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    • 34. 发明申请
    • FERROMAGNETIC USER INTERFACES
    • FERROMAGNETIC用户界面
    • US20100302199A1
    • 2010-12-02
    • US12472257
    • 2009-05-26
    • Stuart TaylorJonathan HookShahram IzadiNicolas VillarDavid Alexander ButlerStephen E Hodges
    • Stuart TaylorJonathan HookShahram IzadiNicolas VillarDavid Alexander ButlerStephen E Hodges
    • G06F3/045
    • G06F3/046G06F3/016
    • Ferromagnetic user interfaces are described. In embodiments, user interface devices are described that can detect the location of movement on a user-touchable portion by sensing movement of a ferromagnetic material. In some embodiments sensors are arranged in a two dimensional array, and the user interface device can determine the location of the movement in a plane substantially parallel to the two-dimensional array and the acceleration of movement substantially perpendicular to the two-dimensional array. In other embodiments, user interface devices are described that can cause a raised surface region to be formed on a ferrofluid layer of a user-touchable portion, which is detectable by the touch of a user. Embodiments describe how the raised surface region can be moved on the ferrofluid layer. Embodiments also describe how the raised surface region can be caused to vibrate.
    • 描述了铁磁用户界面。 在实施例中,描述了可以通过感测铁磁材料的移动来检测用户可触摸部分上的移动位置的用户界面设备。 在一些实施例中,传感器被布置成二维阵列,并且用户界面设备可以确定基本上平行于二维阵列的平面中的移动位置和基本上垂直于二维阵列的移动加速度。 在其他实施例中,描述了用户界面设备,其可以使得可以通过用户的触摸可以检测到的用户可触摸部分的铁磁流体层形成凸起的表面区域。 实施例描述了凸起表面区域如何在铁磁流体层上移动。 实施例还描述了如何使凸起的表面区域发生振动。
    • 37. 发明授权
    • Ferromagnetic user interfaces
    • 铁磁用户界面
    • US08400410B2
    • 2013-03-19
    • US12472257
    • 2009-05-26
    • Stuart TaylorJonathan HookShahram IzadiNicolas VillarDavid Alexander ButlerStephen E. Hodges
    • Stuart TaylorJonathan HookShahram IzadiNicolas VillarDavid Alexander ButlerStephen E. Hodges
    • G06F3/041
    • G06F3/046G06F3/016
    • Ferromagnetic user interfaces are described. In embodiments, user interface devices are described that can detect the location of movement on a user-touchable portion by sensing movement of a ferromagnetic material. In some embodiments sensors are arranged in a two dimensional array, and the user interface device can determine the location of the movement in a plane substantially parallel to the two-dimensional array and the acceleration of movement substantially perpendicular to the two-dimensional array. In other embodiments, user interface devices are described that can cause a raised surface region to be formed on a ferrofluid layer of a user-touchable portion, which is detectable by the touch of a user. Embodiments describe how the raised surface region can be moved on the ferrofluid layer. Embodiments also describe how the raised surface region can be caused to vibrate.
    • 描述了铁磁用户界面。 在实施例中,描述了可以通过感测铁磁材料的移动来检测用户可触摸部分上的移动位置的用户界面设备。 在一些实施例中,传感器被布置成二维阵列,并且用户界面设备可以确定基本上平行于二维阵列的平面中的移动位置和基本上垂直于二维阵列的移动加速度。 在其他实施例中,描述了用户界面设备,其可以使得可以通过用户的触摸可以检测到的用户可触摸部分的铁磁流体层形成凸起的表面区域。 实施例描述了凸起表面区域如何在铁磁流体层上移动。 实施例还描述了如何使凸起的表面区域发生振动。