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    • 2. 发明专利
    • Manufacturing method and manufacturing apparatus of optical fiber cable
    • 光纤电缆的制造方法和制造方法
    • JP2013257398A
    • 2013-12-26
    • JP2012132618
    • 2012-06-12
    • Fujikura Ltd株式会社フジクラ
    • TAKE YUKIKOITO NAOTOSHIOBARA SATORUOKADA NAOKI
    • G02B6/44
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of an optical fiber cable that enables forming, on a jacket, of an uneven pattern capable of suppressing snow accretion.SOLUTION: An optical fiber cable 1a includes an element part 16 having a rectangular shape sandwiched between a pair of rollers 34a and 34b opposed to each other rotating about a pair of axes 35a and 35b respectively. A manufacturing method of an optical fiber cable includes the steps of: pulling the optical fiber cable 1a at a prescribed linear speed; applying a pressing load to at least one of the pair of axes 35a and 35b in the opposing direction of the pair of rollers 34a and 34b; and transferring an uneven pattern formed on a surface of the pair of rollers 34a and 34b to a jacket of the element part 16 against which the surfaces of the pair of rollers are pressed.
    • 要解决的问题:提供一种能够在夹套上形成能够抑制积雪的不均匀图案的光缆的制造方法。解决方案:光纤线缆1a包括具有矩形形状的元件部分16 在彼此相对的一对辊34a和34b之间分别围绕一对轴线35a和35b旋转。 光纤电缆的制造方法包括以下步骤:以规定的线速度拉动光缆1a; 在一对辊子34a和34b的相反方向上对一对轴线35a和35b中的至少一个施加按压负载; 以及将形成在所述一对辊34a和34b的表面上的不均匀图案转移到所述一对辊的表面被按压的元件部分16的护套。
    • 3. 发明专利
    • Optical fiber cable and clamp method of optical fiber cable
    • 光纤电缆的光纤电缆和夹紧方法
    • JP2013182239A
    • 2013-09-12
    • JP2012047788
    • 2012-03-05
    • Fujikura Ltd株式会社フジクラ
    • ITO NAOTOSHIOBARA SATORUSAYAMA TADAYOSHIONO MASASHITAKEDA DAIKIENDO KATSUYOSHIOKADA NAOKI
    • G02B6/44
    • PROBLEM TO BE SOLVED: To provide a clamp method of an optical fiber cable, for not generating a microbend in a coated optical fiber even when clamped by a P-clamp, and an optical fiber cable.SOLUTION: When a longitudinal direction of an optical fiber cable 1 including a cable support part 13 through a connection part 9 on one side of a cable body 7 having a coated optical fiber 5 arranged between a pair of tensile strength bodies 3 is defined as a Z axial direction, an array direction of the tensile strength bodies 3, the coated optical fiber 5 and the cable support part 13 is defined as a Y axial direction, and a direction orthogonal to the Z axial direction and the Y axial direction is defined as an X axial direction, when the optical fiber cable 1 is to be clamped from the X axial direction by a wire clamp 17 as an outdoor pull-in metal fitting, a side pressure for clamping is applied to the cable support part 13, and the cable body 7 is held in the state that the side pressure is not applied. Then, the outer shape dimension in the X axial direction and the Y axial direction of the cable support part 13 is formed larger than the outer shape dimension in the X and Y axial directions of the cable body 7.
    • 要解决的问题:提供一种光纤电缆的夹持方法,即使在用夹钳和光纤电缆夹持时也不会在涂覆光纤中产生微弯曲。解决方案:当光学器件的纵向方向 光纤电缆1包括电缆支撑部分13,其通过布置在一对拉伸强度体3之间的具有涂覆光纤5的电缆主体7的一侧上的连接部分9定义为Z轴方向, 拉伸强度体3,涂覆光纤5和电缆支撑部13被定义为Y轴方向,并且与Z轴方向和Y轴方向垂直的方向被定义为X轴方向,当光纤 电缆1通过作为室外拉入金属配件的线夹17从X轴方向夹紧,夹持侧压力施加到电缆支撑部13,并且电缆体7保持在 侧面压力为n 应用。 然后,电缆支撑部13的X轴方向和Y轴方向的外形尺寸形成为比电缆体7的X轴方向和Y轴方向的外形尺寸大。
    • 4. 发明专利
    • Electronic apparatus
    • 电子设备
    • JP2013118296A
    • 2013-06-13
    • JP2011265297
    • 2011-12-02
    • Toshiba Corp株式会社東芝
    • ITO NAOTOOBA ISAOENDO NATSUMITAKANO TOSHIYA
    • H01L23/34H01L23/00
    • H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To provide means which allows a temperature sensor detecting heat generated from an electronic component to be disposed near the electronic component.SOLUTION: An electronic apparatus according to one embodiment includes a first substrate 36 where a first electronic component 101 having a relatively large heating value is placed and a first electrode 37 is provided. Further, the electronic apparatus includes a printed circuit board 20 which includes a first cutout part 33 provided having a shape exposing an upper surface of the first electronic component and a second cutout part 32 provided so as to face the first electrode and is provided on the first substrate so that the upper surface of the first electronic component is exposed from the first cutout part and the second cutout part faces the first electrode. Further, the electronic apparatus includes a second electronic component 103 provided on the printed circuit board and electrically connected with the first electrode through the second cutout part. Further, the electronic apparatus includes a temperature sensor 21 provided on the printed circuit board and detecting a temperature.
    • 要解决的问题:提供允许温度传感器检测从电子部件产生的热量设置在电子部件附近的装置。 解决方案:根据一个实施例的电子设备包括第一基板36,其中设置有具有相对大的加热值的第一电子部件101和设置有第一电极37。 此外,电子设备包括印刷电路板20,该印刷电路板20具有设置成露出第一电子部件的上表面的形状的第一切口部33和设置成与第一电极相对设置的第二切口部32, 第一基板,使得第一电子部件的上表面从第一切口部露出,第二切口部朝向第一电极。 此外,电子设备包括设置在印刷电路板上并通过第二切口部分与第一电极电连接的第二电子部件103。 此外,电子设备包括设置在印刷电路板上并检测温度的温度传感器21。 版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • Intermediate holder for vehicle hose
    • 车用软管中间座
    • JP2013057387A
    • 2013-03-28
    • JP2011197042
    • 2011-09-09
    • Mitsubishi Motors Corp三菱自動車工業株式会社Mitsubishi Automob Eng Co Ltd三菱自動車エンジニアリング株式会社Meiji Flow Systems Co Ltd株式会社 メイジフローシステム
    • MOCHIHARA MASAJIITO NAOTOISHII SUSUMUHOSHII SHINGOIWATA MINORU
    • F16L3/08F16B2/22
    • PROBLEM TO BE SOLVED: To provide an intermediate holder for a vehicle hose, which is prevented from being assembled to a fixing member while a hose is twisted, since the direction of fitting of the intermediate holder into the fixing member is restricted.SOLUTION: The intermediate holder for a vehicle hose is attached to the intermediate part of a hose and fixes the intermediate part to the fixing member. The intermediate holder for a vehicle hose is made of an elastic material and includes a hose holding part for holding the hose, and a member fitting part fitted into the fixing member. The member fitting part includes a member fitting groove on its outer circumferential surface. The member fitting groove is formed into a round bottom flask shape by folding both ends roughly 180°. A portion between both ends of the member fitting groove is used as a fitting direction instruction part. A projection part which projects more than the outer surface of the member fitting part is formed between both ends of the fitting groove, and the projection part may be used as a fitting direction instruction part.
    • 要解决的问题:为了提供一种用于车辆软管的中间保持器,其在软管扭曲时防止其组装到固定构件上,因为中间保持件到固定构件的装配方向受到限制。 解决方案:用于车辆软管的中间保持器附接到软管的中间部分并将中间部分固定到固定构件。 用于车辆软管的中间支架由弹性材料制成,并且包括用于保持软管的软管保持部件和装配到固定构件中的构件配合部件。 构件配合部包括在其外周面上的构件嵌合槽。 通过将两端折叠大约180°将构件装配槽形成为圆底烧瓶形状。 使用构件配合槽的两端部分作为装配方向指示部。 在配合槽的两端部之间形成有比构件嵌合部的外表面突出的突出部,并且突出部可以用作装配方向指示部。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Optical fiber cable
    • 光纤电缆
    • JP2012003062A
    • 2012-01-05
    • JP2010138325
    • 2010-06-17
    • Fujikura Ltd株式会社フジクラ
    • ONO MASASHISHIOBARA SATORUSAYAMA TADAYOSHITAKEDA DAIKIENDO KATSUYOSHIITO NAOTOOKADA NAOKI
    • G02B6/44
    • PROBLEM TO BE SOLVED: To provide an optical fiber cable that does not cause micro-bending on an optical fiber core wire even when the cable is clamped by a P-clamp.SOLUTION: An optical fiber cable 1 has a cable support part 13 through a connection part 9 on one side of a cable body 7 having an optical fiber core wire 5 arranged between a pair of tension members 3. When a longitudinal direction of the optical fiber cable 1 is defined as a Z-axis direction, an arrangement direction of the tension members 3, the optical fiber core wire 5 and the cable support part 13 is defined as a Y-axis direction, and a direction orthogonal to the Z-axis direction and the Y-axis direction is defined as an X-axis direction, grooves 25A and 25B having wider widths than a diameter of the optical fiber core wire 5 are provided long in the Z-axis direction at positions corresponding to the optical fiber core wire 5 on both sides of the cable body 7 in the X-axis direction. Distances from a shaft center of the optical fiber core wire 5 to bottom parts 29A and 29B of the grooves 25A and 25B are longer than a radius of the optical fiber core wire 5 and shorter than a radius of a supporting line 11 provided on the cable support part 13.
    • 要解决的问题:即使当电缆被P型夹具夹紧时,也提供一种不会在光纤芯线上引起微弯曲的光纤电缆。 解决方案:光纤电缆1具有通过连接部分9的电缆支撑部分13,电缆主体7的一侧具有设置在一对张力部件3之间的光纤芯线5.当纵向方向 将光纤电缆1定义为Z轴方向,张力构件3,光纤芯线5和电缆支撑部13的排列方向被定义为Y轴方向,并且与 Z轴方向和Y轴方向被定义为X轴方向,宽度比光纤芯线5的直径宽的槽25A和25B在Z轴方向上设置在与 光纤芯线5在电缆主体7的X轴方向两侧。 从光纤芯线5的轴心到凹槽25A和25B的底部29A和29B的距离比光纤芯线5的半径长,并且短于设置在电缆上的支撑线11的半径 支持第13部分。版权所有(C)2012年,JPO&INPIT
    • 8. 发明专利
    • Suspension insulator cover
    • 悬挂绝缘子盖
    • JP2011210498A
    • 2011-10-20
    • JP2010076435
    • 2010-03-29
    • Yotsugi Co Ltdヨツギ株式会社
    • ITO NAOTONAKANO TOMOMASAIKEGAWA KATSUMI
    • H01B17/40B60M1/16H01B17/02
    • PROBLEM TO BE SOLVED: To provide a suspension insulator cover with superior drainage properties and capable of preventing deterioration of electric insulation due to infiltration of rain water.SOLUTION: To each cover body 20a, 20b of the suspension insulator cover 1 formed by coupling the pair of cover bodies 20a, 20b, insulator-housing parts 21a, 21b, guide parts 22a, 22b formed in continuation from the insulator-housing parts 21a, 21b, and overhead wire housing parts 23a, 23b; 24a, 24b in continuation from the insulator-housing parts 21a, 21b and the guide parts 22a, 22b are formed. The guide parts 22a, 22b are formed in a state tapered toward a site arranged at the lowermost part of the guide parts 22a, 22b.
    • 要解决的问题:提供具有优异的排水性能并能够防止由于雨水渗入而引起的电绝缘体劣化的悬挂绝缘子盖。解决方案:通过将该对形成的悬挂绝缘体盖1的每个盖体20a,20b, 覆盖体20a,20b,绝缘体外壳部分21a,21b,从绝缘体外壳部分21a,21b和架空线壳体部分23a,23b连续形成的引导部分22a,22b; 形成从绝缘体外壳部分21a,21b和引导部分22a,22b延续的24a,24b。 引导部22a,22b形成为朝向布置在引导部22a,22b的最下部的部位变细的状态。
    • 9. 发明专利
    • Core shell type magnetic material, method of manufacturing core shell type magnetic material, device apparatus, and antenna assembly
    • 核心型磁性材料,制造核心型磁性材料的方法,装置装置和天线装配
    • JP2010062485A
    • 2010-03-18
    • JP2008229295
    • 2008-09-08
    • Toshiba Corp株式会社東芝
    • SUETSUNA TOMOHIROHARADA KOICHIYONEZU MAKISUENAGA SEIICHIITO NAOTOTSUJIMURA TERUHIRO
    • H01F1/33B22F1/00B22F1/02C22C38/00H01Q1/52H01Q17/00
    • H01F1/33H01Q9/16H01Q9/42Y10T428/12465
    • PROBLEM TO BE SOLVED: To provide a core shell type magnetic material which has superior characteristics in a high frequency band, especially, in a GHz band. SOLUTION: The core shell type magnetic material includes: core shell type particles each including a magnetic metal particle and an oxide coating layer, the magnetic metal particle containing a magnetic metal selected from a group composed of Fe, Co and Ni, a nonmagnetic metal selected from Mg, Al, Si, Ca, Zr, Ti, Hf, Zn, Mn, a rare earth element, Ba, and Sr, and an element selected between carbon and nitrogen, wherein the oxide coating layer is made of oxide containing at least the one nonmagnetic metal as one of constituents of the magnetic metal particles; and oxide particles partially present among the magnetic metal particles, and containing a nonmagnetic metal selected from Mg, Al, Si, Ca, Zr, Ti, Hf, Zn, Mn, a rare earth element, Ba, and Sr, wherein the nonmagnetic metal/magnetic metal (atomic ratio) contains larger oxide particles than the nonmagnetic metal/magnetic metal (atomic ratio) in the oxide coating layer. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供在高频带,特别是GHz频带中具有优异特性的核壳型磁性材料。 解决方案:核心壳型磁性材料包括:包含磁性金属颗粒和氧化物涂层的核心壳型颗粒,含有选自Fe,Co和Ni的磁性金属的磁性金属颗粒, 选自Mg,Al,Si,Ca,Zr,Ti,Hf,Zn,Mn,稀土元素,Ba和Sr中的非磁性金属和选自碳和氮之间的元素,其中氧化物涂层由氧化物 含有至少一种非磁性金属作为磁性金属颗粒的组分之一; 并且含有选自Mg,Al,Si,Ca,Zr,Ti,Hf,Zn,Mn,稀土元素,Ba和Sr中的非磁性金属的部分存在于磁性金属粒子中的氧化物粒子,其中非磁性金属 /磁性金属(原子比)在氧化物被覆层中含有比非磁性金属/磁性金属(原子比)大的氧化物粒子。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • Take-up device for linear item
    • 线性项目的提升设备
    • JP2009208968A
    • 2009-09-17
    • JP2009150211
    • 2009-06-24
    • Asahi Kasei Engineering Kk旭化成エンジニアリング株式会社
    • ITO NAOTOKITADA TOSHIO
    • B65H67/00B65H59/36
    • PROBLEM TO BE SOLVED: To provide a take-up device for a linear item, with a minimizable transfer length of the linear item in changing take-up frames for taking up the linear item while continuously feeding the linear item.
      SOLUTION: The device is for taking up at least one continuous linear item from a plurality of rotating shafts disposed in parallel along the same axis radially to a circular or polygonal take-up frame having a plurality of hands in a specific winding number. It is at least provided with the plurality of take-up frames provided with a drive, which are rotatable separately, and also rotatable synchronously with the other take-up frame, a traverse mechanism provided with a drive means, of which traverse part is displaceable at least to the take-up direction, the parallel direction of the take-up frames, and the vertical direction of the take-up frames, and a transfer yarn cutting mechanism laterally provided between the take-up frames to cut the linear item while rotating.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于线性项目的卷取装置,其中线性项目的最小化传送长度在改变用于卷取线性项目的卷取框中,同时连续地馈送线性项目。 解决方案:该装置用于从沿相同轴线平行设置的多个旋转轴中的至少一个连续线性项目径向地卷绕到具有特定绕组数量的多只手的圆形或多边形收卷架 。 至少设置有设置有能够单独旋转的驱动器的多个卷取框架,并且还可以与另一个卷取框架同步旋转;设置有驱动装置的横动机构,其横向部分可移动 至少卷取方向,卷取框架的平行方向和卷取框架的垂直方向,以及横向设置在卷取框架之间的转印纱线切割机构,以切割线性物品,同时 旋转。 版权所有(C)2009,JPO&INPIT