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    • 23. 发明授权
    • Phosphor sheet for radiation detector, radiation detector and apparatus for radiographic equipment
    • 用于放射线检测器的荧光板,用于射线照相设备的放射线检测器和设备
    • US07675039B2
    • 2010-03-09
    • US10528661
    • 2003-09-25
    • Eiji OyaizuMasami Okamura
    • Eiji OyaizuMasami Okamura
    • G01T1/20
    • G21K4/00C09K11/7767C09K11/7784
    • A phosphor sheet 8 for a radiation detector used by being attached to a photoelectric conversion film 20 of a radiation detector 4 includes a sheet-shaped support 11, and a phosphor layer 12 provided thereon. The phosphor layer 12 contains a europium-activated rare earth oxysulfide phosphor having a europium concentration in a range of 0.01 to 3.5 mol %. The radiation detector 4 includes the phosphor sheet 8 being irradiated with radiation rays transmitted through a specimen and converting the radiation rays into light, a photoelectric conversion film 20 for converting the light from the phosphor sheet 8 into electric charges, and a charge information reading section 30 for reading out the charges generated on the photoelectric conversion film 20 for each of a plurality of pixels 31.
    • 用于通过安装在放射线检测器4的光电转换膜20上的放射线检测器的荧光体片8包括片状支撑体11和设置在其上的荧光体层12。 荧光体层12含有铕激活的稀土氧硫化物荧光体,其铕浓度为0.01〜3.5摩尔%。 放射线检测器4包括用透射通过样本的放射线照射荧光体片8并将辐射线变换成光的光电转换膜20,用于将来自荧光体片8的光转换成电荷的光电转换膜20以及电荷信息读取部 30,用于读出对于多个像素31中的每一个在光电转换膜20上产生的电荷。
    • 26. 发明申请
    • Phosphor sheet for radiation detector, radiation detector employment it and equipment for detecting radiation
    • 用于放射线检测器的荧光板,辐射探测器及其用于检测辐射的设备
    • US20060054830A1
    • 2006-03-16
    • US10528661
    • 2003-09-25
    • Eiji OyaizuMasami Okamura
    • Eiji OyaizuMasami Okamura
    • G01T1/20H05B33/00
    • G21K4/00C09K11/7767C09K11/7784
    • A phosphor sheet 8 for a radiation detector used by being attached to a photoelectric conversion film 20 of a radiation detector 4 includes a sheet-shaped support 11, and a phosphor layer 12 provided thereon. The phosphor layer 12 contains a europium-activated rare earth oxysulfide phosphor having a europium concentration in a range of 0.01 to 3.5 mol %. The radiation detector 4 includes the phosphor sheet 8 being irradiated with radiation rays transmitted through a specimen and converting the radiation rays into light, a photoelectric conversion film 20 for converting the light from the phosphor sheet 8 into electric charges, and a charge information reading section 30 for reading out the charges generated on the photoelectric conversion film 20 for each of a plurality of pixels 31.
    • 用于通过安装在放射线检测器4的光电转换膜20上的放射线检测器的荧光体片8包括片状支撑体11和设置在其上的荧光体层12。 荧光体层12含有铕激活的稀土氧硫化物荧光体,其铕浓度为0.01〜3.5摩尔%。 放射线检测器4包括用透射通过样本的放射线照射荧光体片8并将辐射线变换成光的光电转换膜20,用于将来自荧光体片8的光转换成电荷的光电转换膜20以及电荷信息读取部 30,用于读出对于多个像素31中的每一个在光电转换膜20上产生的电荷。
    • 27. 发明申请
    • Thermoelectric element and electronic component module and portable electronic apparatus using it
    • 热电元件和电子元件模块及其使用的便携式电子设备
    • US20050172991A1
    • 2005-08-11
    • US10518399
    • 2003-06-18
    • Tomohisa AraiTakashi RokutandaMasami Okamura
    • Tomohisa AraiTakashi RokutandaMasami Okamura
    • F25B21/02H01L35/30H01L35/28
    • H01L35/30F25B21/02F25B2321/025
    • A thermoelectric element (1) comprises N type thermoelectric semiconductors (4) and P type thermoelectric semiconductors (5) arranged between support members (2, 3). The N type and P type thermoelectric semiconductors (4, 5) are connected together in series by heat absorbing electrodes (6) and heat radiating electrodes (7) joined to the ends of these semiconductors. First heat transmitting members (8) are integrally provided to the heat radiating electrodes (7), and second heat transmitting members (9) are integrally provided to the heat absorbing electrodes (6) and are allowed to protrude in the same direction as (in a direction opposite to) the direction of the first heat transmitting members (8). The second heat transmitting members (9) function as heat radiating media when the thermoelectric element (1) is not in operation to dissipate the heat of a component (16) to be cooled into a radiation space via the second heat transmitting members (9).
    • 热电元件(1)包括N型热电半导体(4)和布置在支撑构件(2,3)之间的P型热电半导体(5)。 N型和P型热电半导体(4,5)通过与这些半导体的端部连接的吸热电极(6)和散热电极(7)串联连接在一起。 第一传热构件(8)一体地设置在散热电极(7)上,第二传热构件(9)一体地设置在吸热电极(6)上,并允许沿与 与第一传热部件(8)的方向相反的方向。 当热电元件(1)不工作时,第二传热构件(9)用作散热介质,以通过第二传热构件(9)将待冷却的部件(16)的热量散发到辐射空间中, 。
    • 28. 发明授权
    • Magnet powder and method for producing the same, and bonded magnet using the same
    • 磁粉及其制造方法以及使用其的粘结磁铁
    • US06468440B1
    • 2002-10-22
    • US09646793
    • 2000-09-22
    • Shinya SakuradaTomohisa AraiMasami OkamuraKeisuke HashimotoTakahiro Hirai
    • Shinya SakuradaTomohisa AraiMasami OkamuraKeisuke HashimotoTakahiro Hirai
    • C04B3504
    • H01F1/059
    • Magnet powder has a composition expressed by (R1XR2YBZT100−X−Y−Z)100−QNQ (in formula, R1 is at least one kind of element selected from rare earth elements, R2 is at least one kind of element selected from Zr, Hf and Sc, T is at least one kind of element selected from Fe and Co, and X, Y, Z and Q are numbers satisfying 2 atomic %≦X, 0.01 atomic %≦Y, 4≦X+Y≧20 atomic %, 0≦Z≦10 atomic %, and 0.1≦Q≦20 atomic %, respectively), and TbCu7 crystal phase as a principal phase. In such magnet powder, a ratio of fine particles of which maximum diameter is 22 &mgr;m or less is 20% by weight or less. Alternatively, surface roughness of particles constituting the magnet powder is 5 &mgr;m or less in terms of maximum height Ry provided in JIS B 0601-1994. Accordingly, to such a magnet powder, excellent magnetic properties can be obtained with reproducibility.
    • 磁铁粉末具有由(R1XR2YBZT100-XYZ)100-QNQ表示的组成(式中,R1为选自稀土元素中的至少一种元素,R2为选自Zr,Hf,Sc,T中的至少一种元素 是选自Fe和Co中的至少一种元素,X,Y,Z和Q是满足2原子%<= X,0.01原子%<= Y,4 <= X + Y> = 20原子%的数, 0 <= Z <= 10原子%,分别为0.1 <= Q <= 20原子%),TbCu7晶相为主相。 在这种磁铁粉末中,最大直径为22μm以下的微粒的比例为20重量%以下。 或者,构成磁体粉末的颗粒的表面粗糙度以JIS B 0601-1994中规定的最大高度Ry计为5um以下。 因此,对于这种磁铁粉末,可以以重现性获得优异的磁特性。