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    • 1. 发明申请
    • Multi-Directional Sensor
    • 多向传感器
    • US20160265950A1
    • 2016-09-15
    • US14826707
    • 2015-08-14
    • Chih-Heng HUANG
    • Chih-Heng HUANG
    • G01D11/24
    • G01P15/0891G01P15/135G01P15/18H01H35/14
    • A multi-directional sensor includes a housing unit having a surrounding wall that defines a housing space, a first magnetic component disposed on the housing unit, a conductive body disposed in the housing space and magnetically attracted to the first magnetic component, and a plurality of spaced-apart electrically conductive terminals surrounding the conductive body. When the multi-directional sensor is subjected to an impact, the conductive body is forced to move toward two adjacent conductive terminals which are opposite to the direction of impact due to inertia so as to bridge and electrically interconnect the two adjacent conductive terminals so that a signal can be generated.
    • 一种多向传感器,包括壳体单元,其具有限定壳体空间的周围壁,设置在壳体单元上的第一磁性部件,设置在壳体空间中并磁吸引到第一磁性部件的导电体,以及多个 围绕导电体的间隔开的导电端子。 当多向传感器受到冲击时,导电体被迫朝向与惯性方向相反的两个相邻的导电端子移动,以便使两个相邻的导电端子桥接和电互连,使得 可以产生信号。
    • 2. 发明授权
    • Controlled light source startup in a display
    • 在显示屏中控制光源启动
    • US09407887B2
    • 2016-08-02
    • US12754995
    • 2010-04-06
    • Mark ChampionHeng Huang
    • Mark ChampionHeng Huang
    • H04N9/31G09G3/02G09G3/34
    • H04N9/3155G09G3/025G09G3/3406G09G2320/0626G09G2330/026G09G2330/12G09G2340/04
    • Briefly, in accordance with one or more embodiments, a display is powered on to display a projected image, and the operation of one or more display elements are ramped up until a stabilized state is reached. During said ramping up, a light source of the display is powered display at less than full power until the stabilized state is reached. While the light source is operating at less than full power, a splash screen may be displayed. After the stabilized state is reached, the light source can then be operated at or near full power. By providing a light output that is less than full power during ramp up, the display does not need to wait until the stabilized state is reached before the light source is powered on. As a result, the projector provides an output earlier in time to cue to the user that the projector is operating.
    • 简而言之,根据一个或多个实施例,对显示器通电以显示投影图像,并且一个或多个显示元件的操作被斜升直到达到稳定状态。 在上升期间,显示器的光源以小于全功率供电显示,直到达到稳定状态。 当光源工作在小于全功率时,可能会显示闪屏。 在达到稳定状态之后,光源可以在全功率或接近全功率下工作。 通过在斜坡上升期间提供小于全功率的光输出,在光源通电之前,显示器不需要等到达到稳定状态。 因此,投影机可以及时提供输出以提示用户投影机正在运行。
    • 6. 发明授权
    • Method for fabricating pixel structure
    • 制造像素结构的方法
    • US08283197B2
    • 2012-10-09
    • US12721571
    • 2010-03-11
    • Yen-Heng HuangChung-Kai ChenChia-Hui Pai
    • Yen-Heng HuangChung-Kai ChenChia-Hui Pai
    • H01L31/18
    • H01L29/78633H01L27/1285H01L27/1292
    • A fabricating method for a pixel structure is provided. First, a substrate having an active device and a capacitor electrode line thereon is provided. Next, a passivation layer is formed on the substrate to cover the active device. After that, a light shielding layer is formed on the passivation layer to define a unit area. Next, an ink-jet printing is performed to form a color filter pattern within the unit area defined by the light shielding layer. After that, a portion of the color filter pattern is removed to form a first hole above active device. Next, the passivation layer exposed by the first hole is removed so as to form a contact hole exposing a portion of the active device. After that, a pixel electrode is formed on the color filter pattern to fill into the contact hole so as to electrically connect with active device.
    • 提供了一种用于像素结构的制造方法。 首先,提供具有有源器件和电容器电极线的衬底。 接下来,在衬底上形成钝化层以覆盖有源器件。 之后,在钝化层上形成遮光层以限定单位面积。 接下来,进行喷墨​​打印以在由遮光层限定的单位区域内形成滤色器图案。 之后,去除滤色器图案的一部分以在有源器件上方形成第一孔。 接下来,去除由第一孔暴露的钝化层,以形成暴露有源器件的一部分的接触孔。 之后,在滤色器图案上形成像素电极,以填充到接触孔中,以与有源器件电连接。
    • 9. 发明申请
    • Controlled Light Source Startup in a Display
    • 在显示屏中控制光源启动
    • US20110181574A1
    • 2011-07-28
    • US12754995
    • 2010-04-06
    • Mark ChampionHeng Huang
    • Mark ChampionHeng Huang
    • G09G5/00
    • H04N9/3155G09G3/025G09G3/3406G09G2320/0626G09G2330/026G09G2330/12G09G2340/04
    • Briefly, in accordance with one or more embodiments, a display is powered on to display a projected image, and the operation of one or more display elements are ramped up until a stabilized state is reached. During said ramping up, a light source of the display is powered display at less than full power until the stabilized state is reached. While the light source is operating at less than full power, a splash screen may be displayed. After the stabilized state is reached, the light source can then be operated at or near full power. By providing a light output that is less than full power during ramp up, the display does not need to wait until the stabilized state is reached before the light source is powered on. As a result, the projector provides an output earlier in time to cue to the user that the projector is operating.
    • 简而言之,根据一个或多个实施例,显示器被通电以显示投影图像,并且一个或多个显示元件的操作被斜升直到达到稳定状态。 在上升期间,显示器的光源以小于全功率供电显示,直到达到稳定状态。 当光源工作在小于全功率时,可能会显示闪屏。 在达到稳定状态之后,光源可以在全功率或接近全功率下工作。 通过在斜坡上升期间提供小于全功率的光输出,在光源通电之前,显示器不需要等到达到稳定状态。 因此,投影机可以及时提供输出以提示用户投影机正在运行。
    • 10. 发明申请
    • 3D OBJECT DISPLAY METHOD AND ELECTRIC APPARATUS THEREOF
    • 3D对象显示方法及其电气设备
    • US20110157156A1
    • 2011-06-30
    • US12769670
    • 2010-04-29
    • WEI-HENG HUANGCHUEH-PIN KO
    • WEI-HENG HUANGCHUEH-PIN KO
    • G06T15/00H04N13/04
    • H04N13/361
    • An electric apparatus and a 3D object display method thereof are provided. The 3D object display method is suitable for a 3D monitor having interlaced first display areas and second display areas, and includes the following steps of: displaying a 3D object formed by a first display image and a second display image on the 3D monitor such that the first display image and the second display image are displayed on the first display areas and the second display areas respectively; and adjusting the location or the area size of the 3D object by moving the boundary of the 3D object at least a min moving unit formed by one first display area and one adjacent second display area.
    • 提供了一种电子设备及其3D对象显示方法。 3D对象显示方法适用于具有交织的第一显示区域和第二显示区域的3D监视器,并且包括以下步骤:在3D监视器上显示由第一显示图像和第二显示图像形成的3D对象,使得 第一显示图像和第二显示图像分别显示在第一显示区域和第二显示区域上; 以及通过移动由一个第一显示区域和一个相邻的第二显示区域形成的至少最小移动单元的3D对象的边界来调整3D对象的位置或区域尺寸。