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    • 3. 发明授权
    • Container for housing optical instruments
    • 用于住房光学仪器的容器
    • US09169059B2
    • 2015-10-27
    • US14054428
    • 2013-10-15
    • Dar-Tson Shen
    • Dar-Tson Shen
    • B65B23/00B65D85/38A45C11/08B65B5/04B65B23/22B65B55/20B65D81/107
    • B65D85/38A45C11/08A45C13/02A45C2013/026B65B5/04B65B23/22B65B55/20B65D81/107
    • A container for housing optical instruments is described. The container includes a case having an interior surface shaped to define a container cavity for holding an optical instrument. The interior surface is further shaped to define a plurality of ball-receiving concavities which open into the container cavity. Each ball-receiving concavity is shaped to have an opening at its edge and an interior region. The container also includes a plurality of elastically deformable balls, each ball located in a corresponding ball-receiving concavity and projecting from the interior region of the corresponding ball-receiving concavity through the opening and into the container cavity such that the balls are deformed to accommodate the optical instrument in the container cavity.
    • 描述了用于容纳光学仪器的容器。 容器包括具有内表面的壳体,该内表面成形为限定用于保持光学仪器的容器空腔。 内表面进一步成形为限定多个容纳孔的开口的球接收凹部。 每个球接收凹部成形为在其边缘和内部区域具有开口。 容器还包括多个可弹性变形的球,每个球位于相应的球接收凹部中,并且从对应的球接收凹部的内部区域穿过开口突出并进入容器空腔,使得球变形以容纳 容器腔中的光学仪器。
    • 4. 发明申请
    • CONTAINER FOR HOUSING OPTICAL INSTRUMENTS
    • 容纳光学仪器的容器
    • US20150101947A1
    • 2015-04-16
    • US14054428
    • 2013-10-15
    • Dar-Tson SHEN
    • Dar-Tson SHEN
    • B65D85/38B65B55/20B65B23/22A45C11/08B65B5/04
    • B65D85/38A45C11/08A45C13/02A45C2013/026B65B5/04B65B23/22B65B55/20B65D81/107
    • A container for housing optical instruments is described. The container includes a case having an interior surface shaped to define a container cavity for holding an optical instrument. The interior surface is further shaped to define a plurality of ball-receiving concavities which open into the container cavity. Each ball-receiving concavity is shaped to have an opening at its edge and an interior region. The container also includes a plurality of elastically deformable balls, each ball located in a corresponding ball-receiving concavity and projecting from the interior region of the corresponding ball-receiving concavity through the opening and into the container cavity such that the balls are deformed to accommodate the optical instrument in the container cavity.
    • 描述了用于容纳光学仪器的容器。 容器包括具有内表面的壳体,该内表面成形为限定用于保持光学仪器的容器空腔。 内表面进一步成形为限定多个容纳孔的开口的球接收凹部。 每个球接收凹部成形为在其边缘和内部区域具有开口。 容器还包括多个可弹性变形的球,每个球位于相应的球接收凹部中,并且从对应的球接收凹部的内部区域穿过开口突出并进入容器空腔,使得球变形以容纳 容器腔中的光学仪器。
    • 8. 发明申请
    • ALTITUDE-AZIMUTHAL MOUNT FOR OPTICAL INSTRUMENTS
    • 用于光学仪器的ALTITUDE-AZIMUTHAL安装
    • US20120069434A1
    • 2012-03-22
    • US12884012
    • 2010-09-16
    • Dar Tson SHEN
    • Dar Tson SHEN
    • G02B23/16
    • G02B23/165
    • An alt-az mount for supporting and orienting optical instruments comprises: a generally horizontally extending arm coupleable to a level surface by an azimuthal pivot joint which permits pivotal movement of the horizontally extending arm with respect to the level surface about a vertical azimuthal axis; a generally vertically extending arm pivotally coupled to the horizontally extending arm by an inter-arm pivot joint which permits pivotal movement of the vertically extending arm with respect to the horizontally extending arm about a vertical inter-arm axis; and an instrument coupling mechanism for coupling the mount to an optical instrument, the instrument coupling mechanism comprising an altitude pivot joint which permits pivotal movement of the optical instrument with respect to the vertically extending arm about a horizontal altitude axis. The inter-arm pivot joint permits the mount to be adjusted between an inside configuration where the optical instrument and the azimuthal axis are located on the same side of the vertically oriented arm and the inter-arm axis and an outside configuration where the optical instrument and azimuthal axis are located on opposing sides of the vertically oriented arm and the inter-arm axis. The inter-arm pivot joint permits the mount to be adjusted between an inside configuration where a center of the optical instrument (as measured along the altitude axis) is separated from the azimuthal axis by an inside distance and an outside configuration where the center of the optical instrument is separated from the azimuthal axis by an outside distance, the outside distance greater than the inside distance—i.e. in the inside configuration the center of the optical instrument is located relatively close to the azimuthal axis and in the outside configuration the center of the optical instrument is located relatively far from the azimuthal axis.
    • 用于支撑和定向光学仪器的高位安装件包括:大致水平延伸的臂,其通过方位角枢轴接头可耦合到水平表面,其允许水平延伸的臂相对于水平表面围绕垂直方位轴线枢转运动; 大体垂直延伸的臂通过臂间枢转接头可枢转地联接到水平延伸的臂上,其允许垂直延伸的臂相对于水平延伸的臂围绕垂直的臂间轴线枢转运动; 以及用于将安装件耦合到光学仪器的仪器联接机构,所述仪器联接机构包括高度枢转接头,所述高度枢转接头允许所述光学仪器相对于所述垂直延伸臂围绕水平高度轴线枢转运动。 臂间枢转接头允许安装件在光学仪器和方位角位于垂直取向的臂的同一侧和臂间轴线之间的内部构造和外部配置之间进行调节,其中光学仪器和 方位角轴位于垂直取向的臂和臂间轴线的相对侧上。 臂间枢转接头允许安装件在内部配置之间进行调节,其中光学仪器的中心(沿着高度轴测量)与方位角轴线分开内部距离和外部配置,其中, 光学仪器与方位角轴分开一个外部距离,外部距离大于内部距离 - 即 在内部构造中,光学仪器的中心位于相对靠近方位角的位置,并且在外部构造中,光学仪器的中心位于相对远离方位角的位置。
    • 9. 发明授权
    • Continuously angle-adjustable multifunction tripod
    • 连续角度可调多功能三脚架
    • US08047481B2
    • 2011-11-01
    • US12463547
    • 2009-05-11
    • Dar Tson Shen
    • Dar Tson Shen
    • F16M11/02
    • F16M11/36F16M11/16
    • A continuously angle-adjustable multifunction tripod is provided. The continuously angle-adjustable multifunction tripod includes a connecting base, at least three legs, an adjusting cap, and a supporter. The adjusting cap and the supporter are disposed on and under the connecting base, respectively. Each of the legs is peripherally distributed around the supporter. Upper ends of the legs are movably connected to the connecting base. Distances between the adjusting cap, the connecting base and the supporter are adjustable along a vertical direction, and can be relatively fixed at anywhere therebetween. Meanwhile, a bottom of the adjusting cap and the supporter clamp and fix the legs, so that an angle of each of the legs relative to the horizontal plane can be arbitrarily adjusted in a range from 0° to 90° in accordance with variations of relative positions of the adjusting cap, the connecting base, and the supporter. The present invention has a simple and compact structure, small volume, light weight, low cost, and convenient to operate. Spans of the legs may be arbitrarily adjusted in a range from 0° to 180°, so that the tripod may be mounted quick and steadily in all kinds of complex environments. The present invention may be widely applied in areas of observation, photography, and illuminating, etc.
    • 提供连续角度可调的多功能三脚架。 连续角度可调的多功能三脚架包括连接底座,至少三个腿,调节盖和支撑件。 调节盖和支撑件分别设置在连接基座上和下方。 每个腿都周边地分布在支持者周围。 腿的上端可移动地连接到连接底座。 调节盖,连接底座和支架之间的距离可以沿垂直方向调节,并且可以相对固定在其间的任何位置。 同时,调节盖的底部和支撑件夹紧和固定腿,使得每个腿相对于水平面的角度可以根据相对的变化在0°至90°的范围内任意调整 调节盖,连接座和支架的位置。 本发明结构简单紧凑,体积小,重量轻,成本低,操作方便。 腿的跨度可以在0°至180°的范围内任意调整,从而三脚架可以在各种复杂环境中快速,稳定地安装。 本发明可广泛应用于观察,摄影和照明等领域。