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    • 22. 发明授权
    • High-speed fluidic device
    • 高速流体装置
    • US06994531B2
    • 2006-02-07
    • US10420914
    • 2003-04-23
    • Satoshi DairokunoTaikou NawamotoHiroyuki ItohHideo OkanoTakashi Baba
    • Satoshi DairokunoTaikou NawamotoHiroyuki ItohHideo OkanoTakashi Baba
    • F04B17/03F02B33/40F16H13/04F16H13/10
    • F04D13/028F04D13/021F04D13/06
    • A high-speed fluidic device has a friction roller type speed-increasing mechanism, an electric motor, and a high-speed fluidic machine, wherein: the friction roller type speed-increasing mechanism includes a housing, a low-speed side member having an outer ring provided at one end portion thereof, a high-speed side shaft rotatably supported by the housing so as to be eccentric to the low-speed side member and the outer ring, at least one guide roller rotatably supported between the outer ring and the high-speed side shaft, and at least one movable roller rotatably supported between the outer ring and the high-speed side shaft; the electric motor drives the friction roller type speed-increasing mechanism; and the high-speed fluidic machine is connected to the high-speed side shaft so as to be driven by the high-speed side shaft.
    • 高速流体装置具有摩擦辊式增速机构,电动机和高速流体机械,其中:摩擦辊式增速机构包括壳体,低速侧部件,具有 外环设置在其一端部,高速侧轴由所述壳体可旋转地支撑,以偏心所述低速侧构件和所述外圈;至少一个引导辊,其可旋转地支撑在所述外圈和所述外圈之间, 高速侧轴和可旋转地支撑在外圈和高速侧轴之间的至少一个可动辊; 电动机驱动摩擦辊式增速机构; 高速流体机与高速侧轴连接,由高速侧轴驱动。
    • 23. 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。
    • 26. 发明授权
    • Concentrated constant irreciprocal device
    • 集中常数,不可逆设备
    • US06696901B1
    • 2004-02-24
    • US09700916
    • 2001-02-02
    • Shigeru TakedaYasushi KishimotoHiroyuki ItohKouji IchikawaShuichi Watanabe
    • Shigeru TakedaYasushi KishimotoHiroyuki ItohKouji IchikawaShuichi Watanabe
    • H01P136
    • H01P1/383H01P1/387
    • A concentrated constant, non-reciprocal device comprising a permanent magnet for applying a DC magnetic field to a ferrimagnetic body, an assembly in which at least a part of a plurality of center conductors one end of which serves as a common terminal and the other of which serves as a first input/output terminal is wound on or embedded in the ferrimagnetic body, a plurality of second input/output terminals, a plurality of impedance converting circuits connected between the second input/output terminals and the first input/output terminals, respectively, and a plurality of load capacitors connected between the first input/output terminals and the common terminals, respectively. The input impedance Zi of the corresponding first input/output terminal at the operating center frequency and an external impedance Zo connected with the corresponding second input/output terminal satisfy 0.05≦Zi/Zo≦0.9. As a result, it is possible to provide a small concentrated constant circulator/isolator of a wide band width having excellent electric characteristics.
    • 一种集中恒定的不可逆装置,包括用于向铁磁体施加DC磁场的永磁体,其中多个中心导体的至少一部分的一端用作公共端子,另一端 作为第一输入/输出端子被卷绕或嵌入在铁氧体中,多个第二输入/输出端子,连接在第二输入/输出端子和第一输入/输出端子之间的多个阻抗转换电路, 以及分别连接在第一输入/输出端子和公共端子之间的多个负载电容器。 操作中心频率处的对应的第一输入/输出端子的输入阻抗Zi和与相应的第二输入/输出端子连接的外部阻抗Zo满足0.05≤Zi/ Zo <= 0.9。 结果,可以提供具有优异电特性的宽带宽的小型集中恒定循环器/隔离器。
    • 27. 发明授权
    • Method of manufacturing thin-film magnetic head
    • 制造薄膜磁头的方法
    • US06581271B2
    • 2003-06-24
    • US09865719
    • 2001-05-29
    • Yoshitaka SasakiHiroyuki Itoh
    • Yoshitaka SasakiHiroyuki Itoh
    • G11B5127
    • G11B5/3173G11B5/3103G11B5/3116G11B5/3163G11B5/3166G11B5/3967Y10S428/90Y10T29/49004Y10T29/49021Y10T29/49032Y10T29/49036Y10T29/49037Y10T29/49041Y10T29/49046Y10T29/49789Y10T29/49792Y10T29/49794Y10T29/49798Y10T428/11Y10T428/1171Y10T428/24355
    • A manufacturing method is provided for manufacturing thin film magnetic heads through the use of a thin-film magnetic head material, the head material including: a plurality of rows of head-to-be sections to be thin-film magnetic heads; an inter-row cutting section provided to be a position at which adjacent ones of the rows are to be separated; and an intra-row cutting section provided to be a position at which adjacent ones of the head-to-be sections in each of the rows are to be separated. The method includes the steps of: fabricating the head material including: a detection element for detecting an amount of processing on the head material, an electrode formed in the inter-row cutting section for electrically connecting the detection element to an external device, and a conductor for electrically connecting the electrode to the detection element; performing a specific processing on the head material while monitoring an output signal of the detection element; forming a head aggregate including one of the rows of the head-to-be sections by separating the head material having gone through the processing at the inter-row cutting section; and forming the thin-film magnetic heads by separating the head aggregate at the intra-row cutting section.
    • 提供一种通过使用薄膜磁头材料来制造薄膜磁头的制造方法,所述头材料包括:多列要成为薄膜磁头的头部; 设置为相邻行中要分离的位置的行间切割部; 以及设置成为要分离每行中的相邻的待部分的位置的行内切割部。 该方法包括以下步骤:制造头部材料包括:用于检测头部材料上的处理量的检测元件,形成在用于将检测元件电连接到外部装置的行间切割部分中的电极,以及 用于将电极电连接到检测元件的导体; 在监视检测元件的输出信号的同时对头材料执行特定处理; 通过分离经过所述行间切割部分处理的所述头部材料,形成包括所述头部至所述部分中的一排的头部骨料; 以及通过在行内切割部分分离头骨料来形成薄膜磁头。