIELDING ROUTING TRACES IN PROXIMITY SENSORS
    • 接近传感器的保护和屏蔽路径
    • WO2014127049A1
    • 2014-08-21
    • PCT/US2014/016115
    • 2014-02-12
    • SYNAPTICS INCORPORATED
    • DUNPHY, JimBOLENDER, Robert J.SCHWARTZ, AdamHOCH, David
    • G06F3/044G06F3/041
    • G06F1/1692G06F3/044
    • A capacitive input device has a sensor electrode pattern disposed on a first side of a substrate. The sensor electrode pattern comprises a plurality of sensor electrode elements disposed on the first side of a first substrate. A plurality of routing traces is disposed along a first edge of the sensor electrode pattern on the first side of the substrate and configured to communicatively couple at least some of the sensor electrodes with a processing system. A pair of guard traces is disposed in the same layer as and brackets the plurality of routing traces. A guard overlaps the routing traces, is disposed proximate the routing traces on the first side of the substrate, and ohmically couples the pair of guard traces with one another. A second insulator is disposed between the routing traces and the guard. The second insulator and the first insulator are disposed in the same layer.
    • 电容性输入装置具有设置在基板的第一侧上的传感器电极图案。 传感器电极图案包括设置在第一基板的第一侧上的多个传感器电极元件。 多个路由迹线沿着基板的第一侧上的传感器电极图案的第一边缘设置并且被配置为使处理系统的至少一些传感器电极通信地耦合。 一对保护迹线设置在与多个路由迹线相同的层中并且支架。 保护层与路由迹线重叠,被布置在衬底的第一侧上的路由迹线附近,并且将一对保护迹线彼此欧姆地耦合。 第二绝缘体设置在路由迹线和防护装置之间。 第二绝缘体和第一绝缘体设置在同一层中。
    • 5. 发明申请
    • DRIVING SENSOR ELECTRODES FOR ABSOLUTE CAPACITIVE SENSING
    • 驱动传感器电极用于绝对电容感应
    • WO2015187336A1
    • 2015-12-10
    • PCT/US2015/030867
    • 2015-05-14
    • SYNAPTICS INCORPORATED
    • HOCH, David
    • G01R27/26G01D5/24
    • G06F3/044G01R27/2605G01V3/088G06F3/0416
    • In an example, a processing system includes a sensor module having sensor circuitry. The sensor module is configured to drive sensor electrodes with a capacitive sensing signal to acquire first changes of capacitance between each of the sensor electrodes and at least one input object; and drive at least one sensor electrode in a first set of the sensor electrodes with a reference signal and at least one sensor electrode in a second set of the sensor electrodes with a capacitive sensing signal to acquire second changes of capacitance between the at least one sensor electrode in the second set and the at least one input object. The processing system further includes a capacitive measurer module configured to determine a capacitive image based at least in part on the first and second changes of capacitance.
    • 在一个示例中,处理系统包括具有传感器电路的传感器模块。 传感器模块被配置为利用电容感测信号来驱动传感器电极,以获取每个传感器电极和至少一个输入对象之间的电容的第一变化; 并且利用参考信号驱动第一组传感器电极中的至少一个传感器电极,以及在具有电容感测信号的第二组传感器电极中的至少一个传感器电极,以获取至少一个传感器 第二组中的电极和至少一个输入对象。 处理系统还包括电容测量器模块,其被配置为至少部分地基于电容的第一和第二变化来确定电容图像。
    • 6. 发明申请
    • CAPCITIVE SENSOR PATTERN
    • 有效传感器图案
    • WO2012177955A2
    • 2012-12-27
    • PCT/US2012/043655
    • 2012-06-21
    • SYNAPTICS INCORPORATEDHOCH, David
    • HOCH, David
    • G06F3/044
    • G06F3/044
    • A capacitive sensor pattern comprises a first plurality of sensor electrode elements, a second plurality of sensor electrode elements, and a third plurality of sensor electrode elements. The first plurality of sensor electrode elements is disposed in a first layer above a substrate. The second plurality of sensor electrode elements is disposed above the substrate in an additional layer. At least one of the second plurality of sensor electrode elements is physically coupled with at least two of the first plurality of sensor electrode elements. The third plurality of sensor electrode elements is disposed above the substrate in the additional layer. At least one element of the third plurality is ohmically coupled to a single element of said first plurality.
    • 电容传感器图案包括第一多个传感器电极元件,第二多个传感器电极元件和第三多个传感器电极元件。 第一多个传感器电极元件设置在基板上方的第一层中。 第二多个传感器电极元件设置在基板上方的附加层中。 所述第二多个传感器电极元件中的至少一个与所述第一多个传感器电极元件中的至少两个物理耦合。 第三多个传感器电极元件设置在附加层中的衬底上方。 第三多个元件中的至少一个元件欧姆耦合到所述第一多个元件的单个元件。