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    • 21. 发明授权
    • Sensor pattern with signal-spreading electrodes
    • 具有信号扩散电极的传感器图案
    • US09495050B1
    • 2016-11-15
    • US14297115
    • 2014-06-05
    • Cypress Semiconductor Corporation
    • Oleksandr HoshtanarIgor KravetsOleksandr KarpinAlexandre Gourevitch
    • G06F3/044
    • G06F3/044G01D5/24G06F2203/04107G06F2203/04111G06F2203/04112G06K9/0002H03K17/955
    • A capacitive sensor array may include a plurality of row sensor electrodes and a column sensor electrode capacitively coupled with each of the plurality of row sensor electrodes to form a plurality of unit cells. For each row sensor electrode, a unit cell that is associated with the column sensor electrode and the row sensor electrode comprises an area where a capacitance between the column sensor electrode and the row sensor electrode is greater than any other capacitance between the column sensor electrode and a different row sensor electrode. The capacitive sensor array further includes a first plurality of dummy electrodes, where each of the first plurality of dummy electrodes is capacitively coupled with the column sensor electrode and two adjacent row sensor electrodes of the plurality of row sensor electrodes.
    • 电容传感器阵列可以包括多个行传感器电极和与多个行传感器电极中的每一个电容耦合以形成多个单元电池的列传感器电极。 对于每个行传感器电极,与列传感器电极和行传感器电极相关联的单元电池包括列传感器电极和行传感器电极之间的电容大于列传感器电极和 不同的行传感器电极。 电容传感器阵列还包括第一多个虚拟电极,其中第一多个虚拟电极中的每一个与列传感器电极和多个行传感器电极中的两个相邻的行传感器电极电容耦合。
    • 28. 发明授权
    • Multi-touch disambiguation
    • 多点消除歧义
    • US09575602B1
    • 2017-02-21
    • US13915328
    • 2013-06-11
    • MONTEREY RESEARCH, LLC
    • Browley XiaoNelson ChowVictor P. DrakeIgor Polishchuk
    • G06F3/045G06F3/044G06F3/041
    • G06F3/044G06F3/0416G06F2203/04104
    • A capacitance sensing method may include performing a first scan of a plurality of sensor elements of a touch-sensing surface to detect a plurality of capacitance values indicating a presence of multiple contacts at the touch sensing surface. Based on the plurality of capacitance values, a plurality of coordinates may be calculated that indicate a plurality of possible contact locations for the multiple contacts. In response to detecting that the plurality of coordinates indicates the presence of the multiple contacts, a resolve scan of at least a first intersection of sensor elements may be performed, where the first intersection corresponds to at least one of the possible contact locations. Based on the resolve scan, at least one of the possible contact locations may be identified as an actual contact location of one of the multiple contacts.
    • 电容感测方法可以包括执行触摸感测表面的多个传感器元件的第一次扫描以检测指示在触摸感测表面处存在多个触点的多个电容值。 基于多个电容值,可以计算指示多个触点的多个可能的接触位置的多个坐标。 响应于检测到多个坐标指示存在多个触点,可以执行至少第一传感器元件交叉点的解析扫描,其中第一交点对应于可能的接触位置中的至少一个。 基于解决扫描,可以将可能的接触位置中的至少一个识别为多个接触中的一个的实际接触位置。
    • 29. 发明授权
    • Detection of a conductive object during an initialization process of a touch-sensing device
    • 在触摸感测装置的初始化过程期间检测导电物体
    • US09495038B2
    • 2016-11-15
    • US14520536
    • 2014-10-22
    • MONTEREY RESEARCH, LLC
    • Kristopher L Young
    • G01R27/26G06F3/041G06F3/044
    • G06F3/0418G01R27/2605G06F3/044G06F2203/04101G06F2203/04106G06F2203/04108
    • A method and system for detecting a presence of a conductive object proximate to a capacitive sense element during an initialization process of a touch-sensing device. A capacitance sensing circuit measures a reference capacitance of a reference sense element. A sensing parameter of the capacitance sensing circuit is iteratively adjusted to obtain a target measurement output value for the reference sense element. With the sensing parameter set to the sensing parameter value, the capacitance measurement circuit measures a first capacitance of a first sense element. A first capacitance difference value is determined between the first capacitance and a first baseline capacitance value for the first sense element. A presence of a conductive object is detected proximate to the first sense element when the first capacitance difference value exceeds a threshold value.
    • 一种用于在触摸感测装置的初始化过程期间检测靠近电容性感测元件的导电物体的存在的方法和系统。 电容感测电路测量参考感测元件的参考电容。 迭代地调整电容感测电路的感测参数,以获得参考感测元件的目标测量输出值。 在感测参数设置为感测参数值的情况下,电容测量电路测量第一感测元件的第一电容。 在第一电容和第一感测元件的第一基线电容值之间确定第一电容差值。 当第一电容差值超过阈值时,在第一感测元件附近检测导电物体的存在。