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    • 1. 发明申请
    • ANTENNA AND WIRELESS TRANSCEIVER USING THE SAME
    • 天线和无线收发器使用它
    • US20100265141A1
    • 2010-10-21
    • US12427120
    • 2009-04-21
    • Chia-Jui Hsu
    • Chia-Jui Hsu
    • H01Q1/52H01Q1/24
    • H01Q9/0421H01Q1/243H01Q1/521
    • An antenna and a wireless transceiver are provided. The antenna includes: a substrate having first and second surfaces with circuits thereon; and two shield boxes located on the first and second surfaces for covering the circuits thereon. The shield boxes each comprise an antenna section and a shield section. The antenna sections are disposed at one side of the shield section and aligned with a margin of the substrate, and include signal ends electrically connected to the circuits and grounding ends electrically connected to the shield sections. The first antenna section is disposed on a diagonal opposite of the second antenna section flush with substrate margin or aligned with the substrate margin, thereby maximizing the distance between the two antennas disposed on the substrate, and preventing the two antennas from electromagnetic interference. The antennas are disposed on sides of the shield sections flush with substrate margins and thereby are space-saving.
    • 提供天线和无线收发器。 天线包括:具有第一和第二表面的基板,其上具有电路; 以及位于第一和第二表面上的两个屏蔽盒,用于覆盖其上的电路。 屏蔽盒各自包括天线部分和屏蔽部分。 天线部分设置在屏蔽部分的一侧并与衬底的边缘对准,并且包括电连接到电路的信号端和电连接到屏蔽部分的接地端。 第一天线部分设置在第二天线部分的对角线上,与衬底边缘齐平或与衬底边缘对齐,从而使设置在衬底上的两个天线之间的距离最大化,并防止两个天线的电磁干扰。 天线设置在与基板边缘齐平的屏蔽部分的侧面上,从而节省空间。
    • 2. 发明授权
    • Method and system of virtual touch in a steroscopic 3D space
    • 在立体3D空间虚拟触摸的方法和系统
    • US08773429B2
    • 2014-07-08
    • US13296316
    • 2011-11-15
    • Chia-Jui Hsu
    • Chia-Jui Hsu
    • G06T15/00G06F3/01H04N13/00H04N13/04
    • G06F3/011H04N13/111H04N13/128H04N13/144H04N13/366
    • Systems and methods are disclosed for adjusting parallax for a 3D object appearing on a display. One such method includes selecting a target 3D object, calculating an adjusted parallax position, calculating a z-axis offset based at least in part on the adjusted parallax position, adjusting a first z-axis position of the target 3D object by the z-axis offset, and rendering the target 3D object on the display at the adjusted first z-axis position. The adjusted parallax position is based at least in part on a maximum user reach, a comfortable viewing distance, and a distance between a user and the display. The z-axis offset is set to a difference between the adjusted parallax position and a parallax for a 3D object which is farthest from the user.
    • 公开了用于调整出现在显示器上的3D对象的视差的系统和方法。 一种这样的方法包括:选择目标3D对象,计算经调整的视差位置,至少部分地基于经调整的视差位置来计算z轴偏移,将目标3D对象的第一z轴位置调整Z轴 偏移,并且在被调整的第一z轴位置的显示器上渲染目标3D对象。 经调整的视差位置至少部分地基于最大用户覆盖面,舒适的观看距离以及用户与显示器之间的距离。 将z轴偏移设置为调整后的视差位置与距离用户最远的3D对象的视差之间的差。
    • 3. 发明授权
    • Antenna and wireless transceiver using the same
    • 天线和无线收发器使用相同
    • US08212727B2
    • 2012-07-03
    • US12427120
    • 2009-04-21
    • Chia-Jui Hsu
    • Chia-Jui Hsu
    • H01Q1/24
    • H01Q9/0421H01Q1/243H01Q1/521
    • An antenna and a wireless transceiver are provided. The antenna includes: a substrate having first and second surfaces with circuits thereon; and two shield boxes located on the first and second surfaces for covering the circuits thereon. The shield boxes each comprise an antenna section and a shield section. The antenna sections are disposed at one side of the shield section and aligned with a margin of the substrate, and include signal ends electrically connected to the circuits and grounding ends electrically connected to the shield sections. The first antenna section is disposed on a diagonal opposite of the second antenna section flush with substrate margin or aligned with the substrate margin, thereby maximizing the distance between the two antennas disposed on the substrate, and preventing the two antennas from electromagnetic interference. The antennas are disposed on sides of the shield sections flush with substrate margins and thereby are space-saving.
    • 提供天线和无线收发器。 天线包括:具有第一和第二表面的基板,其上具有电路; 以及位于第一和第二表面上的两个屏蔽盒,用于覆盖其上的电路。 屏蔽盒各自包括天线部分和屏蔽部分。 天线部分设置在屏蔽部分的一侧并与衬底的边缘对准,并且包括电连接到电路的信号端和电连接到屏蔽部分的接地端。 第一天线部分设置在第二天线部分的对角线上,与衬底边缘齐平或与衬底边缘对齐,从而使设置在衬底上的两个天线之间的距离最大化,并防止两个天线的电磁干扰。 天线设置在与基板边缘齐平的屏蔽部分的侧面上,从而节省空间。
    • 4. 发明申请
    • Method and System of Virtual Touch in a Steroscopic 3D Space
    • 三维空间中虚拟触摸的方法与系统
    • US20130120360A1
    • 2013-05-16
    • US13296316
    • 2011-11-15
    • Chia-Jui Hsu
    • Chia-Jui Hsu
    • G06T15/00
    • G06F3/011H04N13/111H04N13/128H04N13/144H04N13/366
    • Systems and methods are disclosed for adjusting parallax for a 3D object appearing on a display. One such method includes selecting a target 3D object, calculating an adjusted parallax position, calculating a z-axis offset based at least in part on the adjusted parallax position, adjusting a first z-axis position of the target 3D object by the z-axis offset, and rendering the target 3D object on the display at the adjusted first z-axis position. The adjusted parallax position is based at least in part on a maximum user reach, a comfortable viewing distance, and a distance between a user and the display. The z-axis offset is set to a difference between the adjusted parallax position and a parallax for a 3D object which is farthest from the user.
    • 公开了用于调整出现在显示器上的3D对象的视差的系统和方法。 一种这样的方法包括:选择目标3D对象,计算经调整的视差位置,至少部分地基于经调整的视差位置来计算z轴偏移,将目标3D对象的第一z轴位置调整Z轴 偏移,并且在被调整的第一z轴位置的显示器上渲染目标3D对象。 经调整的视差位置至少部分地基于最大用户覆盖面,舒适的观看距离以及用户与显示器之间的距离。 将z轴偏移设置为调整后的视差位置与距离用户最远的3D对象的视差之间的差。