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    • 1. 发明专利
    • Trough gutter cover for snow drain and construction method of the cover
    • 用于雪橇漏水和覆盖物的施工方法
    • JP2006177047A
    • 2006-07-06
    • JP2004371379
    • 2004-12-22
    • Kazuo Ishizaki一男 石崎
    • ISHIZAKI KAZUO
    • E04D13/064
    • PROBLEM TO BE SOLVED: To provide a trough gutter cover for snow drain easily mounted, having sufficient strength, prevented from slipping down, and capable of smoothly draining melted snow water and rainwater on a roof to the trough gutter for snow drain.
      SOLUTION: The trough gutter cover 1 for snow drain for covering an upper end opening 3 of the trough gutter 2 for snow drain, is provided with a cover body 5 formed of a flexible plate material formed in curved cross section with a plurality of water flow holes 4 bored over the whole surface of the plate material, and left and right mounting members 8, 9 locking both side parts of the cover body 5 and mountable to the trough gutter 2 for snow drain and to left and right roof end parts 6, 7 facing the trough gutter 2 for snow drain. The left and right mounting members 8, 9 are mounted in pressure contact with the trough gutter 2 for snow drain by the resilience of the cover body 5.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了容易安装用于放雪的槽沟槽盖,具有足够的强度,防止滑倒​​,并且能够将屋顶上的融化的雪水和雨水平滑地排放到沟槽的排水沟槽。 解决方案:用于覆盖用于排雪的槽槽2的上端开口3的用于排雪的槽槽盖1设置有由弯曲横截面形成有多个的柔性板材形成的盖体5, 在板材的整个表面上钻出的水流孔4,以及左右的安装构件8,9,其锁定盖体5的两侧部分,并且可安装到谷槽2用于积雪和左右屋顶端 部分6,7面向槽沟2用于排雪。 左右的安装构件8,9通过盖体5的弹性与槽槽2压力接触,用于降雪。版权所有(C)2006,JPO&NCIPI
    • 4. 发明申请
    • Method of manufacturing magnetic head for perpendicular magnetic recording
    • 用于垂直磁记录的磁头制造方法
    • US20090294402A1
    • 2009-12-03
    • US12153987
    • 2008-05-28
    • Hironori ArakiYoshitaka SasakiHiroyuki ItohShigeki TanemuraKazuo Ishizaki
    • Hironori ArakiYoshitaka SasakiHiroyuki ItohShigeki TanemuraKazuo Ishizaki
    • B44C1/22
    • G11B5/3116G11B5/1278G11B5/3163
    • A magnetic head includes: a pole layer including a track width defining portion and a wide portion; and an encasing layer disposed on a bottom forming layer and having a groove that accommodates the pole layer. The groove includes a first portion for accommodating at least part of the track width defining portion, and a second portion for accommodating at least part of the wide portion. A manufacturing method for the magnetic head includes: the step of etching a nonmagnetic layer that will become the encasing layer later, such that an initial groove including the first portion is formed in the nonmagnetic layer; the step of forming an initial groove mask covering the first portion; and a second etching step for etching the nonmagnetic layer so as to complete the groove. When the second etching step starts, a portion of the top surface of the bottom forming layer located in a region in which the second portion is to be formed is covered with the nonmagnetic layer or the initial groove mask.
    • 磁头包括:包括轨道宽度限定部分和宽部分的极层; 以及设置在底部形成层上并具有容纳极层的槽的封装层。 凹槽包括用于容纳轨道宽度限定部分的至少一部分的第一部分和用于容纳至少部分宽部分的第二部分。 磁头的制造方法包括以下步骤:在非磁性层中形成包含第一部分的初始槽,从而蚀刻将成为封装层的非磁性层; 形成覆盖所述第一部分的初始槽掩模的步骤; 以及用于蚀刻非磁性层以完成凹槽的第二蚀刻步骤。 当第二蚀刻步骤开始时,位于要形成第二部分的区域中的底部形成层的顶表面的一部分被非磁性层或初始凹槽掩模覆盖。
    • 7. 发明授权
    • Magnetic head and method of manufacturing same, and magnetic head substructure
    • 磁头及其制造方法及磁头子结构
    • US07336442B2
    • 2008-02-26
    • US11207891
    • 2005-08-22
    • Yoshitaka SasakiHiroyuki ItohHironori ArakiKazuo Ishizaki
    • Yoshitaka SasakiHiroyuki ItohHironori ArakiKazuo Ishizaki
    • G11B5/147
    • G11B5/3166G11B5/3163G11B5/3169G11B5/3173
    • A method of manufacturing magnetic heads comprises the steps of: fabricating a magnetic head substructure by forming components of a plurality of magnetic heads on a single substrate so that a plurality of rows of pre-head portions that will be the respective magnetic heads later are aligned in the substructure; and fabricating the magnetic heads by separating the pre-head portions from one another through cutting the substructure. Indicator sections are formed in the substructure. The indicator sections include first indicators and second indicators. Widths of the first and second indicators are equal in an imaginary surface indicating a target location of the medium facing surfaces. One of the widths of the first and second indicators decreases while the other increases with shifts in position along the direction orthogonal to the medium facing surfaces.
    • 一种制造磁头的方法包括以下步骤:通过在单个基板上形成多个磁头的部件来制造磁头子结构,使得将成为相应磁头的多排前磁头部分排列在一起 在子结构中; 以及通过切割子结构将前头部彼此分开来制造磁头。 指示器部分形成在子结构中。 指标部分包括第一指标和第二指标。 第一和第二指示器的宽度在虚拟表面中相等,表示介质面对表面的目标位置。 第一和第二指示器的宽度之一减小,而另一个指示器沿着与面向介质的表面正交的方向上的位置偏移而增加。
    • 9. 发明申请
    • Thin film magnetic head and manufacturing method thereof
    • 薄膜磁头及其制造方法
    • US20050128639A1
    • 2005-06-16
    • US10682732
    • 2003-10-10
    • Yoshitaka SasakiTakehiro KamigawaHiroyuki ItohKazuo IshizakiShigeki TanemuraHironori Araki
    • Yoshitaka SasakiTakehiro KamigawaHiroyuki ItohKazuo IshizakiShigeki TanemuraHironori Araki
    • G11B5/147G11B5/39
    • G11B5/3903
    • The invention is directed to improvement of a write element of a thin film magnetic head. In said write element, a first coil and a second coil are provided on a first insulating film formed on one surface of a first magnetic film and surround in a spiral form a back gap portion. A second yoke portion in the upper position comprises a wide portion, a narrow portion and a sloping flare portion. The wide portion has a flat surface and is connected to the first magnetic film by a back gap portion at the rear of the medium-facing surface. The narrow portion forms the second pole portion and the surface of the narrow portion being at a lower position than the surface of the wide portion. The sloping flare portion extends from the narrow portion to the wide portion, gradually increasing in width and its surface sloping upward away from the surface of the narrow portion to the surface of the wide portion.
    • 本发明旨在改进薄膜磁头的写入元件。 在所述写入元件中,第一线圈和第二线圈设置在形成在第一磁性膜的一个表面上的第一绝缘膜上,并以螺旋形式包围在后部间隙部分中。 在上部位置的第二轭部包括宽部分,窄部分和倾斜的张开部分。 宽部分具有平坦的表面,并且通过位于介质表面的后部的后间隙部分连接到第一磁性膜。 窄部分形成第二极部分,并且窄部分的表面处于比宽部分的表面更低的位置。 倾斜的喇叭口部分从窄部分延伸到宽部分,宽度逐渐增加,并且其表面向上倾斜远离窄部分的表面到宽部分的表面。