Frequency sensing and magnification of portable device output
    1.
    发明授权
    Frequency sensing and magnification of portable device output 有权
    便携式设备输出的频率感测和放大

    公开(公告)号:US09430098B2

    公开(公告)日:2016-08-30

    申请号:US13717693

    申请日:2012-12-17

    Applicant: Apple Inc.

    Abstract: Devices, using emitted acoustic signals and received vibrations, determine resonant frequencies of a surface or other object, and determine useful information about that surface, including size, thickness, and material. Received vibrations include impulse vibrations from striking that surface with a finger or stylus, or from a frequency or from a swept-sinusoid emitted by the device. The device can adjust its frequency output to use the surface as an amplifier for alarms or speakers, or a center frequency for sonic output. Using an accelerometer, devices sense impulse vibrations, translating those impulses into information, such as keystrokes, game controls, mice, or musical instrument controls. Devices can emulate keyboards and input devices using tabletops. Devices can coordinate signals through multiple media, including air, surface, or EMF channels.

    Abstract translation: 使用发射的声信号和接收到的振动的装置确定表面或其他物体的共振频率,并且确定关于该表面的有用信息,包括尺寸,厚度和材料。 接收的振动包括用手指或触针撞击该表面的脉冲振动,或来自设备发射的频率或扫频正弦曲线的脉冲振动。 该设备可以调整其频率输出以使用表面作为报警或扬声器的放大器,或用于声音输出的中心频率。 使用加速度计,设备感测脉冲振动,将这些脉冲转换为信息,例如击键,游戏控制,鼠标或乐器控制。 设备可以使用桌面模拟键盘和输入设备。 设备可以通过多个介质(包括空气,表面或EMF通道)来协调信号。

    iPHONE FREQUENCY SENSOR/MAGNIFIER APPLICATION
    2.
    发明申请
    iPHONE FREQUENCY SENSOR/MAGNIFIER APPLICATION 有权
    iPHONE频率传感器/放大器应用

    公开(公告)号:US20140168170A1

    公开(公告)日:2014-06-19

    申请号:US13717693

    申请日:2012-12-17

    Applicant: APPLE INC.

    Abstract: Devices, using emitted acoustic signals and received vibrations, determine resonant frequencies of a surface or other object, and determine useful information about that surface, including size, thickness, and material. Received vibrations include impulse vibrations from striking that surface with a finger or stylus, or from a frequency or from a swept-sinusoid emitted by the device. The device can adjust its frequency output to use the surface as an amplifier for alarms or speakers, or a center frequency for sonic output. Using an accelerometer, devices sense impulse vibrations, translating those impulses into information, such as keystrokes, game controls, mice, or musical instrument controls. Devices can emulate keyboards and input devices using tabletops. Devices can coordinate signals through multiple media, including air, surface, or EMF channels.

    Abstract translation: 使用发射的声信号和接收到的振动的装置确定表面或其他物体的共振频率,并且确定关于该表面的有用信息,包括尺寸,厚度和材料。 接收的振动包括用手指或触针撞击该表面的脉冲振动,或来自设备发射的频率或扫频正弦曲线的脉冲振动。 该设备可以调整其频率输出以使用表面作为报警或扬声器的放大器,或用于声音输出的中心频率。 使用加速度计,设备感测脉冲振动,将这些脉冲转换为信息,例如击键,游戏控制,鼠标或乐器控制。 设备可以使用桌面模拟键盘和输入设备。 设备可以通过多个介质(包括空气,表面或EMF通道)来协调信号。

    Liquid activated failsafe for portable computing devices
    3.
    发明授权
    Liquid activated failsafe for portable computing devices 有权
    便携式计算设备的液体激活故障保护

    公开(公告)号:US09093835B2

    公开(公告)日:2015-07-28

    申请号:US13748353

    申请日:2013-01-23

    Applicant: Apple Inc.

    CPC classification number: H02H5/083 Y10T307/779

    Abstract: The described embodiments relate generally to portable computing devices such as notebook computers and more particularly to failsafe mechanisms designed to prevent electrical shorts in the event that a portable computing device comes in contact with a liquid. A plurality of liquid sensors can be positioned within a computing device and electrically coupled to a controller. The controller can respond to varying amounts of liquid by immediately decoupling the system electronics from the power supply, performing a controlled shut-down of the computing device, or taking no action. In some embodiments, the controller can also limit the ability of a user to reactivate the computing device following a spill until any remaining liquids are removed from the computing device.

    Abstract translation: 所描述的实施例通常涉及诸如笔记本计算机的便携式计算设备,更具体地涉及设计成在便携式计算设备与液体接触的情况下防止电气短路的故障安全机构。 多个液体传感器可以位于计算设备内并电耦合到控制器。 控制器可以通过立即将系统电子元件与电源分离,执行计算设备的受控关闭或不采取任何动作来响应不同数量的液体。 在一些实施例中,控制器还可以限制用户在溢出之后重新激活计算设备的能力,直到从计算设备移除任何剩余的液体。

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