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    • 92. 发明申请
    • POWER SEMICONDUCTOR DEVICE
    • 功率半导体器件
    • US20140035122A1
    • 2014-02-06
    • US13993348
    • 2012-07-31
    • Shigeyuki NakazatoYoichi GotoKiyofumi KitaiToru Kimura
    • Shigeyuki NakazatoYoichi GotoKiyofumi KitaiToru Kimura
    • H01L23/34
    • H01L23/34H01L21/4882H01L23/3121H01L23/367H01L2924/0002H01L2924/00
    • A power semiconductor device includes: a mold unit that includes a power semiconductor element, a base plate, and a mold unit, the power semiconductor element being mounted on one surface of the base plate, a convex portion being formed on an other surface of the base plate, the convex portion including a plurality of grooves, the mold unit having a mold resin with which the power semiconductor element is sealed in such a manner as to expose the convex portion; a plurality of radiation fins inserted into the grooves, respectively, and fixedly attached to the base plate by swaging; and a metal plate that includes a opening into which the convex portion is inserted, the metal plate being arranged between the mold unit and the radiation fins with the convex portion inserted into the opening, wherein the metal plate includes a protrusion that protrudes from an edge of the opening and that digs into a side surface of the convex portion when the convex portion is inserted into the opening.
    • 功率半导体器件包括:模具单元,其包括功率半导体元件,基板和模具单元,所述功率半导体元件安装在所述基板的一个表面上,凸部形成在所述基板的另一表面上 底板,所述凸部包括多个凹槽,所述模具单元具有模制树脂,所述功率半导体元件以这样的方式被密封以暴露所述凸部; 分别插入槽中的多个辐射翅片,并通过型锻固定地固定到基板上; 以及金属板,其包括插入所述凸部的开口,所述金属板布置在所述模具单元和所述散热片之间,所述凸部插入到所述开口中,其中所述金属板包括突出部, 并且当所述凸部插入到所述开口中时,所述凹部挖入所述凸部的侧表面。
    • 100. 发明授权
    • Ion conductive polymer electrolyte membrane and production method for the same
    • 离子导电聚合物电解质膜及其制备方法相同
    • US07540991B2
    • 2009-06-02
    • US11173721
    • 2005-07-01
    • Naoyuki ShimoyamaFumio SaitohToru KimuraMasayuki Tobita
    • Naoyuki ShimoyamaFumio SaitohToru KimuraMasayuki Tobita
    • H05B6/00
    • H01M10/0565C08J5/2256C08J2379/06H01M8/1027H01M8/103H01M8/1081H01M8/1086H01M10/0525H01M2300/0082Y02P70/56
    • The present invention provides an electrolyte membrane formed of an ion conductive composition. Said composition contains a liquid crystalline polymer having an ionic dissociative group. Molecular chains of the liquid crystalline polymer are orientated in a specific direction. The degree of orientation α of the liquid crystalline polymer is in a range of 0.45 or more and less than 1, as defined by equation (1) as follows, Degree of orientation α=(180−Δβ)/180  (1), wherein Δβ is a full width at half maximum of a peak in an X-ray diffraction intensity distribution pattern obtained by measuring an intensity distribution from 0 to 360 degrees in the azimuthal angle direction, at a peak scattering angle, in an X-ray diffraction image of the electrolyte membrane. Ionic conductivity in a thickness direction of the membrane is higher than the ionic conductivity in a direction parallel to a surface of the membrane. The present invention also provides a method for manufacturing an electrolyte membrane formed of an ion conductive composition.
    • 本发明提供由离子导电组合物形成的电解质膜。 所述组合物含有具有离子解离基团的液晶聚合物。 液晶聚合物的分子链沿特定方向取向。 如式(1)所定义,液晶聚合物的取向度α在0.45以上且小于1的范围内,<?在线式说明=“在线式”末端= “lead”?>取向度α=(180-Deltabeta)/ 180(1),<?in-line-formula description =“In-line formula”end =“tail”?>其中Deltabeta是 在电解质膜的X射线衍射图像中,以峰值散射角测量方位角方向的0〜360度的强度分布而得到的X射线衍射强度分布图案中的峰的半值最大值。 膜的厚度方向上的离子传导率在平行于膜的表面的方向上高于离子导电率。 本发明还提供一种由离子导电组合物形成的电解质膜的制造方法。