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    • 21. 发明授权
    • Thermal activation device
    • 热激活装置
    • US07458407B2
    • 2008-12-02
    • US11054501
    • 2005-02-09
    • Masanori TakahashiMinoru HoshinoYoshinori Sato
    • Masanori TakahashiMinoru HoshinoYoshinori Sato
    • B32B41/00
    • B41J15/165B41J3/4075B41J15/046B65C9/25
    • A thermal activation device has a thermal head and a platen roller that is in contact with an upwardly inclined surface of the thermal head and that is rotationally driven to convey a heat-sensitive adhesive sheet along the upwardly inclined surface between the thermal head and the platen roller while the thermal head thermally activates a heat-sensitive adhesive layer of the heat-sensitive adhesive sheet. A discharge roller is positioned downstream of the platen roller with a part of an outer circumference of the discharge roller above the level at which the heat-sensitive adhesive sheet exits from between the thermal head and the platen roller. The discharge roller is rotationally driven to convey the heat-sensitive adhesive sheet on the outer circumference of the discharge roller to a discharge port. A discharge guide is positioned above the discharge roller, and spaced from the discharge roller a distance larger than a thickness of the heat-sensitive adhesive sheet, to guide the heat-sensitive adhesive sheet onto the discharge roller. The discharge roller is configured such that a part of the roller outer circumference thereof is offset by 0.3 mm or more to the platen roller side from a reference plane obtained by extending a head surface of the thermal head.
    • 热激活装置具有与热敏头的向上倾斜的表面接触的热敏头和压纸辊,并被旋转驱动以沿热敏头和压板之间的向上倾斜的表面传送热敏粘合片 而热敏头热激活热敏粘合片的热敏粘合剂层。 排出辊位于压纸辊的下游,排出辊的外周的一部分高于热敏性粘合片从热敏头和压纸辊之间出射的水平面以上。 排出辊被旋转地驱动以将排出辊的外周上的热敏粘合片输送到排出口。 排出引导件位于排出辊上方,与排出辊间隔开大于该热敏粘合片的厚度的距离,以将热敏粘合片引导到排出辊上。 排出辊构造成使得其辊外周的一部分从通过延长热敏头的头表面而获得的参考平面偏移0.3mm或更多。
    • 22. 发明申请
    • Solid electrolytic capacitor and method of manufacturing same
    • 固体电解电容器及其制造方法
    • US20080232039A1
    • 2008-09-25
    • US12076075
    • 2008-03-13
    • Takeshi SaitoYuji YoshidaTakeo KasugaKoji SakataKatsuhiro YoshidaMasanori Takahashi
    • Takeshi SaitoYuji YoshidaTakeo KasugaKoji SakataKatsuhiro YoshidaMasanori Takahashi
    • H01G9/15
    • H01G9/012H01G9/15Y10T29/417
    • A solid electrolytic capacitor including a solid electrolytic capacitor component comprises a porous anode body 2 composed of valve metal having a anode lead 1 protruding therefrom, a anode oxide film, a solid electrolyte layer 4, a graphite layer 5, a silver paste layer 6, a resist layer 3 separating the anode lead 1 used as a anode portion and the porous anode body 2 used as a cathode portion, and a anode lead element 7 connected to the anode lead 1, the anode oxide film, solid electrolyte layer 4, graphite layer 5, silver paste layer 6 being successively formed on the surface of the porous anode body 2, wherein the solid electrolytic capacitor component is bonded on a mounting substrate 21 having a anode terminal 21a, a cathode terminal 21b, and an insulating portion 21c therebetween with a precuring insulating adhesive 9 formed on the insulating portion 21c of the mounting substrate 21 and precuring conductive adhesives 8 formed on the anode terminal and cathode terminal, and sealed with exterior resin 10.
    • 包括固体电解电容器部件的固体电解电容器包括由具有突出的阳极引线1的阀金属构成的多孔阳极体2,阳极氧化膜,固体电解质层4,石墨层5,银膏层6, 分离用作阳极部分的阳极引线1和用作阴极部分的多孔阳极体2的抗蚀剂层3和连接到阳极引线1的阳极引线元件7,阳极氧化膜,固体电解质层4,石墨 层5依次形成在多孔阳极体2的表面上的银糊层6,其中固体电解电容器部件接合在具有阳极端子21a,阴极端子21b以及绝缘部分的安装基板21上 21c之间,在安装基板21的绝缘部分21c上形成预固化绝缘粘合剂9,并且预先形成在阳极端子和阴极端子上的导电粘合剂8 并用外部树脂10密封。
    • 23. 发明授权
    • Electron beam apparatus
    • 电子束装置
    • US07427826B2
    • 2008-09-23
    • US11331111
    • 2006-01-13
    • Jun IbaYasuo OhashiHisanobu AzumaTakahiro HachisuMasanori Takahashi
    • Jun IbaYasuo OhashiHisanobu AzumaTakahiro HachisuMasanori Takahashi
    • H01J1/00H01J9/02
    • H01J3/026H01J31/127
    • There provided is an electron beam apparatus of preventing surface creeping discharge from newly arising due to discharge that arises between an anode electrode and an electron-emitting device. In an electron-emitting device including a scan signal device electrode and an information signal device electrode, a portion of the scan signal device electrode is covered by an insulating layer of insulating scan signal wiring from information signal wiring, an additional electrode is connected to the scan signal device electrode at an end portion of the insulating layer and the additional electrode is configured so that energy Ee being lost due to melting of the additional electrode is larger than energy Ea of discharge current flowing in to the electron-emitting device.
    • 提供了一种电子束装置,其防止由于在阳极电极和电子发射器件之间产生的放电而新出现的表面蠕变放电。 在包括扫描信号器件电极和信息信号器件电极的电子发射器件中,扫描信号器件电极的一部分被来自信息信号布线的绝缘扫描信号布线的绝缘层覆盖,附加电极连接到 在绝缘层的端部处的扫描信号器件电极和附加电极被配置为使得由于附加电极的熔化而损失的能量Ee大于流入电子发射器件的放电电流的能量Ea。
    • 24. 发明申请
    • Superconductive magnetic apparatus for magnetic resonance imaging unit
    • 用于磁共振成像单元的超导磁性装置
    • US20080100295A1
    • 2008-05-01
    • US11723749
    • 2007-03-21
    • Takeshi NakayamaMitsushi AbeHiroyuki WatanabeMasanori Takahashi
    • Takeshi NakayamaMitsushi AbeHiroyuki WatanabeMasanori Takahashi
    • G01R33/3815
    • G01R33/3873G01R33/3806G01R33/3815G01R33/421
    • A super-conducting magnet apparatus in an MRI system which may reduce unevenness among magnetization characteristics of ferromagnetic elements arranged between super-conductive shield coils and superconducting main coils. There are provided a pair of super-conducting main coils, a pair of superconductive shield coils arranged on the axes of the pair of super-conducting main coils, being spaced from the pair of super-conducting main coils, and also arranged on opposite sides of a zone to be observed, and ferromagnetic elements arranged in parts of spaces extending from air core parts of the super-conducting main coils to air core parts of the super-conductive shield coils. The super-conductive shield coils have an outer diameter which is larger than that of the super-conducting main coils. The ferromagnetic elements are composed of a plurality of axially symmetric ferromagnetic members which are coaxially arranged, and which have a space in at least a radial part thereof, but not in a center axis part. With this configuration, the magnetic saturation of the ferromagnetic members may be facilitated. Thereby it is possible to reduce the effect of unevenness among magnetization characteristics of the ferromagnetic elements.
    • 一种MRI系统中的超导磁体装置,其可以减少配置在超导体屏蔽线圈与超导主线圈之间的铁磁性元件的磁化特性之间的不均匀性。 设置有一对超导主线圈,一对超导屏蔽线圈,布置在一对超导主线圈的轴线上,与一对超导主线圈间隔开,并且还布置在相对侧 以及配置在从超导主线圈的空气芯部分延伸到超导电屏蔽线圈的空芯部分的空间的部分的铁磁元件。 超导电屏蔽线圈的外径大于超导主线圈的外径。 铁磁元件由同轴布置的多个轴向对称铁磁构件组成,并且在至少其径向部分中具有空间,但不在中心轴部分。 利用这种结构,铁磁部件的磁饱和度可以容易。 由此,能够降低铁磁性元件的磁化特性之间的不均匀性的影响。
    • 25. 发明申请
    • Fluorescent x-ray analysis apparatus
    • 荧光X射线分析仪
    • US20070274441A1
    • 2007-11-29
    • US11805665
    • 2007-05-24
    • Takayuki FukaiYoshiki MatobaMasanori Takahashi
    • Takayuki FukaiYoshiki MatobaMasanori Takahashi
    • G01N23/223G01T1/36
    • G01N23/223G01N2223/076G01N2223/618G01N2223/635G01N2223/639
    • To provide a fluorescent X-ray analysis apparatus, whereby a peak-back ratio is improved by effectively exciting a focused element and a detection limit of the focused element is improved by decreasing a scattered X-ray to be a background. A sample housing has one or more wall surfaces made of a material through which an X-ray transmits and an X-ray source is arranged so that a primary X-ray is irradiated on the wall surface. In addition, the sample housing is arranged so that a wall surface different from a wall surface on which the primary X-ray is irradiated is opposed to an X-ray detector incident window. Further, the primary X-ray from the X-ray source is arranged so as to be able to irradiate the wall surface of the sample housing to which the X-ray detector incident window is opposed. The sample housing has a shape extending in response to extension of a viewing filed that a detection element in the X-ray detector is seen from the X-ray detector incident window. In addition, on the wall of the sample housing, a metal for secondarily exciting the focused element is arranged on an area other than an area through which the primary X-ray transmits and an area where the fluorescent X-ray from the focused element passes to the detector.
    • 为了提供一种荧光X射线分析装置,通过有效地激发聚焦元件来提高峰回比,并且通过将散射的X射线减少为背景来提高聚焦元件的检测极限。 样品壳体具有一个或多个由X射线透过的材料制成的壁表面,并且X射线源被布置成使得主壁X射线照射在壁表面上。 另外,样品壳体被布置成使得不同于其上照射有初级X射线的壁表面的壁表面与X射线检测器入射窗口相对。 此外,来自X射线源的主要X射线被布置成能够照射X射线检测器入射窗口相对的样品壳体的壁表面。 样品壳体具有响应于从X射线检测器入射窗看到X射线检测器中的检测元件的观察区域的延伸而延伸的形状。 此外,在样品壳体的壁上,用于次要激发聚焦元件的金属被布置在除了主X射线透射的区域之外的区域和来自聚焦元件的荧光X射线通过的区域 到检测器。