X-Ray Generator and Composite Device Using the Same and X-Ray Generating Method
    61.
    发明申请
    X-Ray Generator and Composite Device Using the Same and X-Ray Generating Method 有权
    X射线发生器和使用相同的X射线生成方法的复合器件

    公开(公告)号:US20120027181A1

    公开(公告)日:2012-02-02

    申请号:US13263065

    申请日:2010-04-05

    CPC classification number: H01J35/065 H01J35/06 H01J2235/062 H05G2/00

    Abstract: Disclosed is an X-ray generator (1) comprised of an electron emission element (10) which receives energy to emit electrons; a metal piece (20) which receives the electrons emitted from the electron emission element (10) to emit an X-ray; and energy supply portions (3, 5) which supply energy to the electron emission element (10), wherein the energy supply portions (3, 5) irradiate a pyroelectric element functioning as an electron emission element with, for example, ultraviolet pulsed light, and a high-energy local portion is formed in the pyroelectric element. Thus, the X-ray generator wherein the size thereof can be reduced, and an on/off control for the generation of X-ray can be easily performed, can be provided.

    Abstract translation: 公开了一种由能够发射电子的电子发射元件(10)组成的X射线发生器(1) 接收从电子发射元件(10)发射的电子发射X射线的金属片(20); 以及向电子发射元件(10)供应能量的能量供应部分(3,5),其中能量供应部分(3,5)用例如紫外线脉冲光照射用作电子发射元件的热电元件, 并且在热电元件中形成高能局部部分。 因此,可以容易地进行其尺寸减小的X射线发生器和用于产生X射线的开/关控制。

    X-ray tube
    63.
    发明授权
    X-ray tube 失效
    X光管

    公开(公告)号:US08031839B2

    公开(公告)日:2011-10-04

    申请号:US12836946

    申请日:2010-07-15

    Inventor: Takashi Shimono

    Abstract: According to one embodiment, a distance from an X-ray tube central axis to an outer side surface of a cathode electron gun in a direction perpendicular to the longitudinal direction of a filament coil is made less than a distance from the X-ray tube central axis to an outer side surface of the cathode electron gun in the longitudinal direction of the filament coil, and a distance from the X-ray tube central axis to an X-ray radiation window in the direction perpendicular to the longitudinal direction of the filament coil is made less than a distance from the X-ray tube central axis to an X-ray radiation window in the longitudinal direction of the filament coil.

    Abstract translation: 根据一个实施例,使得从垂直于灯丝线圈的纵向方向的方向到阴极电子枪的X射线管中心轴到外侧表面的距离小于距离X射线管中心 与阴极电子枪的长边方向的长边方向的长轴方向的距离,以及从与X线照射窗的长度方向垂直的方向与X射线管中心轴的距离 被制成小于从X射线管中心轴到X射线辐射窗沿长丝方向的距离。

    Method for the manufacture of an X-ray tube cathode filament
    64.
    再颁专利
    Method for the manufacture of an X-ray tube cathode filament 有权
    用于制造X射线管阴极灯丝的方法

    公开(公告)号:USRE42705E1

    公开(公告)日:2011-09-20

    申请号:US12460025

    申请日:2009-08-27

    Abstract: A method for the manufacture of a cathode filament of an X-ray tube and an X-ray tube formed by the method wherein the filament has at least two legs and one body, the filament being a single-piece filament. Spraying at least one material on a support by plasma spraying or by another deposition technique to obtain the filament molded on the support and separating the filament obtained from the support. The filament obtained has a variable thickness and a variable composition. The thicknesses of the legs and of the body as well as the composition of the filament can be modified according to the user's needs.

    Abstract translation: 一种制造X射线管阴极灯丝的方法和通过该方法形成的X射线管,其中灯丝具有至少两个腿和一个主体,灯丝是单件灯丝。 通过等离子体喷涂或通过另一种沉积技术将至少一种材料喷涂在支撑体上,以获得在支撑体上模制的细丝并分离从支撑体获得的细丝。 获得的长丝具有可变的厚度和可变的组成。 腿和身体的厚度以及丝的组成可以根据用户的需要进行修改。

    Aperture shield incorporating refractory materials
    65.
    发明授权
    Aperture shield incorporating refractory materials 有权
    孔屏蔽纳入耐火材料

    公开(公告)号:US08000450B2

    公开(公告)日:2011-08-16

    申请号:US11861131

    申请日:2007-09-25

    Inventor: Gregory Andrews

    Abstract: An x-ray tube electron shield is disclosed for interposition between an electron emitter and an anode configured to receive the emitted electrons. The electron shield is configured to withstand the elevated levels of heat produced by electrons backscattered from the anode and incident on the electron shield. This in turn equates to a reduced incidence of failure in the electron shield. In one embodiment the electron shield includes a body that defines a bowl-shaped aperture having a narrowed throat segment. The body of the electron shield includes a first body portion, a second body portion, and a disk portion. These portions cooperate to define the bowl and the throat segment. The throat segment and the lower portion of the bowl are composed of a refractory material and correspond with the regions of the electron shield that are impacted by relatively more backscattered electrons from the anode surface.

    Abstract translation: 公开了用于插入电子发射器和被配置为接收所发射的电子的阳极之间的X射线管电子屏蔽。 电子屏蔽被配置为承受从阳极反向散射并入射在电子屏蔽上的电子产生的升高的热量。 这反过来等于电子屏蔽中故障发生率的降低。 在一个实施例中,电子屏蔽包括限定具有窄的喉部段的碗形孔的主体。 电子屏蔽体包括第一主体部分,第二主体部分和盘部分。 这些部分配合以限定碗和喉部。 碗的节段和下部由难熔材料组成,并且与电子屏蔽的区域相对应,该区域受到来自阳极表面的相对更多的背向散射的电子的影响。

    Multi X-ray imaging apparatus and control method therefor
    66.
    发明授权
    Multi X-ray imaging apparatus and control method therefor 有权
    多X射线成像装置及其控制方法

    公开(公告)号:US07991114B2

    公开(公告)日:2011-08-02

    申请号:US12763486

    申请日:2010-04-20

    Abstract: An X-ray imaging apparatus includes a multi X-ray source which includes a plurality of X-ray focuses to generate X-rays by irradiating X-ray targets with electron beams, a detector which detects X-rays which have been emitted from the multi X-ray source and have reached a detection surface, and a moving mechanism for moving the multi X-ray source within a plane facing the detection surface. The X-ray imaging apparatus acquires a plurality of X-ray detection signals from the detector by causing the multi X-ray source to perform X-ray irradiation while shifting the positions of a plurality of X-ray focuses which the detector has relative to the detection surface by moving the multi X-ray source using the moving mechanism. The apparatus then generates an X-ray projection image based on the plurality of X-ray detection signals acquired by the detector.

    Abstract translation: 一种X射线摄像装置,具备:包含多个X射线焦点以通过用电子束照射X射线靶产生X射线的多X射线源,检测从X射线 多个X射线源并且已经到达检测表面;以及移动机构,用于在面向检测表面的平面内移动多个X射线源。 X射线成像装置从检测器取得多个X射线检测信号,使多个X射线源进行X射线照射,同时移动检测器的多个X射线焦点的位置相对于 通过使用移动机构移动多个X射线源的检测表面。 然后,该装置基于由检测器获取的多个X射线检测信号生成X射线投影图像。

    CATHODE
    67.
    发明申请
    CATHODE 有权
    阴极

    公开(公告)号:US20110062853A1

    公开(公告)日:2011-03-17

    申请号:US12884410

    申请日:2010-09-17

    CPC classification number: H05G1/34 H01J35/06 H05G1/46

    Abstract: A cathode has a cathode head in which is arranged at least one emitter that emits electrons upon application of a heating voltage. At least one series resistor is connected in the voltage feed to at least one emitter. The use of such a cathode in an x-ray tube enables x-ray exposures with a high quality.

    Abstract translation: 阴极具有阴极头,其中布置有至少一个在施加加热电压时发射电子的发射体。 至少一个串联电阻器连接到至少一个发射器的电压馈送中。 在x射线管中使用这样的阴极可以实现高质量的X射线曝光。

    X-RAY GENERATING DEVICE
    68.
    发明申请
    X-RAY GENERATING DEVICE 有权
    X射线发生装置

    公开(公告)号:US20110026680A1

    公开(公告)日:2011-02-03

    申请号:US12840141

    申请日:2010-07-20

    Applicant: Genta Sato

    Inventor: Genta Sato

    Abstract: An X-ray generating device includes an electron-beam generator, a target assembly group, and an electron-beam focusing unit. The electron-beam generator generates electron beams. The target assembly group includes a plurality of target assemblies that are arranged along a straight line in a direction in which X-rays are output; each of the target assemblies includes a target and a supporting member; the target generates X-rays from one of the electron beams generated by the electron-beam generator; and the supporting member supports the target by being disposed adjacent thereto. The electron-beam focusing unit focuses the electron beams onto the targets included in the target assembly group so that X-rays are generated in each of the target assemblies and output along the straight line after passing through the target assemblies.

    Abstract translation: X射线产生装置包括电子束发生器,靶组件组和电子束聚焦单元。 电子束发生器产生电子束。 目标组件组包括沿着X射线输出方向的直线布置的多个目标组件; 每个目标组件包括目标和支撑构件; 目标从由电子束发生器产生的电子束之一产生X射线; 并且支撑构件通过与其相邻设置而支撑目标。 电子束聚焦单元将电子束聚焦到包括在目标组件组中的目标上,使得在每个目标组件中产生X射线,并且在穿过目标组件之后沿直线输出。

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