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    • 3. 发明授权
    • Multi-chip touch screens
    • 多芯片触摸屏
    • US08860686B2
    • 2014-10-14
    • US12771583
    • 2010-04-30
    • Martin John SimmonsDan Thomas Edward PickettRichard Paul Collins
    • Martin John SimmonsDan Thomas Edward PickettRichard Paul Collins
    • G06F3/044G06F3/041
    • G06F3/044G06F3/0416G06F2203/04101
    • The exemplary devices and processing techniques allow multiple measurement devices or chips to work together to sample a screen that is larger than one measurement device might sample, by allowing sharing X or drive lines amongst the measurements devices. Particular implementations of the subject matter described in this specification can be implemented so as to realize one or more of the following optional advantages. The sharing of the drive lines may allow for a screen sized or otherwise configured to have more measurement nodes than would be produced by the sum of the nodes that could be measured by the individual devices. For a screen that requires multiple measurement devices, the drive line sharing thus may allow use of a smaller number of measuring devices.
    • 示例性的设备和处理技术允许多个测量设备或芯片一起工作以通过允许在测量设备之间共享X或驱动线来采样大于一个测量设备可能采样的屏幕。 可以实现本说明书中描述的主题的特定实现,以便实现以下可选优点中的一个或多个。 驱动线路的共享可以允许屏幕的尺寸或其他方式被配置为具有比由单个设备可以测量的节点的总和产生的更多的测量节点。 对于需要多个测量装置的屏幕,因此驱动线共享可以允许使用较少数量的测量装置。
    • 4. 发明授权
    • Two-dimensional touch sensors
    • 二维触摸传感器
    • US08736568B2
    • 2014-05-27
    • US13421199
    • 2012-03-15
    • Peter SleemanMartin John SimmonsDaniel PickettChristopher Ard
    • Peter SleemanMartin John SimmonsDaniel PickettChristopher Ard
    • G06F3/041
    • G06F3/044G06F3/0416G06F3/04883G06F2200/1614G06F2203/04808
    • In a touch sensor, as well as providing touch position data, additional data is provided on the shape of the touch. This is achieved by having sampling nodes on a finer mesh than the size of the actuating object, typically a finger, so each finger touch activates a group of adjacent nodes on the sensor. In this way, each touch has a shape formed by the activated nodes. The shape allows the touch sensor to report an angle with each touch and data indicating how elongate the touch is, preferably both together as a vector in which the direction of the vector gives the angle and the magnitude of the vector gives the ellipticity. For each frame of data collected from the sensor array, the sensor outputs an (x, y) coordinate of touch position and a further (x, y) coordinate of a shape vector.
    • 在触摸传感器中,以及提供触摸位置数据,提供关于触摸形状的附加数据。 这通过使采样节点比起动对象(通常是手指)的尺寸更细的网格来实现,因此每个手指触摸激活传感器上的一组相邻节点。 以这种方式,每个触摸具有由激活的节点形成的形状。 该形状允许触摸传感器报告每个触摸的角度和指示触摸的伸长的数据,优选地两者一起作为向量的矢量,其中向量的方向给出角度并且矢量的大小给出椭圆率。 对于从传感器阵列收集的每个数据帧,传感器输出一个(x,y)坐标的触摸位置和另一个(x,y)坐标的形状矢量。
    • 7. 发明申请
    • System and Method for Duty Cycle Control of a Crystal Oscillator
    • 晶体振荡器的占空比控制系统与方法
    • US20120046005A1
    • 2012-02-23
    • US12859601
    • 2010-08-19
    • John SimmonsKristopher Kaufman
    • John SimmonsKristopher Kaufman
    • H04B1/04G06F1/04H03M1/60
    • H03L7/00H03K3/0307
    • In accordance with some embodiments of the present disclosure, an oscillator may include a crystal resonator and a squaring circuit coupled to the crystal resonator and configured to convert a sinusoidal signal produced by the crystal resonator to a square-wave signal, the squaring circuit comprising a bias circuit configured to transmit a selected bias voltage for the squaring circuit, the selected bias voltage selected from a plurality of potential bias voltages. In accordance with this and other embodiments of the present disclosure, an oscillator may include a crystal resonator, an inverter coupled in parallel with the crystal resonator, and a programmable voltage regulator coupled to the inverter. The programmable voltage regulator may be configured to supply a first supply voltage to the inverter during a startup duration of the oscillator, and supply a second supply voltage to the inverter after the startup duration, wherein the second supply voltage is lesser than the first supply voltage.
    • 根据本公开的一些实施例,振荡器可以包括晶体谐振器和耦合到晶体谐振器的平方电路,并且被配置为将由晶体谐振器产生的正弦信号转换为方波信号,平方电路包括 偏置电路,被配置为传输用于所述平方电路的所选择的偏置电压,所述偏置电压从多个电位偏置电压中选择。 根据本公开的这个和其他实施例,振荡器可以包括晶体谐振器,与晶体谐振器并联耦合的反相器以及耦合到反相器的可编程电压调节器。 可编程稳压器可以被配置为在振荡器的启动持续时间期间向逆变器提供第一电源电压,并且在启动持续时间之后向逆变器提供第二电源电压,其中第二电源电压小于第一电源电压 。
    • 8. 发明申请
    • MULTI-CHIP TOUCH SCREENS
    • 多芯片触控屏幕
    • US20110267304A1
    • 2011-11-03
    • US12771583
    • 2010-04-30
    • Martin John SimmonsThomas Edward PickettRichard Paul Collins
    • Martin John SimmonsThomas Edward PickettRichard Paul Collins
    • G06F3/045
    • G06F3/044G06F3/0416G06F2203/04101
    • The exemplary devices and processing techniques allow multiple measurement devices or chips to work together to sample a screen that is larger than one measurement device might sample, by allowing sharing X or drive lines amongst the measurements devices. Particular implementations of the subject matter described in this specification can be implemented so as to realize one or more of the following optional advantages. The sharing of the drive lines may allow for a screen sized or otherwise configured to have more measurement nodes than would be produced by the sum of the nodes that could be measured by the individual devices. For a screen that requires multiple measurement devices, the drive line sharing thus may allow use of a smaller number of measuring devices.
    • 示例性的设备和处理技术允许多个测量设备或芯片一起工作以通过允许在测量设备之间共享X或驱动线来采样大于一个测量设备可能采样的屏幕。 可以实现本说明书中描述的主题的特定实现,以便实现以下可选优点中的一个或多个。 驱动线路的共享可以允许屏幕的尺寸或其他方式被配置为具有比由单个设备可以测量的节点的总和产生的更多的测量节点。 对于需要多个测量装置的屏幕,因此驱动线共享可以允许使用较少数量的测量装置。