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    • 94. 发明申请
    • LOCATING SATELLITES
    • 定位卫星
    • US20110316736A1
    • 2011-12-29
    • US13226369
    • 2011-09-06
    • Philip Mattos
    • Philip Mattos
    • G01S19/42
    • G01S19/05G01S19/258G01S19/27
    • A system and method of locating the position of a satellite or a user using a satellite positioning system. The system and method includes receiving, at a terminal, satellite positioning data for at least one specified time period over a communications channel. In addition, the system includes storing, at the terminal, the satellite positioning data for the at least one specified time period. Responsive to an event at a later time, the system generally calculates, at the terminal, the satellite position at the later time based only on the satellite positioning data for the at least one specified time period.
    • 使用卫星定位系统定位卫星或用户的位置的系统和方法。 该系统和方法包括在终端处通过通信信道接收至少一个指定时间段的卫星定位数据。 另外,该系统包括在终端处存储至少一个指定时间段的卫星定位数据。 响应于稍后的事件,系统通常仅在至少一个指定时间段的卫星定位数据的基础上在终端计算稍后时间的卫星位置。
    • 96. 发明申请
    • SCROLLING INPUT DEVICE
    • 滚动输入装置
    • US20110148760A1
    • 2011-06-23
    • US12973539
    • 2010-12-20
    • Mathieu Reigneau
    • Mathieu Reigneau
    • G06F3/033G06F3/042
    • G06F3/042G06F3/03543G06F3/0421G06F3/0428G06F2203/04109
    • An input device may include an image sensor having an imaging surface comprising an array of pixels, and an optical waveguide layer carried by the imaging surface and having an exposed user surface and a first refractive index associated therewith. The input device may also include a substrate between the optical waveguide layer and the image sensor and having a second refractive index associated therewith that is lower than first refractive index. A collimation layer may be between the image sensor and the substrate. A light source may be configured to transmit light into the optical waveguide so that the light therein undergoes a total internal reflection. The optical waveguide may be being adjacent the imaging surface so that an object brought into contact with the exposed user surface disturbs the total internal reflection results in an image pattern on the imaging surface.
    • 输入设备可以包括具有包括像素阵列的成像表面的图像传感器和由成像表面承载并且具有暴露的使用者表面和与其相关联的第一折射率的光波导层。 输入装置还可以包括在光波导层和图像传感器之间并且具有低于第一折射率的第二折射率的衬底。 准直层可以在图像传感器和基板之间。 光源可以被配置为将光传输到光波导中,使得其中的光经历全内反射。 光波导可以与成像表面相邻,使得与暴露的使用者表面接触的物体在成像表面上的图像图案中干扰全部内部反射结果。
    • 97. 发明申请
    • OR RELATING TO OPTICAL NAVIGATION DEVICES
    • 或与光学导航设备相关
    • US20110141487A1
    • 2011-06-16
    • US12964146
    • 2010-12-09
    • Jeffrey M. RAYNOR
    • Jeffrey M. RAYNOR
    • G01B11/14
    • G06F3/042G01C3/08G06K9/00H01L27/14643H01L27/323
    • An optical navigation device includes a navigation radiation source capable of producing a beam of radiation, and an optical element. The optical navigation device is for identifying movement of an object to thereby enable a control action to be carried out. A sensor is for receiving an image based upon reflected radiation from the navigation radiation source, and at least one illumination radiation source is for illuminating the optical navigation device. The device is operable, in recurrent cycles of at least reset, expose, and readout phases, to activate the at least one illumination radiation source during the reset phase. The reset phase may have the longest duration of the phases.
    • 光学导航装置包括能够产生辐射束的导航辐射源和光学元件。 光学导航装置用于识别物体的移动,由此能够执行控制动作。 传感器用于基于来自导航辐射源的反射辐射来接收图像,并且至少一个照明辐射源用于照亮光学导航装置。 该装置在至少复位,曝光和读出阶段的周期中可操作,以在复位阶段激活至少一个照明辐射源。 复位阶段可能具有相位最长的持续时间。