Magnetic attachment mechanism with safety latch for a desktop display

    公开(公告)号:US11246233B2

    公开(公告)日:2022-02-08

    申请号:US16557486

    申请日:2019-08-30

    Applicant: Apple Inc.

    Abstract: This application relates to a magnetic attachment mechanism attached to a stand for a display unit. The display unit includes a housing enclosing a display panel. The housing has a recess formed on a rear surface of the housing to accept the magnetic attachment mechanism. The magnetic attachment mechanism includes a magnetic element that is magnetically coupled to a corresponding magnetic element in the housing of the desktop display device when the magnetic attachment mechanism is inserted into the recess. The magnetic attachment mechanism also includes a latch mechanism that locks the display unit to the stand when the latch mechanism is engaged with a surface feature of the recess. The latch mechanism can be disengaged to allow for mobility of the display unit as separated from the stand.

    Linear Actuator
    29.
    发明申请
    Linear Actuator 审中-公开
    线性执行器

    公开(公告)号:US20160172953A1

    公开(公告)日:2016-06-16

    申请号:US15046194

    申请日:2016-02-17

    Applicant: Apple Inc.

    Abstract: Embodiments described herein may take the form of an electromagnetic actuator that produces a haptic output during operation. Generally, an electromagnetic coil is wrapped around a central magnet array. A shaft passes through the central magnet array, such that the central array may move along the shaft when the proper force is applied. When a current passes through the electromagnetic coil, the coil generates a magnetic field. The coil is stationary with respect to a housing of the actuator, while the central magnet array may move along the shaft within the housing. Titus, excitation of the coil exerts a force on the central magnet array, which moves in response to that force. The direction of the current through the coil determines the direction of the magnetic field and thus the motion of the central magnet array.

    Abstract translation: 本文描述的实施例可以采取在操作期间产生触觉输出的电磁致动器的形式。 通常,电磁线圈缠绕在中心磁体阵列周围。 轴通过中心磁体阵列,使得当施加适当的力时,中心阵列可以沿着轴移动。 当电流通过电磁线圈时,线圈产生磁场。 线圈相对于致动器的壳体是静止的,而中心磁体阵列可以沿壳体内的轴移动。 Titus,线圈的激励对中心磁体阵列施加力,响应于该力而移动。 通过线圈的电流的方向确定磁场的方向,从而确定中心磁体阵列的运动。

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