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    • 7. 发明授权
    • User input device
    • 用户输入设备
    • US09086741B2
    • 2015-07-21
    • US12915386
    • 2010-10-29
    • John HelmesShahram IzadiXiang CaoNicolas VillarRichard Banks
    • John HelmesShahram IzadiXiang CaoNicolas VillarRichard Banks
    • G06F3/0346G06F3/01G06F3/023G06F3/0354
    • G06F3/0346G06F3/016G06F3/017G06F3/0236G06F3/03547G06F2203/0339
    • A user input device is described. In an embodiment the user input device is hand held and comprises a sensing strip to detect one-dimensional motion of a user's finger or thumb along the sensing strip and to detect position of a user's finger or thumb on the sensing strip. In an embodiment the sensed data is used for cursor movement and/or text input at a master device. In an example the user input device has an orientation sensor and orientation of the device influences orientation of a cursor. For example, a user may move the cursor in a straight line in the pointing direction of the cursor by sliding a finger or thumb along the sensing strip. In an example, an alphabetical scale is displayed and a user is able to zoom into the scale and select letters for text input using the sensing strip.
    • 描述用户输入设备。 在一个实施例中,用户输入装置是手持的,并且包括感测条,用于检测使用者的手指或拇指沿感测条的一维运动,并且检测使用者的手指或拇指在感测条上的位置。 在一个实施例中,所感测的数据用于在主设备处的光标移动和/或文本输入。 在示例中,用户输入设备具有定向传感器并且设备的取向影响光标的取向。 例如,用户可以通过沿着感测条滑动手指或拇指来将光标沿光标的指向方向沿直线移动。 在一个示例中,显示字母刻度,并且用户能够放大比例并使用感测条选择用于文本输入的字母。
    • 8. 发明申请
    • User Input Device
    • 用户输入设备
    • US20120105312A1
    • 2012-05-03
    • US12915386
    • 2010-10-29
    • John HelmesShahram IzadiXiang CaoNicolas VillarRichard Banks
    • John HelmesShahram IzadiXiang CaoNicolas VillarRichard Banks
    • G09G5/00
    • G06F3/0346G06F3/016G06F3/017G06F3/0236G06F3/03547G06F2203/0339
    • A user input device is described. In an embodiment the user input device is hand held and comprises a sensing strip to detect one-dimensional motion of a user's finger or thumb along the sensing strip and to detect position of a user's finger or thumb on the sensing strip. In an embodiment the sensed data is used for cursor movement and/or text input at a master device. In an example the user input device has an orientation sensor and orientation of the device influences orientation of a cursor. For example, a user may move the cursor in a straight line in the pointing direction of the cursor by sliding a finger or thumb along the sensing strip. In an example, an alphabetical scale is displayed and a user is able to zoom into the scale and select letters for text input using the sensing strip.
    • 描述用户输入设备。 在一个实施例中,用户输入装置是手持式的,并且包括感测条,用于检测使用者的手指或拇指沿感测条的一维运动,并检测使用者的手指或拇指在感测条上的位置。 在一个实施例中,所感测的数据用于在主设备处的光标移动和/或文本输入。 在示例中,用户输入设备具有定向传感器并且设备的取向影响光标的取向。 例如,用户可以通过沿着感测条滑动手指或拇指来将光标沿光标的指向方向沿直线移动。 在一个示例中,显示字母刻度,并且用户能够放大比例并使用感测条选择用于文本输入的字母。
    • 10. 发明授权
    • Temperature detecting apparatus
    • 温度检测装置
    • US08708558B2
    • 2014-04-29
    • US12771075
    • 2010-04-30
    • Xiang Cao
    • Xiang Cao
    • G05D23/30
    • G05D23/1934
    • A temperature detecting apparatus for adjusting heat dissipating angle of a fan according to status of heat sources, includes detection module, a comparison module, a control module, and a driver module. The detection module detects temperatures of the heat sources, and converts the detected temperatures to voltage signals. The comparison module receives the voltage signals, and compares the voltage signals with a reference voltage to output control signals. The control module receives the control signals, and turns on according to the control signals. The driver module drives a plurality of air guiding fins rotating thereon. A direction of current flowing through the driver module is adjustable when the control module turns on. The driver module drives the air guiding fins turning toward to guide air flowing to one of the heat sources according to the direction of the current.
    • 一种用于根据热源的状态调节风扇的散热角度的温度检测装置,包括检测模块,比较模块,控制模块和驱动器模块。 检测模块检测热源的温度,并将检测到的温度转换为电压信号。 比较模块接收电压信号,并将电压信号与参考电压进行比较以输出控制信号。 控制模块接收控制信号,并根据控制信号打开。 驱动器模块驱动在其上旋转的多个引导翼片。 当控制模块打开时,流过驱动器模块的电流方向是可调的。 驱动模块驱动空气引导翅片转向以引导根据电流方向流动到一个热源的空气。