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    • 4. 发明授权
    • Optical mouse with uniform level detection
    • 具有均匀电平检测的光电鼠标
    • US07791590B1
    • 2010-09-07
    • US11147838
    • 2005-06-08
    • Gary B. GordonDerek L. KneeRajeev BadyalJason T. Hartlove
    • Gary B. GordonDerek L. KneeRajeev BadyalJason T. Hartlove
    • G09G5/08
    • G06F3/03543G06F3/0317G06F3/033G06F3/0346G06F3/038
    • An optical mouse includes a housing movable across a work surface with a source of non-coherent light in the movable housing for illuminating the work surface at a low or grazing angle of incidence, and may include a two dimensional array of photodetectors, each of which may produce an output in response to light reflected from surface irregularities on the illuminated work surface. The housing may include a memory for storing the photodetector outputs captured at one or more times. Circuitry in the housing may track movement of the housing relative to the work surface by comparing at least some of the photo detector outputs captured at a first time with at least some of the photo detector outputs captured at a second time depending upon whether a characteristic condition in the photo detector outputs, such as uniformity, is detected. The circuitry may track movement of the housing by comparing light reflected from the surface irregularities a first time with light reflected there from at a second time unless a detectable image is not included therein.
    • 光学鼠标包括可移动的外壳中的非相干光源在工作表面上移动的壳体,用于以低或掠入射角照射工作表面,并且可以包括二维阵列的光电检测器 可以响应于从被照射的工作表面上的表面凹凸反射的光产生输出。 壳体可以包括用于存储一次或多次捕获的光电检测器输出的存储器。 通过将在第一时间捕获的光检测器输出中的至少一些与在第二时间捕获的光检测器输出中的至少一些进行比较,可以跟踪壳体相对于工作表面的移动,这取决于特征条件 在光检测器输出中,例如均匀性被检测到。 电路可以通过将来自表面凹凸反射的光第一次与在第二时间反射的光进行比较来跟踪壳体的移动,除非不包括可检测图像。
    • 6. 发明申请
    • “看眼”鼠标为计算机系统
    • US20060139332A9
    • 2006-06-29
    • US11022183
    • 2004-12-23
    • Gary GordonDerek KneeRajeev BadyalJason Hartlove
    • Gary GordonDerek KneeRajeev BadyalJason Hartlove
    • G09G5/08
    • G06F3/03543G06F3/0317G06F3/033G06F3/0346G06F3/038
    • A hand operated pointing device for use with a computer includes a movable housing, a source of non-coherent light illuminating a work surface and circuitry in the movable housing using arrays of data related to light reflected by the illuminated work surface to produce values by processing portions of a first array with portions of a second array. One of the values may be identified to represent movement of the housing relative to the work surface. The light may illuminate surface irregularities at an angle of incidence low enough to produce suitable arrays of data for processing from highlights and shadows of the illuminated surface irregularities. The circuitry may produce additional values by processing another selected portion of the first array with portions of a third array or may select a fourth array for processing with the third array. Predictions may be derived from the values. Signal may be sent to a computer related to movement of the housing.
    • 与计算机一起使用的手动指示装置包括可移动外壳,照亮工作表面的非相干光源和可移动外壳中的电路,使用与被照射的工作表面反射的光相关的数据阵列,以通过处理产生值 具有第二阵列的部分的第一阵列的部分。 值之一可以被识别以表示壳体相对于工作表面的运动。 光可以以足够低的入射角照射表面凹凸,以产生合适的数据阵列,用于从被照射的表面凹凸的亮点和阴影处理。 电路可以通过用第三阵列的部分处理第一阵列的另一个选定部分来产生附加值,或者可以选择用于与第三阵列进行处理的第四阵列。 预测可以从值得出。 信号可以发送到与壳体的移动有关的计算机。
    • 7. 发明申请
    • Optical projection system for computer input devices
    • 计算机输入设备光学投影系统
    • US20050117130A1
    • 2005-06-02
    • US10722596
    • 2003-11-28
    • David BohnThomas OliverRajeev Badyal
    • David BohnThomas OliverRajeev Badyal
    • G06F3/033G06F3/038G09F19/18G03B21/22
    • G06F3/038G06F3/033G06F3/03543G09F19/18
    • A computer input device, such as an electronic mouse, having an optical projection system. The optical projection system is configured to project an image onto a housing wall surface, which may be on a side, top, or rear of the device. In one arrangement the optical projection system includes a light source, an image forming light blocker and optics. The optics may be collimating or non-collimating. In another arrangement the optical projection system may include an active LED matrix display. This system enables a use to personalize and/or customize his or her computer input device. Additionally, it permits the device to serve desirable notification functions if one or more of various events have occurred in a computer application being run on the computer. An example of event for notification includes the receipt of a message in a communications program such as an e-mail message.
    • 具有光学投影系统的计算机输入装置,例如电子鼠标。 光学投影系统被配置为将图像投影到可以位于装置的侧面,顶部或后部的壳体壁表面上。 在一种布置中,光学投影系统包括光源,成像光阻挡器和光学器件。 光学器件可以是准直的或非准直的。 在另一种布置中,光学投影系统可以包括有源LED矩阵显示器。 该系统使得能够个性化和/或定制他或她的计算机输入设备。 此外,如果在计算机上运行的计算机应用程序中发生了各种事件中的一个或多个,则允许设备提供期望的通知功能。 用于通知的事件的示例包括在诸如电子邮件消息的通信程序中接收到消息。
    • 8. 发明授权
    • CMOS power-on reset circuit
    • CMOS上电复位电路
    • US5369310A
    • 1994-11-29
    • US891587
    • 1992-06-01
    • Rajeev BadyalVernon Knowles
    • Rajeev BadyalVernon Knowles
    • G06F1/24H03K17/22H03K17/28H03K5/24
    • H03K17/223
    • A CMOS power-on reset circuit has a delay capacitor to provide a predetermined delay period. Charging and discharging of the delay capacitor is controlled by the state of a flipflop circuit. An input comparator monitors a power supply input voltage. An invalid input voltage level immediately changes the reset output signal to the invalid state and discharges the capacitor. Even after the input voltage has recovered to a valid level, recharging the capacitor is delayed until the capacitor has substantially discharged, thereby ensuring at least a predetermined delay period after the last fault condition. The delay capacitor is coupled in a feedback configuration so as to lower the threshold voltage when the delay capacitor voltage indicates to the valid state, to allow limited power supply sag, for example due to motor start-up, without resetting the circuit. Multiple power supply voltages are continuously monitored in a CMOS integrated configuration by additional input scaling resistor networks and input comparators, all coupled to the common 2-level threshold voltage node.
    • CMOS上电复位电路具有延迟电容器以提供预定的延迟周期。 延迟电容器的充电和放电由触发器电路的状态控制。 输入比较器监视电源输入电压。 无效的输入电压电平立即将复位输出信号变为无效状态并对电容放电。 即使在输入电压恢复到有效电平之后,电容器的再充电被延迟直到电容器基本上放电,从而确保在最后的故障状态之后至少预定的延迟时间。 延迟电容器以反馈配置耦合,以便当延迟电容器电压指示为有效状态时降低阈值电压,以允许例如由于电动机起动而导致有限的电源暂降而不使电路复位。 多个电源电压通过附加的输入缩放电阻网络和输入比较器在CMOS集成配置中连续监控,全部耦合到公共2级阈值电压节点。