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    • 51. 发明申请
    • RADIATION DETECTING APPARATUS AND METHOD FOR MANUFACTURING THE SAME
    • 辐射检测装置及其制造方法
    • US20080152788A1
    • 2008-06-26
    • US12018188
    • 2008-01-22
    • Kazumi Nagano
    • Kazumi Nagano
    • B05D5/12
    • G01T1/2018
    • An underlayer of a phosphor layer is disposed on a sensor panel including two-dimensionally arranged photoelectric conversion devices. The surface of the underlayer is subjected to atmospheric pressure plasma treatment. The phosphor layer is formed on the surface-treated underlayer. Then, the phosphor layer is covered with a moisture-resistant protective layer, a reflection layer, and another protective layer. Thus, the phosphor layer is prevented from peeling due to adhesion failure, and is constituted of uniformly shaped crystals by vapor deposition. A resulting radiation detecting apparatus exhibits high sensitivity and high definition, producing a uniform photoelectric conversion efficiency.
    • 荧光体层的底层设置在包括二维布置的光电转换装置的传感器面板上。 对底层的表面进行大气压等离子体处理。 荧光体层形成在表面处理的底层上。 然后,荧光体层被防潮保护层,反射层和另一保护层覆盖。 因此,防止荧光体层由于粘附破坏而剥离,并且通过气相沉积由均匀形状的晶体构成。 所得到的放射线检测装置具有高灵敏度和高清晰度,产生均匀的光电转换效率。
    • 55. 发明授权
    • Radiation detecting apparatus and method for manufacturing the same
    • 辐射检测装置及其制造方法
    • US07355184B2
    • 2008-04-08
    • US10817972
    • 2004-04-06
    • Kazumi Nagano
    • Kazumi Nagano
    • G01T1/20
    • G01T1/2018
    • An underlayer of a phosphor layer is disposed on a sensor panel including two-dimensionally arranged photoelectric conversion devices. The surface of the underlayer is subjected to atmospheric pressure plasma treatment. The phosphor layer is formed on the surface-treated underlayer. Then, the phosphor layer is covered with a moisture-resistant protective layer, a reflection layer, and another protective layer. Thus, the phosphor layer is prevented from peeling due to adhesion failure, and is constituted of uniformly shaped crystals by vapor deposition. A resulting radiation detecting apparatus exhibits high sensitivity and high definition, producing a uniform photoelectric conversion efficiency.
    • 荧光体层的底层设置在包括二维布置的光电转换装置的传感器面板上。 对底层的表面进行大气压等离子体处理。 荧光体层形成在表面处理的底层上。 然后,荧光体层被防潮保护层,反射层和另一保护层覆盖。 因此,防止荧光体层由于粘附破坏而剥离,并且通过气相沉积由均匀形状的晶体构成。 所得到的放射线检测装置具有高灵敏度和高清晰度,产生均匀的光电转换效率。
    • 57. 发明申请
    • RADIATION DETECTING APPARATUS AND METHOD FOR MANUFACTURING THE SAME
    • 辐射检测装置及其制造方法
    • US20090061555A1
    • 2009-03-05
    • US12260035
    • 2008-10-28
    • Kazumi Nagano
    • Kazumi Nagano
    • H01L31/18
    • G01T1/2018
    • An underlayer of a phosphor layer is disposed on a sensor panel including two-dimensionally arranged photoelectric conversion devices. The surface of the underlayer is subjected to atmospheric pressure plasma treatment. The phosphor layer is formed on the surface-treated underlayer. Then, the phosphor layer is covered with a moisture-resistant protective layer, a reflection layer, and another protective layer. Thus, the phosphor layer is prevented from peeling due to adhesion failure, and is constituted of uniformly shaped crystals by vapor deposition. A resulting radiation detecting apparatus exhibits high sensitivity and high definition, producing a uniform photoelectric conversion efficiency.
    • 荧光体层的底层设置在包括二维布置的光电转换装置的传感器面板上。 对底层的表面进行大气压等离子体处理。 荧光体层形成在表面处理的底层上。 然后,荧光体层被防潮保护层,反射层和另一保护层覆盖。 因此,防止荧光体层由于粘附破坏而剥离,并且通过气相沉积由均匀形状的晶体构成。 所得到的放射线检测装置具有高灵敏度和高清晰度,产生均匀的光电转换效率。
    • 58. 发明授权
    • Hybrid information recording medium with masking layer
    • 具有掩蔽层的混合信息记录介质
    • US6098889A
    • 2000-08-08
    • US944956
    • 1997-10-07
    • Yoshihiro OgawaMizuho HiraokaKazumi NaganoHiroshi Tanabe
    • Yoshihiro OgawaMizuho HiraokaKazumi NaganoHiroshi Tanabe
    • G06K19/06
    • G06K19/06009
    • An optical recording medium includes an integrated circuit (IC) module whose exposed surface is masked so as not to be visually recognized. The optical recording medium can be efficiently manufactured without degrading the essential function thereof. The optical recording medium includes a transparent substrate, an optical recording layer and a protective layer provided in this sequence. The IC module is buried in the optical recording medium so that one surface of the IC module is exposed on the protective layer. The optical recording medium also includes a hardened surface layer, transparent to a light beam for reproducing information recorded in the optical recording layer, or for reproducing information recorded in the optical recording layer and recording information in the optical recording layer, provided on a surface of the transparent substrate where the light beam is projected, and a masking layer provided in a region behind the IC module on the external surface of the hardened surface layer.
    • 光记录介质包括其曝光表面被掩蔽以便不被视觉识别的集成电路(IC)模块。 可以有效地制造光学记录介质,而不会降低其基本功能。 光记录介质包括透明基板,光记录层和按此顺序提供的保护层。 将IC模块埋入光记录介质中,使得IC模块的一个表面暴露在保护层上。 光学记录介质还包括硬化表面层,对于用于再现记录在光学记录层中的信息的光束是透明的,或者用于再现记录在光学记录层中的信息和记录在光学记录层中的信息, 其中投射光束的透明基板和设置在硬化表面层的外表面上的IC模块后面的区域中的掩模层。
    • 59. 发明申请
    • Radiation detection device, method of producing the same, and radiation image pick-up system
    • 辐射检测装置及其制造方法以及放射线摄像系统
    • US20050092927A1
    • 2005-05-05
    • US10971150
    • 2004-10-25
    • Kazumi Nagano
    • Kazumi Nagano
    • G01T1/20G01T1/29H01L27/146
    • H01L27/14618G01T1/2018G01T1/2928H01L27/14663H01L2924/0002H01L2924/00
    • To eliminate defects in sealing the end of a scintillator and in sealing the end of a terminal of a flexible circuit board, to reduce the sealing processing time, to increase a pixel region, to eliminate image defects, and to enhance the service life, a radiation detection device comprises: a sensor panel comprising a photoelectric conversion portion and an electrode lead-out portion arranged in the outer periphery of the sensor panel; a flexible circuit board electrically connected to the electrode lead-out portion via a connection portion; a scintillator panel arranged on the photoelectric conversion portion and containing a scintillator layer; and a sealing resin comprising first and second sealing resins, the first sealing resin covering an end of the scintillator layer, and the second sealing resin covering the connection portion for the terminal of the flexible circuit board.
    • 为了消除密封闪烁体的端部和密封柔性电路板的端子的缺陷,为了减少密封处理时间,增加像素区域,消除图像缺陷并提高使用寿命, 辐射检测装置包括:传感器面板,包括光电转换部分和布置在传感器面板外周的电极引出部分; 柔性电路板,经由连接部电连接到所述电极引出部; 闪烁器面板,其布置在所述光电转换部分上并且包含闪烁体层; 以及密封树脂,其包括第一和第二密封树脂,所述第一密封树脂覆盖所述闪烁体层的端部,所述第二密封树脂覆盖所述柔性电路板的端子的连接部分。