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    • 5. 发明申请
    • Force Compensating Device and Use in a Medical System
    • 力补偿装置和在医疗系统中的使用
    • US20130279970A1
    • 2013-10-24
    • US13855461
    • 2013-04-02
    • Stefan HeslJürgen Plannerer
    • Stefan HeslJürgen Plannerer
    • F16P3/00
    • F16P3/008A61B6/447B66D1/02F16M2200/021F16M2200/04Y10T403/32254
    • A force compensating device includes a force generating unit configured for generating a compensating force that at least partially counteracts a tractive force acting on the force compensating device. The device includes at least one safety unit that is rotatable about a first axis of rotation and which, in the event of a malfunction of the force generating unit, can be moved by the force generating unit from an operating position to a locked position. The safety unit includes a first element and a second element that are rotatably connected to each other at a second axis of rotation, and at least one locking unit that blocks rotational movement of the safety unit from the locked position back to the operating position when the safety unit has been triggered due to a malfunction. A two-part safety unit in combination with the locking unit allows the safety unit to trigger and remain triggered in all fault situations. The force compensating device may be used in a medical system.
    • 力补偿装置包括力产生单元,其被配置为产生至少部分抵消作用在力补偿装置上的牵引力的补偿力。 所述装置包括至少一个安全单元,所述至少一个安全单元可围绕第一旋转轴线旋转,并且在所述力产生单元发生故障的情况下,能够通过所述力产生单元从操作位置移动到锁定位置。 所述安全单元包括第一元件和第二元件,所述第一元件和第二元件在第二旋转轴线处彼此可旋转地连接;以及至少一个锁定单元,其阻止所述安全单元从所述锁定位置到所述操作位置的旋转运动返回所述操作位置, 安全单元由于故障而被触发。 与锁定单元组合的两部分安全单元允许安全单元在所有故障情况下触发并保持触发。 力补偿装置可以用在医疗系统中。
    • 8. 发明申请
    • COUNTERWEIGHT FOR MOBILE X-RAY DEVICE
    • 移动X射线设备的对比
    • US20110249805A1
    • 2011-10-13
    • US13083751
    • 2011-04-11
    • Christopher J. KrallesAnthony DiRisio
    • Christopher J. KrallesAnthony DiRisio
    • H05G1/02
    • A61B6/4405A61B6/447A61B6/4482A61B6/467A61B6/503
    • A mobile radiography apparatus has a portable transport frame. A sectioned vertical column mounted on the frame defines a vertical axis and has a base section having a fixed vertical position relative to the vertical axis and at least one movable section that is translatable to a variable vertical position. A boom apparatus supports an x-ray source and extends outward from the movable section and has an adjustable height relative to the vertical axis. A counterweight is operatively coupled to the boom apparatus to support displacement of the boom apparatus to any of a plurality of vertical positions along the movable section, wherein the counterweight, in cooperation with boom apparatus movement, travels along a shaft that extends within the movable section, wherein, at one or more of the height positions of the boom apparatus, a portion of the counterweight extends upward above the shaft of the sectioned vertical column.
    • 移动射线照相设备具有便携式传输帧。 安装在框架上的分段垂直柱限定垂直轴线,并且具有相对于垂直轴线具有固定垂直位置的基部部分和至少一个可移动到可变垂直位置的可动部分。 吊杆装置支撑X射线源并从可动部分向外延伸并且具有相对于垂直轴线的可调高度。 配重可操作地联接到动臂装置以支撑动臂装置沿着可移动部分的多个垂直位置中的任一个的位移,其中与动臂装置运动协调的配重沿着在可动部分内延伸的轴行进 其中,在所述起重臂装置的一个或多个高度位置处,所述配重的一部分在所述分段垂直柱的轴的上方向上延伸。
    • 9. 发明授权
    • Rail system and X-ray imaging apparatus using the same
    • 轨道系统和使用其的X射线成像设备
    • US07949094B2
    • 2011-05-24
    • US12478462
    • 2009-06-04
    • Pan Soon Ahn
    • Pan Soon Ahn
    • G01N23/04
    • A61B6/588A61B6/447A61B6/4482
    • Disclosed herein are a rail system and an X-ray imaging apparatus using the same. The rail system includes a rail unit, a detecting unit and an X-ray generating unit. The rail unit is provided on a support surface and extends for a predetermined length. The detecting unit is provided on the rail unit and includes a detector stand which is provided on the rail unit so as to be movable in the longitudinal direction of the rail unit, a detector arm which has a bent structure and is provided on a side surface of the detector stand so as to be movable upwards and downwards, and a detector which is rotatably coupled to the detector arm. The X-ray generating unit is provided on the rail unit at a position facing the detector and includes a tube stand which is provided on the rail unit so as to be movable in the longitudinal direction of the rail unit, a tube arm which is provided on the tube stand so as to be movable upwards and downwards, an X-ray tube which is coupled to the tube arm so as to be rotatable with respect to the tube arm, and a collimator which is fastened to the X-ray tube.
    • 本文公开了一种轨道系统和使用该系统的X射线成像装置。 轨道系统包括轨道单元,检测单元和X射线产生单元。 轨道单元设置在支撑表面上并延伸预定长度。 所述检测单元设置在所述轨道单元上,并且包括检测器支架,所述检测器支架设置在所述轨道单元上,以能够沿所述轨道单元的纵向方向移动;检测器臂,其具有弯曲结构并且设置在所述轨道单元的侧面 的检测器支架,以便能够向上和向下移动,以及可旋转地联接到检测器臂的检测器。 所述X射线产生单元设置在所述轨道单元的面向所述检测器的位置处,并且包括设置在所述轨道单元上以能够在所述轨道单元的纵向方向上移动的管架,设置有管臂 在管支架上能够向上和向下移动,联接到管臂以相对于管臂可旋转的X射线管和固定到X射线管的准直器。