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    • 4. 发明申请
    • Camera Interface in a Portable Handheld Electronic Device
    • 便携式手持电子设备中的相机接口
    • US20100020221A1
    • 2010-01-28
    • US12508534
    • 2009-07-23
    • David John TupmanE-Cheng Chang
    • David John TupmanE-Cheng Chang
    • G06F3/041H04N5/222H04N5/38
    • H04N5/23216G06F3/04883G06F2203/04808H04N5/23212H04N5/23293H04N5/2353H04N5/772
    • In accordance with some embodiments, a method is performed at a handheld electronic device having a built-in digital camera and a touch sensitive screen. The method includes detecting a multi-finger gesture on the touch sensitive screen, wherein the touch sensitive screen is serving as part of an electronic viewfinder of the camera; storing coordinates of a location corresponding to the detected multi-finger gesture; translating the stored coordinates to a selected area of an image that is captured by the camera and that is being displayed on the touch sensitive screen; contracting or expanding the selected area in response to the user's fingers undergoing a pinching movement or a spreading movement, respectively, while the detected multi-finger gesture remains in contact with the touch sensitive screen; and applying an automatic image capture parameter adjustment process that gives priority to the selected area.
    • 根据一些实施例,在具有内置数字照相机和触敏屏幕的手持式电子设备上执行方法。 该方法包括在触敏屏幕上检测多手指手势,其中触敏屏幕用作相机的电子取景器的一部分; 存储与检测到的多手指手势相对应的位置的坐标; 将存储的坐标转换为由相机捕获并且正在显示在触敏屏幕上的图像的选定区域; 响应于用户的手指分别进行捏合运动或扩展运动,收缩或扩展所选择的区域,同时检测到的多指手势保持与触敏屏幕的接触; 以及应用优先选择区域的自动图像拍摄参数调整处理。
    • 5. 发明授权
    • Method and system for discovering a power source on a peripheral bus
    • 在外围总线上发现电源的方法和系统
    • US07581119B2
    • 2009-08-25
    • US11031288
    • 2005-01-07
    • David John TupmanKen HermanBarry Twycross
    • David John TupmanKen HermanBarry Twycross
    • G06F1/26
    • G06F1/266Y10T307/625
    • Improved techniques to recognize a power source on a peripheral bus and/or determine power available from the power source via the peripheral bus are disclosed. Typically, the peripheral bus is supported by a cable connected between a host device and an electronic device. In this case, the host device is a power source (e.g., power adapter or battery pack) and the cable is used to provide power from the power source to the electronic device. Hence, by understanding the power available from the power source, the electronic device can manage its power utilization so as to operate in a stable and reliable manner. The electronic device is, for example, a portable computing device. Examples of portable computing devices include a Portable Digital Assistant (PDA) and a portable media player.
    • 公开了用于识别外围总线上的电源和/或经由外围总线确定从电源获得的功率的改进的技术。 通常,外围总线由连接在主机设备和电子设备之间的电缆支持。 在这种情况下,主机设备是电源(例如,电源适配器或电池组),并且电缆用于从电源向电子设备提供电力。 因此,通过理解来自电源的电力,电子设备可以管理其电力利用,以便以稳定和可靠的方式操作。 电子设备例如是便携式计算设备。 便携式计算设备的示例包括便携式数字助理(PDA)和便携式媒体播放器。
    • 8. 发明授权
    • Digital communications system with variable-bandwidth traffic channels
    • 具有可变带宽业务信道的数字通信系统
    • US08457157B2
    • 2013-06-04
    • US13405969
    • 2012-02-27
    • Wendell B. SanderBarry CorlettDavid John TupmanBrian SanderJeffrey J. TerlizziAndrew BrightAnup Sharma
    • Wendell B. SanderBarry CorlettDavid John TupmanBrian SanderJeffrey J. TerlizziAndrew BrightAnup Sharma
    • H04J3/16
    • H04J3/1682H04M1/6058
    • Electronic devices and equipment may communicate over a wired communications path. The wired communications path may include one or more wires and may be associated with a headphone cable. Data may be conveyed in the form of a digital data stream containing multiple traffic channels. The digital data stream may include superframes, each of which has multiple frames of data. The frames of data may each contain a number of data slots. Some of the slots in a superframe may be used exclusively by a particular one of the traffic channels. Boundary slots may be shared between traffic channels. Data interface circuitry may implement a data dispersion algorithm that determines the pattern in which data from each traffic channel is distributed within each boundary slot. Transmitting data interface circuitry may merge traffic channels into a single data stream. Receiving data interface circuitry may reconstruct the traffic channels.
    • 电子设备和设备可以通过有线通信路径进行通信。 有线通信路径可以包括一个或多个电线并且可以与耳机线缆相关联。 数据可以以包含多个业务信道的数字数据流的形式传送。 数字数据流可以包括超帧,每个超帧具有多个数据帧。 数据帧可以各自包含多个数据时隙。 超帧中的一些时隙可以由特定的业务信道专门使用。 边界槽可以在通道之间共享。 数据接口电路可以实现数据分散算法,其确定在每个边界时隙内分布来自每个业务信道的数据的模式。 传输数据接口电路可以将业务信道合并成单个数据流。 接收数据接口电路可以重建业务信道。