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    • 1. 发明授权
    • Electrical connection member with outer insulating film member and inner inclined spring member
    • 具有外绝缘膜构件和内倾斜弹簧构件的电连接构件
    • US07874867B2
    • 2011-01-25
    • US12592356
    • 2009-11-24
    • Takuya TakahashiRyuzo Shimeno
    • Takuya TakahashiRyuzo Shimeno
    • H01R12/24
    • H01R12/79H01R12/7052H01R12/777H01R12/89H01R13/2435H01R13/2442
    • In an electrical connection member having elasticity and adapted to be interposed between connection objects for electrically connecting them together, an inner member has a plurality of spring pieces each extending from a base plate portion, an outer member including a flexible insulating film and a plurality of conductive paths formed at the flexible insulating film. Each conductive path has a first and a second contact portion for connection to the connection objects. Each spring piece includes a root portion formed adjacent to the base plate portion and faced to a portion, corresponding to the second contact portion, of an inner surface of an intermediate portion of the insulating film. Each spring piece further includes an inclined spring portion extending obliquely from the root portion and faced to a portion, corresponding to the first contact portion, of the inner surface of the intermediate portion.
    • 在具有弹性并适于插入在连接对象之间用于将它们电连接在一起的弹性的电连接构件中,内部构件具有多个弹簧片,每个弹簧片从底板部分延伸,外部构件包括柔性绝缘膜和多个 形成在柔性绝缘膜上的导电路径。 每个导电路径具有用于连接到连接对象的第一和第二接触部分。 每个弹簧片包括邻近基板部分形成并面对绝缘膜的中间部分的内表面的与第二接触部分相对应的部分的根部。 每个弹簧片还包括倾斜的弹簧部分,该倾斜的弹簧部分从根部倾斜地延伸并且面对与中间部分的内表面相对应的与第一接触部分相对应的部分。
    • 2. 发明授权
    • Housingless connector
    • 无接头连接器
    • US08647129B2
    • 2014-02-11
    • US13551832
    • 2012-07-18
    • Takuya TakahashiRyuzo ShimenoTetsuya KomotoOsamu Hashiguchi
    • Takuya TakahashiRyuzo ShimenoTetsuya KomotoOsamu Hashiguchi
    • H01R12/00
    • H01R12/718H01R12/73
    • Provided is a housingless connector in which a plurality of cantilevers arranged in a comb shape and functioning as contacts is hardly damaged. A receptacle connector (housingless connector) is formed of a single metal plate and used to be mounted on a receptacle-side substrate. The receptacle connector includes a plurality of cantilevers arranged in a comb shape and functioning as contacts, and an outer frame body surrounding the cantilevers. The outer frame body includes a pair of side plates sandwiching the cantilevers in a direction parallel to a connector mounting surface of the receptacle-side substrate, and a top plate disposed on an opposite side of the receptacle-side substrate with the cantilevers interposed therebetween.
    • 提供了一种无壳连接器,其中布置成梳形并且用作触点的多个悬臂几乎不被损坏。 插座连接器(无壳连接器)由单个金属板形成并用于安装在插座侧基板上。 插座连接器包括布置成梳形并且用作触点的多个悬臂和围绕悬臂的外框体。 外框体包括一对侧板,其在与插座侧基板的连接器安装面平行的方向上夹着悬臂,并且在插入侧基板的相对侧设置有悬臂,其间插入有顶板。
    • 8. 发明申请
    • MAGNETIC REFRIGERATING DEVICE AND MAGNETIC REFRIGERATING METHOD
    • 磁性制冷装置和磁性制冷方法
    • US20080078184A1
    • 2008-04-03
    • US11860818
    • 2007-09-25
    • Akiko SAITOTadahiko KobayashiHideyuki TsujiHideo IwasakiKatsumi HisanoAkihiro KogaAkihiro KasaharaTakuya Takahashi
    • Akiko SAITOTadahiko KobayashiHideyuki TsujiHideo IwasakiKatsumi HisanoAkihiro KogaAkihiro KasaharaTakuya Takahashi
    • F25B21/00
    • F25B21/00F25B2321/0021F25B2321/0023Y02B30/66
    • A magnetic refrigerating device includes: a magnetic refrigerating unit including a magnetic material “A” exhibiting a magneto-caloric effect that the temperature of the material “A” is increased by the application of a magnetic field and the temperature of the material “A” is decreased by the removal of a magnetic field, a magnetic material “B” exhibiting a magneto-caloric effect that the temperature of the material “B” is decreased by the application of a magnetic field and the temperature of the material “B” is increased by the removal of a magnetic field, a heat conductive material “a” exhibiting higher heat conductivity under the application of a magnetic field and lower heat conductivity under the removal of a magnetic field, and a heat conductive material “b” exhibiting lower heat conductivity under the application of a magnetic field and higher heat conductivity under the removal of a magnetic field, wherein the magnetic refrigerating unit is configured so as to include at least one layered structure denoted by “AaBb” or “AbBa”; and a magnetic field-applying means to apply a magnetic field to the magnetic refrigerating unit.
    • 磁性制冷装置包括:磁性制冷装置,其具有表现出通过施加磁场使材料“A”的温度升高的磁热量效应的磁性材料“A”,并且材料“A”的温度 通过去除磁场而减少磁性材料“B”,表现出通过施加磁场使材料“B”的温度降低的磁热量效应的磁性材料“B”,并且材料“B”的温度为 通过除去磁场而增加,在磁场施加下表现出更高导热性的导热材料“a”,以及在去除磁场时具有较低热导率的导热材料“a”,以及表现出较低热量的导热材料“b” 在磁场的施加下的导电性和更高的导热性,其中磁性制冷单元被配置为包括在列 由“AaBb”或“AbBa”表示的一个分层结构; 以及向磁性制冷装置施加磁场的磁场施加装置。