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    • 8. 发明授权
    • Radiation imager collimator
    • 辐射成像仪准直仪
    • US06175615B1
    • 2001-01-16
    • US09289819
    • 1999-04-12
    • Shankar Visvanathan GuruPeter Michael EdicReinhold Franz Wirth
    • Shankar Visvanathan GuruPeter Michael EdicReinhold Franz Wirth
    • G21K102
    • G21K1/02G21K1/025
    • A collimator 100 for use in a radiation imaging system 10, and a method for making such collimators, are provided, wherein the collimator 100 is capable of collimating radiation in two orthogonal planes. The collimator in one embodiment includes a block 101 of radiation absorbing material having a plurality of focally aligned channels 102 extending therethrough; in a second embodiment, the collimator includes first and second collimation204, 212 sections having a respective first plurality of focally aligned plate sets 201 and a respective second plurality of focally aligned plate sets 203 disposed orthogonally to the first plurality of plate sets. The method for making the collimator includes generating a CAD drawing, generating from the CAD drawing one or more stereo-lithographic files, and using the stereo-lithographic files to control an electro-deposition machining machine which creates the channels in the block.
    • 提供了一种用于辐射成像系统10的准直器100及其制造方法,其中准直仪100能够在两个正交平面中准直辐射。 在一个实施例中的准直器包括辐射吸收材料的块101,其具有延伸穿过其中的多个焦点对准的通道102; 在第二实施例中,准直器包括第一和第二准直204,212个部分,其具有相应的第一多个焦点对准的板组201和与第一组多个板组正交设置的相应的第二多个焦点对准的板组203。 制造准直器的方法包括生成CAD绘图,从CAD绘制一个或多个立体光刻文件,并使用立体光刻文件来控制在块中产生通道的电沉积加工机。
    • 9. 发明授权
    • Electrical wire tool
    • 电线工具
    • US08578820B2
    • 2013-11-12
    • US12768483
    • 2010-04-27
    • Reinhold Franz Wirth
    • Reinhold Franz Wirth
    • H02G1/12B25B13/00B25B13/28
    • H02G1/1226H02G1/1265
    • The present invention can include an apparatus having both a wire nut receiver and a wire insulation stripper thus allowing a user to strip insulation from wires and then connect them using a wire nut with the same apparatus. The apparatus can include a wire nut receiver defining a cavity having a proximal end and a distal end and one or more stripper blades disposed adjacent to the distal end of the cavity of the wire nut receiver. The apparatus can also include a driver, such as for example a hex driver, connected to the wire nut receiver and the one or more stripper blades. Alternatively, the apparatus can be configured such that the diameter of the one or more stripper blades relative to a rotational axis is variable, which in turn allows a user to easily account for different thicknesses or gauges of wire to be stripped.
    • 本发明可以包括具有线螺母接收器和线绝缘剥离器的装置,从而允许使用者剥离电线绝缘,然后使用具有相同装置的线螺母连接它们。 该装置可以包括限定具有近端和远端的空腔的线螺母接收器,以及邻近线螺母接收器的空腔的远端设置的一个或多个剥离器叶片。 该装置还可以包括连接到线螺母接收器和一个或多个剥离器叶片的驱动器,例如十六进制驱动器。 或者,该装置可以被配置成使得一个或多个剥离器叶片相对于旋转轴线的直径是可变的,这反过来允许使用者容易地考虑要剥离的不同厚度的线材或量规。
    • 10. 发明授权
    • Conformal deposition of thin membranes on irregularly-shaped surfaces
    • 薄膜在不规则形状表面上的共形沉积
    • US06328838B1
    • 2001-12-11
    • US08330642
    • 1994-10-28
    • Reinhold Franz WirthStanley Joseph Lubowski
    • Reinhold Franz WirthStanley Joseph Lubowski
    • B29C6500
    • B32B37/1018B29C51/16B29C2791/006G01T1/2002Y10T156/1028Y10T156/1031
    • A method of depositing a thin membrane so that it conforms to an irregular shaped surface of a scintillator includes the steps of aligning the membrane in a desired position with respect to the irregular surface so that the membrane is in contact with at least some protruding portions of the scintillator, and drawing the membrane down over the irregular surface so that the membrane is conformingly disposed around substantially all protrusions without deforming or bending the needle-like protrusions. The membrane is drawn down by applying a substantially uniform differential pressure across the thin membrane so as to urge the membrane into conformal contact with irregular surface. An imager array fabricated with this process includes a scintillator having an irregular surface and a monolithic reflective layer disposed thereover in conformal contact with the irregular surface.
    • 沉积薄膜以使其符合闪烁体的不规则形状的表面的方法包括以下步骤:使膜相对于不规则表面在期望位置对准,使得膜与至少一些突出部分接触 闪烁体,并且将膜向下拉到不规则表面上,使得膜基本上均匀地设置在所有突起的周围,而不会使针状突起变形或弯曲。 通过在薄膜上施加基本均匀的压差来拉伸膜,以促使膜与不规则表面保形接触。 用该方法制造的成像器阵列包括具有不规则表面的闪烁器和与不规则表面共形接触设置在其上的单片反射层。