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    • 2. 发明申请
    • CONTROLLING POWER FOR A HEADSET
    • 控制电源
    • US20140133669A1
    • 2014-05-15
    • US13823853
    • 2011-09-28
    • Gunnar KlinghultAlexandar Rodzevski
    • Gunnar KlinghultAlexandar Rodzevski
    • H04R1/10
    • H04R1/1041H04M1/6066H04M2250/02H04M2250/12H04W52/0254Y02D70/142Y02D70/144
    • A headset device includes a component to monitor a predetermined proximity of the headset device. The predetermined proximity includes an area where a user of the headset is positioned during operation of the headset. The headset device includes a processor to execute instructions to monitor the predetermined proximity of the headset. The processor is also to determine whether a detectable object is within the predetermined proximity of the headset based on a characteristic property of the detectable object. The characteristic property of the detectable object is one of a black body emitting property or a conducting property. Additionally, the processor is to place the headset into an active state when it is determined that the detectable object is within the predetermined proximity, and place the headset into a standby state when it is determined that the detectable object is not within the predetermined proximity.
    • 耳机设备包括用于监视耳机设备的预定接近度的组件。 预定的接近度包括在头戴式耳机的操作期间耳机的用户被定位的区域。 耳机设备包括执行指令以监视耳机的预定接近度的处理器。 处理器还基于可检测对象的特性来确定可检测对象是否在耳机的预定接近度内。 可检测物体的特征是黑体发射性质或导电性质之一。 此外,当确定可检测对象在预定接近度内时,处理器将耳机置于活动状态,并且当确定可检测对象不在预定接近度内时将耳机置于待机状态。
    • 5. 发明申请
    • BASE STATION SCANNING USING MULTIPLE RECEIVE PATHS
    • 使用多种接收方式进行基站扫描
    • US20130260751A1
    • 2013-10-03
    • US13384504
    • 2010-12-17
    • Filip Skarp
    • Filip Skarp
    • H04W48/16
    • H04W48/16H04B7/0413H04B7/0871
    • A communication device (100) comprises at least a first receive path (12) and a second receive path (22). The first receive path (12) is configured to receive first radio signals, and the second receive path (22) is configured to receive second radio signals. Further, the communication device (100) comprises a reception processor (50). The reception processor (50) is configured to process the first radio signals and the second radio signals to generate a data output signal (55). Further, the communication device (100) comprises a first oscillator (13) and a second oscillator (23). The first oscillator (13) is configured to supply a first oscillator signal to the first receive path (12). The second oscillator (23) is configured to supply a second oscillator signal to the second receive path (22). Further, the communication device comprises a scanning processor (60) coupled at least to the second receive path (22) and to the second oscillator (23). The scanning processor (60) is configured to scan for radio signals from at least one base station by evaluating the second radio signals received by the second receive path (22) and controlling the second oscillator (23) to provide the second oscillator signal with frequencies which are different from a frequency of the first oscillator signal.
    • 通信设备(100)至少包括第一接收路径(12)和第二接收路径(22)。 第一接收路径(12)被配置为接收第一无线电信号,并且第二接收路径(22)被配置为接收第二无线电信号。 此外,通信设备(100)包括接收处理器(50)。 接收处理器(50)被配置为处理第一无线电信号和第二无线电信号以产生数据输出信号(55)。 此外,通信设备(100)包括第一振荡器(13)和第二振荡器(23)。 第一振荡器(13)被配置为向第一接收路径(12)提供第一振荡器信号。 第二振荡器(23)被配置为向第二接收路径(22)提供第二振荡器信号。 此外,通信设备包括至少耦合到第二接收路径(22)和第二振荡器(23)的扫描处理器(60)。 扫描处理器(60)被配置为通过评估由第二接收路径(22)接收的第二无线电信号并且控制第二振荡器(23)向第二振荡器信号提供频率来扫描来自至少一个基站的无线电信号, 它们与第一振荡器信号的频率不同。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR SWITCHING TALKING MODES AUTOMATICALLY
    • 用于自动切换计费模式的方法和装置
    • US20130222514A1
    • 2013-08-29
    • US13608096
    • 2012-09-10
    • Yinong LIU
    • Yinong LIU
    • H04N7/14
    • H04M1/605H04M2250/12H04M2250/52
    • Method and apparatus for switching talking mode automatically applicable to electronic equipment, which includes an accelerometer, proximity sensor and video camera. The method includes acquiring gravity information from the accelerometer during conversation between the electronic equipment and the other side of the conversation, and judging whether the electronic equipment is in a vertical state according to the gravity information; activating the video camera to take a capturing action if the electronic equipment is not in a vertical state, and acquiring distance information and/or image information, the distance information used for indicating distance to the captured object, and the image information used for indicating the captured object; and switching the talking mode to speakerphone mode if distance indicated by the distance information is greater than a first threshold value, and/or resolution of the image indicated by the image information is greater than a second threshold value.
    • 用于切换通话模式的方法和装置,其自动适用于包括加速度计,接近传感器和摄像机的电子设备。 该方法包括在电子设备与会话的另一侧之间的通话期间从加速度计获取重力信息,并根据重力信息判断电子设备是否处于垂直状态; 如果电子设备不处于垂直状态,则激活摄像机以拍摄拍摄动作,并且获取距离信息和/或图像信息,用于指示到被拍摄对象的距离的距离信息,以及用于指示拍摄对象的图像信息 被捕物体 以及如果由所述距离信息指示的距离大于第一阈值,并且/或由所述图像信息指示的图像的分辨率大于第二阈值,则将所述通话模式切换到扬声器模式。
    • 10. 发明申请
    • FINGER-ON DISPLAY DETECTION
    • 指尖显示检测
    • US20130181951A1
    • 2013-07-18
    • US13823171
    • 2011-05-11
    • Gunnar KlinghultAleksandar Rodzeveki
    • Gunnar KlinghultAleksandar Rodzeveki
    • G06F3/043
    • G06F3/043G06F3/0416G06F2203/04101G06F2203/04106G06F2203/04108
    • A user device comprising a touch display capable of operation in an on-touch mode or a touchless mode; one or more sensors to detect a sound wave produced when a user's finger or an instrument touches the touch display; one or more memories to store instructions; and one or more processing systems to execute the instructions and configure the one or more processing systems to: identify whether a detected sound wave includes characteristics indicative of when the user's finger or an instrument touches the touch display; and set a sensitivity mode of the touch display to a decreased level relative to an increased level associated with a touchless operation of the touch display.
    • 一种用户设备,包括能够在接触模式或无接触模式下操作的触摸显示器; 用于检测当用户的手指或乐器触摸触摸显示器时产生的声波的一个或多个传感器; 存储指令的一个或多个存储器; 以及一个或多个处理系统,用于执行所述指令并将所述一个或多个处理系统配置为:识别检测到的声波是否包括指示用户的手指或乐器何时触摸所述触摸显示器的时间的特征; 并且将触摸显示器的灵敏度模式设置为相对于与触摸显示器的无接触操作相关联的增加的水平降低的水平。