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    • 2. 发明授权
    • Method of manufacturing a thin-film magnetic head
    • 制造薄膜磁头的方法
    • US5483735A
    • 1996-01-16
    • US216573
    • 1994-03-22
    • Lambertus PostmaJan HaismaJacobus J. M. RuigrokGerardus H. J. Somers
    • Lambertus PostmaJan HaismaJacobus J. M. RuigrokGerardus H. J. Somers
    • G11B5/31G11B5/39G11B5/127
    • G11B5/3916G11B5/3919G11B5/3925Y10T29/49048
    • Method of manufacturing a magnetoresistive magnetic head in which a first insulation layer (5) of a non-magnetic material is formed on a support face (3a), on which insulation layer a soft-magnetic layer having an upper face remote from the first insulation layer is formed by deposition of a soft-magnetic material. Subsequently a layer portion is removed for forming the flux-guiding elements (17a, 17b) and an aperture extending between said elements, and non-magnetic material for forming a second insulation layer (18) having an upper face remote from the soft-magnetic layer is deposited on the soft-magnetic layer and in the aperture formed therein, which second insulation layer has such a thickness that, viewed in a direction transverse to the support face, the smallest distance between the support face and the upper face of the second insulation layer is larger than the largest distance between the support face and the upper face of the soft-magnetic layer. Subsequently, a mechanochemical polishing treatment is performed as from the upper face of the second insulation layer for forming a main surface (19) at which magnetoresistive material is subsequently deposited for forming a magnetoresistive element (23).
    • 一种制造磁阻磁头的方法,其中在支撑面(3a)上形成非磁性材料的第一绝缘层(5),绝缘层上具有远离第一绝缘体的上表面的软磁层 层通过沉积软磁材料形成。 随后,去除层部分以形成磁通引导元件(17a,17b)和在所述元件之间延伸的孔,以及用于形成具有远离软磁体的上表面的第二绝缘层(18)的非磁性材料 层沉积在软磁层上和形成在其中的孔中,该第二绝缘层具有从横向于支撑面的方向观察的厚度,即在支撑面与第二绝缘层的上表面之间的最小距离 绝缘层大于软磁层的支撑面和上表面之间的最大距离。 随后,从第二绝缘层的上表面进行机械化学抛光处理,以形成随后沉积磁阻材料以形成磁阻元件(23)的主表面(19)。
    • 3. 发明授权
    • Multi-channel magnetic head with magnetoresistive elements
    • 具有磁阻元件的多通道磁头
    • US06747854B1
    • 2004-06-08
    • US09006014
    • 1998-01-12
    • Jacobus J. M. RuigrokGerardus H. J. Somers
    • Jacobus J. M. RuigrokGerardus H. J. Somers
    • G11B5127
    • B82Y25/00B82Y10/00G11B5/11G11B5/3903G11B5/3925G11B5/3945G11B5/3951G11B5/40G11B2005/3996
    • Multi-channel magnetic head having a high channel density, provided with a head face (1) which extends in a first direction (I) in which a record carrier is relatively movable with respect to said magnetic head, and in a second direction (II) transverse to the first direction. The magnetic head has a structure of layers which, viewed in the first direction, are situated one on top of the other and extend substantially in the second direction and in a third direction (III) transverse to the first and the second direction. Viewed in the second direction, adjacent magnetoresistive sensors (S1, S2, S3) are distinguishable in the structure, each comprising a magnetoresistive measuring element (5), a first magnetic element (7) and a second magnetic element (9). The magnetic elements of adjacent sensors are electrically conducting and have electric connection faces (70a, 9a), while the measuring element in each sensor is electrically arranged in series between the first and the second magnetic element for passing a measuring current (i) through the measuring element substantially in the third direction.
    • 具有高通道密度的多通道磁头,其具有在第一方向(I)上延伸的头部面(1),其中记录载体相对于所述磁头相对移动,并且在第二方向(II )横向于第一方向。 磁头具有从第一方向观察的层的结构,其一个位于另一个的顶部上,并且基本上沿第二方向延伸,并且在横向于第一和第二方向的第三方向(III)上延伸。 在第二方向上观察,相邻的磁阻传感器(S1,S2,S3)在结构上是可区分的,每个包括磁阻测量元件(5),第一磁性元件(7)和第二磁性元件(9)。 相邻传感器的磁性元件是导电的并且具有电连接面(70a,9a),而每个传感器中的测量元件串联地电排列在第一和第二磁性元件之间,用于使测量电流(i)通过 测量元件基本上在第三方向上。