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    • 131. 发明授权
    • Radiation detecting apparatus, scintillator panel, and radiographing system
    • 辐射检测装置,闪烁体面板和射线照相系统
    • US07256404B2
    • 2007-08-14
    • US11200025
    • 2005-08-10
    • Masato InoueYoshihiro OgawaSatoshi OkadaTomoyuki TamuraShinichi TakedaKazumi Nagano
    • Masato InoueYoshihiro OgawaSatoshi OkadaTomoyuki TamuraShinichi TakedaKazumi Nagano
    • G01T1/20
    • G01T1/2018
    • A radiation detecting apparatus having: a substrate; a phosphor layer which is formed on a principal plane of the substrate and converts a wavelength of a radiation; and a phosphor protective member including a phosphor protective layer which covers the phosphor layer and is adhered to the substrate, wherein the phosphor protective layer is made of a hot melt resin and an upper surface and a side surface of the phosphor layer and at least a part of at least one side surface of the substrate are covered with the phosphor protective layer. Thus, a moisture-proofing effect for penetration of the moisture from an interface between the phosphor layer and the substrate on the side surface side of the substrate can be improved. Further, by using the hot melt resin for the phosphor protective layer, simplification of manufacturing steps, remarkable reduction in the number of working steps, and remarkable reduction in costs of a product can be accomplished.
    • 一种放射线检测装置,具有:基板; 荧光体层,其形成在所述基板的主平面上并转换辐射的波长; 以及荧光体保护层,其包括覆盖所述荧光体层并附着在所述基板上的荧光体保护层,所述荧光体保护层由热熔树脂和所述荧光体层的上表面和侧面形成,并且至少 衬底的至少一个侧表面的一部分被荧光体保护层覆盖。 因此,能够提高从基板的侧面侧的荧光体层和基板的界面渗入水分的防湿效果。 此外,通过使用热熔树脂作为荧光体保护层,可以实现制造步骤的简化,工序数量的显着减少以及产品成本的显着降低。
    • 132. 发明授权
    • Scintillator panel, radiation detector and manufacture methods thereof
    • 闪烁面板,辐射探测器及其制造方法
    • US07244945B2
    • 2007-07-17
    • US10933249
    • 2004-09-03
    • Satoshi OkadaYoshihiro OgawaKatsuro Takenaka
    • Satoshi OkadaYoshihiro OgawaKatsuro Takenaka
    • G01T1/24
    • G01T1/2018
    • A scintillator panel having a wavelength conversion member has some problems: lowered durability to be caused by an area not covered with a protective layer around a projection formed on the wavelength conversion member surface; lowered resolution response and CTF caused by an irregularity of the film thicknesses of wavelength conversion members and a variation in gaps between wavelength conversion members and sensor panels; and breakage of the sensor panel by projections when a radiation detector is formed by bonding the scintillator panel and sensor panel. At least one of these problems can be solved by a scintillator panel having projections on the wavelength conversion member surface whose sizes are reduced, and by a radiation detector having such a scintillator panel and a sensor panel bonded together.
    • 具有波长转换构件的闪烁面板具有以下问题:由在波长转换构件表面上形成的突起周围没有被保护层覆盖的区域引起的耐久性降低; 由波长转换构件的膜厚度的不规则性引起的分辨率反应和CTF降低以及波长转换构件和传感器面板之间的间隙的变化; 并且当通过结合闪烁体面板和传感器面板形成辐射检测器时,通过投影来破坏传感器面板。 这些问题中的至少一个可以通过具有在尺寸减小的波长转换构件表面上的突起的闪烁体面板以及通过具有这样的闪烁体面板和传感器面板结合在一起的放射线检测器来解决。
    • 135. 发明授权
    • Scintillator panel, radiation detecting apparatus, and radiation detection system
    • 闪烁面板,放射线检测装置和放射线检测系统
    • US07112802B2
    • 2006-09-26
    • US10812919
    • 2004-03-31
    • Yoshihiro Ogawa
    • Yoshihiro Ogawa
    • G01T1/20
    • G01T1/161G01T1/026
    • To provide a scintillator panel in which uniform photoelectric converting efficiency is obtained and an image of a high sensitivity and a high sharpness is obtained, a scintillator panel has: a phosphor layer for converting a radiation into light; and a supporting member having a supporting substrate having radiation permeability for supporting the phosphor layer, wherein the supporting substrate is formed by laminating non-conductive layers for assuring non-conductivity of a surface which supports the phosphor layer of the supporting substrate and non-conductivity of an opposite surface which faces the surface and a rigidity holding layer for assuring rigidity of the supporting substrate. Further, moisture-proof metal foils are laminated onto the surface and the opposite surface of the supporting substrate. The panel further includes a moisture resistant protective layer which covers the phosphor layer and the supporting member.
    • 为了提供其中获得均匀的光电转换效率并且获得高灵敏度和高锐度的图像的闪烁体面板,闪烁体面板具有:用于将辐射转换成光的荧光体层; 以及支撑构件,其具有用于支撑所述荧光体层的具有透射性的支撑基板,其中所述支撑基板通过层叠非导电层形成,以确保支撑所述支撑基板的荧光体层的表面的非导电性和非导电性 面向表面的相反表面和用于确保支撑基底的刚性的刚性保持层。 此外,防潮金属箔层压在支撑基板的表面和相对表面上。 面板还包括覆盖磷光体层和支撑构件的防潮保护层。
    • 136. 发明授权
    • Toner
    • 爽肤水
    • US07097951B2
    • 2006-08-29
    • US11212638
    • 2005-08-29
    • Syuhei MoribeHiroshi YusaTakashige KasuyaYoshihiro Ogawa
    • Syuhei MoribeHiroshi YusaTakashige KasuyaYoshihiro Ogawa
    • G03G9/08
    • G03G9/09725G03G5/04G03G5/0436G03G5/0514G03G9/0821G03G9/083G03G9/0835G03G9/08755G03G9/08782G03G9/08793G03G9/08795G03G9/08797G03G9/09708G03G9/09716G03G9/09783
    • A toner of the present invention comprises at least a binder resin comprising as a main component a polyester resin, a wax, and a colorant, in which in case of measuring a wettability of the toner with respect to a mixed solvent of methanol and water in terms of an optical transimittance at an optical wavelength of 780 nm, a methanol concentration of the mixed solvent is in a range of 45 to 65% by volume when an optical transmittance is 80% and 10%, respectively; a melt index (MI) is of 0.1 to 10 g/10 min at a temperature of 125° C. and a load of 5 kg; the toner comparises a resin component insoluble to tetrahydrofuran (THF insoluble component) in an amount of 5 to 40% by mass based on a mass of the binder resin; and the toner comprises a THF soluble component having a main peak in a molecular weight region of 3,000 to 20,000, and has a proportion of a component having a molecular weight of 10,000 or less in the THF soluble component is 50% by mass or more, according to a chromatogram of the THF soluble component measured by gel permeation chromatography. According to the toner of the present invention, it is possible to control lowering of an image density after leaving under a high temperature and high humidity environment, and a decline in the image density due to a charge-rise phenomenon upon low rate printing. Further, the toner has excellent fixing property and high temperature offset characteristic, and occurring of the end-offset is controlled.
    • 本发明的调色剂至少包含粘合剂树脂,其包含作为主要成分的聚酯树脂,蜡和着色剂,其中在测量调色剂相对于甲醇和水的混合溶剂的润湿性的情况下 当光学透射率为80%和10%时,光波长为780nm时的混合溶剂的甲醇浓度为45〜65体积%。 在125℃的温度和5kg的负荷下,熔体指数(MI)为0.1至10g / 10min; 相对于粘合剂树脂的质量,该调色剂比较不溶于四氢呋喃的THF树脂成分(THF不溶成分)的量为5〜40质量% 调色剂包含分子量为3000〜20,000的主峰的THF可溶成分,THF可溶成分中的分子量为10,000以下的成分的比例为50质量%以上, 根据通过凝胶渗透色谱测量的THF可溶性组分的色谱图。 根据本发明的调色剂,可以控制在高温和高湿度环境下离开之后的图像浓度的降低,以及在低速打印时由于充电 - 上升现象引起的图像浓度的下降。 此外,调色剂具有优异的定影性和高温偏移特性,并且控制了端部偏移的发生。
    • 137. 发明授权
    • Magnetic sensor
    • 磁传感器
    • US07084624B2
    • 2006-08-01
    • US10495127
    • 2003-02-14
    • Yoshinori TokuraMasashi KawasakiHiroyuki YamadaYoshihiro OgawaYoshio Kaneko
    • Yoshinori TokuraMasashi KawasakiHiroyuki YamadaYoshihiro OgawaYoshio Kaneko
    • G01R33/02
    • G11C13/06G01R33/0325G01R33/095G11B5/1278G11B11/10547
    • The present invention provides a magnetic sensor capable of reproducing a magnetic record even if the size of a recorded magnetization is a minute one, directly reading a magnetization recorded on a magneto-optical disk without applying incident light itself to the magneto-optical disk, and obtaining signals of a second harmonic having a high S/N ratio. This magnetic sensor includes a magnetic sensor element (102) having electric polarization disposed with respect to a perpendicular recording medium (101), and laser generating means acting on the magnetic sensor element (102). The magnetic sensor reads information in the perpendicular recording medium (101) based on the variation of the rotation angle φ of the polarization plane of a second harmonic (105) of a frequency 2ω exiting the magnetic sensor element (102) by the application of laser light (104) with a frequency ω from the laser generation means to the magnetic sensor element (102).
    • 本发明提供一种能够再现磁记录的磁传感器,即使记录的磁化的大小是微小的,直接读取记录在磁光盘上的磁化而不将入射光本身插入磁光盘,以及 获得具有高S / N比的二次谐波的信号。 该磁传感器包括相对于垂直记录介质(101)设置的具有电极化的磁传感器元件(102)和作用在磁传感器元件(102)上的激光产生装置。 磁传感器基于通过施加激光器离开磁传感器元件(102)的频率为2omega的二次谐波(105)的偏振面的旋转角度phi的变化,读取垂直记录介质(101)中的信息 具有从激光产生装置到磁传感器元件(102)的频率ω的光(104)。