Organic film vapor deposition method and a scintillator panel
    21.
    发明授权
    Organic film vapor deposition method and a scintillator panel 有权
    有机薄膜蒸镀法和闪烁体面板

    公开(公告)号:US07048967B2

    公开(公告)日:2006-05-23

    申请号:US10217652

    申请日:2002-08-14

    Abstract: An organic film vapor deposition method includes a first step of supporting a substrate formed with a scintillator on at least three protrusions of a target-support element disposed on a vapor deposition table so as to keep a distance from the vapor deposition table; a second step of introducing the vapor deposition table having the substrate supported by the target-support element into a vapor deposition chamber of a CVD apparatus; and a third step of depositing an organic film by CVD method onto all surfaces of the substrate, provided with the scintillator, introduced into the vapor deposition chamber.

    Abstract translation: 有机膜气相沉积方法包括:在设置在气相沉积台上的靶支撑元件的至少三个突起上支撑形成有闪烁体的衬底以便保持与蒸镀台的距离的第一步骤; 将具有被靶支撑元件支撑的基板的蒸镀台导入CVD装置的蒸镀室的第二工序; 以及通过CVD法将有机膜沉积到设置有闪烁体的基板的所有表面上并引入到蒸镀室中的第三步骤。

    Terminal and standby operation control method

    公开(公告)号:US20060025105A1

    公开(公告)日:2006-02-02

    申请号:US10946533

    申请日:2004-09-20

    Applicant: Hiroto Sato

    Inventor: Hiroto Sato

    Abstract: There is provided a terminal which has wireless communication unit to perform wireless communication and which operates using power supplied from an external power supply or power of a battery. The terminal includes a detection unit configured to detect whether power is supplied from the external power supply, and a control unit configured to cause the terminal to start standby operation of waiting for a signal though the wireless communication unit when the detection unit detects that power is supplied from the external power supply.

    Radiation detection device and method of making the same
    23.
    发明授权
    Radiation detection device and method of making the same 有权
    辐射检测装置及其制作方法

    公开(公告)号:US06940072B2

    公开(公告)日:2005-09-06

    申请号:US10750945

    申请日:2004-01-05

    CPC classification number: G01T1/2018

    Abstract: A radiation detection device includes a light-receiving device array with a plurality of light-receiving devices arranged on a substrate to form a light-receiving portion and a plurality of bonding pads electrically coupled to the light-receiving devices of the light-receiving portion to form a bonding pad portion. A scintillator layer is deposited over at least a portion of the light-receiving devices for converting radiaton into detectable light. A radiation-transmitable, moisture-resistant protective film covers at least the scintillator. A coating resin is located in proximity to a periphery of the moisture-resistant prptective film, with the periphery of the moisture-resistant protective film being fixed to the light-receiving device array with the coating resin.

    Abstract translation: 辐射检测装置包括:光接收装置阵列,其具有布置在基板上的多个光接收装置,以形成光接收部分;以及多个接合焊盘,其电耦合到光接收部分的光接收装置 以形成接合焊盘部分。 闪烁体层沉积在光接收装置的至少一部分上,用于将辐射转换成可检测的光。 辐射透射,防潮保护膜至少覆盖闪烁体。 涂层树脂位于防潮保护膜的周围附近,防潮保护膜的周边用涂布树脂固定在光接收装置阵列上。

    Organic film vapor deposition method and a scintillator panel
    26.
    发明授权
    Organic film vapor deposition method and a scintillator panel 有权
    有机薄膜蒸镀法和闪烁体面板

    公开(公告)号:US06762420B2

    公开(公告)日:2004-07-13

    申请号:US10218130

    申请日:2002-08-14

    Abstract: Comprising a first step of supporting a substrate formed with a scintillator on at least three protrusions of a target-support element disposed on a vapor deposition table so as to keep a distance from said vapor deposition table; a second step of introducing said vapor deposition table having said substrate supported by said target-support element into a vapor deposition chamber of a CVD apparatus; and a third step of depositing an organic film by CVD method onto all surfaces of said substrate, provided with said. scintillator, introduced into said vapor deposition chamber.

    Abstract translation: 包括在设置在气相沉积台上的靶支撑元件的至少三个突起上支撑由闪烁体形成的衬底以便保持距离所述气相沉积台的距离的第一步骤; 将具有由所述靶支撑元件支撑的所述基板的所述蒸镀台引入CVD装置的蒸镀室的第二工序; 以及通过CVD法将所述有机膜沉积到所述基板的所有表面上的第三步骤。 闪烁体,引入所述蒸镀室。

    Lamp and lamp package made of functionally gradient material
    28.
    发明授权
    Lamp and lamp package made of functionally gradient material 有权
    由功能梯度材料制成的灯和灯组合

    公开(公告)号:US06597114B1

    公开(公告)日:2003-07-22

    申请号:US09581171

    申请日:2000-06-13

    CPC classification number: H01J9/323 H01J61/36 H01J61/366 H01J61/822 H01K1/40

    Abstract: A lamp seal (10, 30) of functionally gradient seal material and a lead bar (13, 32) that is fixed to the seal piece (11, 31), which seal piece is formed an inorganic layer with insulative properties and a number of mixed layers that are each mixtures of conductive inorganic materials and insulative inorganic materials, such that the proportion of conductive inorganic materials increases gradually in the direction of layering. A hole is formed extending in the direction of layering such that the lead bar can be fixed into the seal material with a sleeve-shaped metallic part made of a high-melting-point metal separating the outer periphery of the lead bar from the seal material. A lamp made with an air-tight seal formed of that lamp seal of functionally gradient material.

    Abstract translation: 功能梯度密封材料的灯泡密封件(10,30)和固定到密封件(11,31)上的导杆(13,32),该密封件形成具有绝缘性能和数量的无机层 各导电无机材料和绝缘无机材料的混合物的混合层,使得导电无机材料的比例在层叠方向上逐渐增加。 形成在层叠方向上延伸的孔,使得引线可以用由高熔点金属制成的套筒形金属部件固定到密封材料中,该金属部分将引线的外周与密封材料分开 。 一个由具有功能梯度材料的灯泡形成的气密密封制成的灯。

    High pressure mercury lamp
    29.
    发明授权
    High pressure mercury lamp 失效
    高压汞灯

    公开(公告)号:US6060830A

    公开(公告)日:2000-05-09

    申请号:US89413

    申请日:1998-06-03

    CPC classification number: H01J61/827 H01J61/822

    Abstract: A high pressure mercury lamp with an extremely high mercury vapor pressure and extremely high tube wall load in which the arc during operation is advantageously stabilized is achieved in a high pressure mercury lamp having a discharge vessel of fused silica glass which contains a pair of opposed tungsten electrodes, mercury in an amount at least equal to 0.16 mg/mm.sup.3 and a rare gas, and in which the discharge tube has a tube wall load at least equal to 0.8 W/mm.sup.2, by at least one metal halide with a metal having an ionization potential that is at most 0.87 times as high as the mercury ionization potential being added to the discharge tube in a range of from 2.times.10.sup.-4 to 7.times.10.sup.-2 .mu.mole/mm.sup.3.

    Abstract translation: 在具有熔融石英玻璃的放电容器的高压汞灯中,实现了具有极高的汞蒸汽压力和极高的管壁负荷的高压汞灯,其中操作期间的电弧有利地稳定,其具有包含一对相对的钨 电极,至少等于0.16mg / mm 3的汞和稀有气体,并且其中放电管具有至少等于0.8W / mm 2的管壁负载,至少一种金属卤化物与金属具有 电离电位在汞离子化电位的2倍×10 -4〜7×10 -2μmol/ mm 3的范围内至多为0.87倍。

    Scintillator panel and radiation image sensor
    30.
    发明授权
    Scintillator panel and radiation image sensor 有权
    闪烁面板和辐射图像传感器

    公开(公告)号:US07705315B2

    公开(公告)日:2010-04-27

    申请号:US12213170

    申请日:2008-06-16

    CPC classification number: G01T1/202

    Abstract: An Ag film as a light-reflecting film is formed on one surface of an a-C substrate of a scintillator panel. The entire surface of the Ag film is covered with an SiN film for protecting the Ag film. A scintillator having a columnar structure, which converts an incident radiation into visible light, is formed on the surface of the SiN film. The scintillator is covered with a polyparaxylylene film together with the substrate.

    Abstract translation: 在闪烁体面板的a-C基板的一个表面上形成作为光反射膜的Ag膜。 Ag膜的整个表面被用于保护Ag膜的SiN膜覆盖。 在SiN膜的表面上形成具有将入射辐射转换为可见光的柱状结构的闪烁体。 闪烁体与基板一起被聚对二甲苯膜覆盖。

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