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    • 2. 发明申请
    • X-RAY TUBES
    • X射线管
    • WO2004097886A3
    • 2005-07-28
    • PCT/GB2004001731
    • 2004-04-23
    • CXR LTDMORTON EDWARD JAMESLUGGAR RUSSELL DAVIDDE ANTONIS PAUL
    • MORTON EDWARD JAMESLUGGAR RUSSELL DAVIDDE ANTONIS PAUL
    • H01J35/04H01J35/08
    • H01J35/04H01J35/08H01J2235/086H01J2235/087H01J2235/12H01J2235/168
    • An X-ray tube comprises an electron source in the form of a cathodE (12), and an anode (14) within a housing (10). The anode (14) is a thin film anode, so that most of the electrons which do not interact with it to produce X-rays pass directly through it. X-rays can be collected through a first window (16) directly behind the anode (14), or a second window (18) to one side of the anode. A retardation electrode 20 is located behind the anode 4 and is held at a potential which is negative with respect to the anode 14, and slightly positive with respect to the cathode (12). This retardation electrode (20) produces an electric field which slows down electrons passing through the anode (14) so that, when they interact with it, they are at relatively low energies. This reduces the heat load on the tube.
    • X射线管包括阴极(12)形式的电子源和外壳(10)内的阳极(14)。 阳极(14)是一个薄膜阳极,所以大部分不与它相互作用产生X射线的电子直接通过它。 X射线可以通过阳极(14)正后方的第一窗口(16)或阳极一侧的第二窗口(18)收集。 延迟电极20位于阳极4的后方,并保持在相对于阳极14为负的电位,并且相对于阴极(12)稍微为正。 该延迟电极(20)产生电场,该电场减慢通过阳极(14)的电子,从而当它们与它相互作用时,它们处于相对较低的能量。 这减少了管上的热负荷。
    • 7. 发明申请
    • X-RAY SCANNERS
    • X射线扫描仪
    • WO2010097621A2
    • 2010-09-02
    • PCT/GB2010/050318
    • 2010-02-25
    • CXR LIMITEDMORTON, Edward, JamesLUGGAR, Russell, DavidDE ANTONIS, Paul
    • MORTON, Edward, JamesLUGGAR, Russell, DavidDE ANTONIS, Paul
    • G01T1/164
    • G01T1/2985G01V5/005
    • The present application discloses an X-ray scanner having an X-ray source arranged to emit X-rays from source points through an imaging volume. The scanner may further include an array of X-ray detectors which may be arranged around the imagine volume and may be arranged to output detector signals in response to the detection of X-rays. The scanner may further include a conveyor arranged to convey an object through the imaging volume in a scan direction, and may also include at least one processor arranged to process the detector signals to produce an image data set defining an image of the object. The image may have a resolution in the scan direction that is at least 90% as high as in one direction, and in some cases two directions, orthogonal to the scan direction.
    • 本申请公开了一种具有X射线源的X射线扫描器,该X射线源布置成通过成像体积从源点发射X射线。 扫描器还可以包括X射线检测器阵列,X射线检测器可以围绕想象体积布置,并且可被布置成响应于X射线检测而输出检测器信号。 扫描器还可以包括传送器,其被布置成沿扫描方向传送成像体积的物体,并且还可以包括布置成处理检测器信号以产生定义对象的图像的图像数据集的至少一个处理器。 该图像可以具有与扫描方向正交的至少90%的扫描方向上的分辨率,并且在某些情况下具有两个方向。
    • 9. 发明申请
    • X-RAY TUBES
    • X射线管
    • WO2004097886A2
    • 2004-11-11
    • PCT/GB2004/001731
    • 2004-04-23
    • CRX LIMITEDMORTON, Edward, JamesLUGGAR, Russell, DavidDE ANTONIS, Paul
    • MORTON, Edward, JamesLUGGAR, Russell, DavidDE ANTONIS, Paul
    • H01J29/00
    • H01J35/04H01J35/08H01J2235/086H01J2235/087H01J2235/12H01J2235/168
    • An X-ray tube comprises an electron source in the form of a cathodE (12), and an anode (14) within a housing (10). The anode (14) is a thin film anode, so that most of the electrons which do not interact with it to produce X-rays pass directly through it. X-rays can be collected through a first window (16) directly behind the anode (14), or a second window (18) to one side of the anode. A retardation electrode 20 is located behind the anode 4 and is held at a potential which is negative with respect to the anode 14, and slightly positive with respect to the cathode (12). This retardation electrode (20) produces an electric field which slows down electrons passing through the anode (14) so that, when they interact with it, they are at relatively low energies. This reduces the heat load on the tube.
    • X射线管包括阴极E(12)形式的电子源和在壳体(10)内的阳极(14)。 阳极(14)是薄膜阳极,使得与其不相互作用以产生X射线的大多数电子直接通过它。 可以通过阳极(14)正后方的第一窗口(16)或阳极一侧的第二窗口(18)来收集X射线。 延迟电极20位于阳极4的后面并且被保持在相对于阳极14为负的电位,并且相对于阴极(12)稍微为正。 该延迟电极(20)产生电场,其减慢通过阳极(14)的电子,使得当它们与其相互作用时,它们处于相对低的能量。 这减少了管上的热负荷。