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    • 63. 发明申请
    • PHYSICAL QUANTITY SENSOR
    • 物理量传感器
    • US20100281980A1
    • 2010-11-11
    • US12841748
    • 2010-07-22
    • Hisayuki YazawaKiyoshi SatoKatsuya KikuiriToru TakahashiHisanobu Ohkawa
    • Hisayuki YazawaKiyoshi SatoKatsuya KikuiriToru TakahashiHisanobu Ohkawa
    • G01P15/125
    • G01P15/125B81B3/0078B81B2201/0235B81B2203/053G01P15/0802G01P2015/0831
    • A physical quantity sensor includes a support substrate, anchor portions fixed to a top surface of the support substrate, a movable portion positioned above the support substrate and supported by the anchor portions with support portions provided therebetween such that the movable portion is movable in a height direction, and detection portions for detecting a displacement of the movable portion. The support portions include beam portions provided between the movable portion and the anchor portions such that spring portions are provided between the beam portions and each of the movable portion and the anchor portions, the beam portions having a rigidity higher than a rigidity of the spring portions. The movable portion translates in the height direction owing to twisting of the spring portions and displacements in the height direction of distal ends of the beam portions, the movable portion being supported at the distal end.
    • 物理量传感器包括支撑基板,固定到支撑基板的顶表面的锚定部分,位于支撑基板上方并由锚定部分支撑的可移动部分,其中支撑部分设置在支撑基板之间,使得可移动部分能够在高度 方向和检测部分,用于检测可动部分的位移。 支撑部分包括设置在可动部分和锚固部分之间的梁部分,使得弹簧部分设置在梁部分与可动部分和锚固部分中的每一个之间,梁部分的刚度高于弹簧部分的刚度 。 可移动部分由于弹簧部分的扭转和梁部分的远端的高度方向上的位移而在高度方向上平移,可移动部分被支撑在远端。
    • 64. 发明授权
    • Magnetic recording head having a switching layer which may be rendered non-magnetic by heating
    • 磁记录头具有可以通过加热而变得非磁性的开关层
    • US07489473B2
    • 2009-02-10
    • US11338005
    • 2006-01-24
    • Hisayuki Yazawa
    • Hisayuki Yazawa
    • G11B5/17G11B5/187
    • G11B5/3146G11B5/1278G11B5/3116
    • A magnetic head includes a first magnetic layer in which a face, opposed to a recording medium, having a size equal to a track width in a track width direction; a second magnetic layer in which a face, opposed to the recording medium, having a size greater than the track width in the track width direction, the first and second magnetic layers being spaced from each other in an element thickness direction, the first and second magnetic layers being connected to each other at a region located in a height direction; and a coil layer, located far from the opposed faces, for applying recording magnetic fields to the first and second magnetic layers such that magnetic data is recorded on the recording medium with a perpendicular magnetic field concentrated on the first magnetic layer.
    • 磁头包括第一磁性层,其中与记录介质相对的具有与轨道宽度方向上的轨道宽度相等的尺寸的面; 第二磁性层,其中与所述记录介质相对的具有大于所述磁道宽度方向上的磁道宽度的面,所述第一和第二磁性层在元件厚度方向上彼此间隔开,所述第一和第二磁性层 磁性层在位于高度方向的区域彼此连接; 以及位于远离相对面的线圈层,用于向第一和第二磁性层施加记录磁场,使得磁性数据以集中在第一磁性层上的垂直磁场记录在记录介质上。
    • 65. 发明申请
    • THIN FILM MAGNETIC HEAD AND METHOD OF MANUFACTURING THE SAME
    • 薄膜磁头及其制造方法
    • US20080266720A1
    • 2008-10-30
    • US11872201
    • 2007-10-15
    • Hisayuki YazawaMitsuo Kawasaki
    • Hisayuki YazawaMitsuo Kawasaki
    • G11B5/33
    • G11B5/3163G11B5/1278
    • A thin film magnetic head is disclosed having a non-magnetic layer that is formed of a NiPRe (nickel-phosphorus-rhenium) alloy, which makes it possible to optimize the composition ratios of elements Ni, P, and Re, to obtain the non-magnetic layer having a smooth surface, and to prevent concave portions from being formed in both side surfaces of the non-magnetic layer during a milling process, thereby improving recording characteristics.The composition ratio of a NiPRe alloy forming the non-magnetic layer is set within the range surrounded by boundary lines A to D in a ternary diagram, which makes it possible to form a non-magnetic layer having a smooth surface and uniformly form the magnetic layer on the non-magnetic layer. In addition, since the NiPRe alloy having the composition ratio has a low milling rate, it is possible to prevent concave portions from being formed in both side surfaces of the magnetic layer that is formed on or underneath the non-magnetic layer. As a result, it is possible to accurately regulate a recording track width to a narrow width and thus improve recording characteristics.
    • 公开了一种薄膜磁头,其具有由NiPRe(镍 - 铼 - 铼)合金形成的非磁性层,这使得可以优化元素Ni,P和Re的组成比,以获得非磁性层, - 具有光滑表面的磁性层,并且在研磨过程中防止在非磁性层的两个侧表面中形成凹部,从而改善记录特性。 形成非磁性层的NiPRe合金的组成比设定在由边界线A至D包围的范围内,这使得可以形成具有光滑表面并均匀形成磁性的非磁性层 层在非磁性层上。 此外,由于具有组成比的NiPRe合金具有低的研磨速度,因此可以防止在形成在非磁性层上或下面的磁性层的两个侧表面中形成凹部。 结果,可以将记录磁道宽度精确地调节到窄的宽度,从而提高记录特性。