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    • 43. 发明授权
    • Method of making magnetic head having narrow pole tip and fine pitch coil
    • 制造具有窄极尖和细间距线圈的磁头的方法
    • US06987646B2
    • 2006-01-17
    • US10632729
    • 2003-07-31
    • Richard HsiaoHugo Alberto Emilio Santini
    • Richard HsiaoHugo Alberto Emilio Santini
    • G11B5/127
    • G11B5/3163G11B5/012G11B5/17G11B5/3116G11B5/313Y10T29/49046
    • Following the deposition of an insulation layer, a patterned P2 pole tip seed layer is deposited. Significantly, the pole tip seed layer is not deposited beneath the induction coil area of the magnetic head. A dielectric layer is next deposited and a patterned RIE etching mask that includes both a P2 pole tip trench opening and an induction coil trench opening is fabricated upon the dielectric layer. Thereafter, in a single RIE etching step, the P2 pole tip trench is etched through the dielectric material down to the seed layer, and the induction coil trench is etched through the dielectric material down to the insulation layer. The P2 pole tip is first electroplated up into its trench, an induction coil seed layer is next deposited, and the induction coil is then electroplated up into the induction coil trench.
    • 在沉积绝缘层之后,沉积图案化的P2极端子种子层。 重要的是,极尖种子层没有沉积在磁头的感应线圈区域之下。 接下来沉积电介质层,并且在电介质层上制造包括P2极尖沟槽开口和感应线圈沟槽开口的图案化RIE蚀刻掩模。 此后,在单个RIE蚀刻步骤中,通过电介质材料将P2极尖沟槽蚀刻到种子层,并且感应线圈沟槽通过电介质材料被蚀刻到绝缘层。 首先将P2极端电镀到其沟槽中,然后沉积感应线圈种子层,然后将感应线圈电镀到感应线圈沟槽中。
    • 44. 发明授权
    • High data rate write head
    • 高数据率写头
    • US06952326B2
    • 2005-10-04
    • US10611627
    • 2003-06-30
    • Yimin HsuHugo Alberto Emilio SantiniNeil SmithMason Lamar Williams
    • Yimin HsuHugo Alberto Emilio SantiniNeil SmithMason Lamar Williams
    • G11B5/31G11B5/127
    • G11B5/3136G11B5/3116G11B5/313Y10T29/49044
    • A magnetic head assembly includes first and second pole pieces and first and second coil layers wherein the second pole piece has a ferromagnetic pole tip which forms a portion of an air bearing surface and defines a track width of a write head. A write gap layer is located between the first pole piece and the pole tip. A dielectric first insulation layer interfaces first and second side surfaces of the pole tip and is located between the first and second coil layers. The second pole piece has a ferromagnetic second pole piece structure which is magnetically connected to each of the pole tip and the first pole piece and extends across the second coil layer. In a first embodiment the second pole piece structure is a single layer and in a second embodiment the second pole piece structure has front and back components with a flat laminated second pole piece yoke layer located therebetween.
    • 磁头组件包括第一和第二极片以及第一和第二线圈层,其中第二极靴具有形成空气轴承表面的一部分并限定写入头的轨道宽度的铁磁极尖端。 写间隙层位于第一极片和极尖之间。 电介质第一绝缘层与极尖的第一和第二侧表面接合并位于第一和第二线圈层之间。 第二极片具有铁磁第二极片结构,其磁极连接到极尖和第一极靴中的每一个并且延伸穿过第二线圈层。 在第一实施例中,第二极靴结构是单层,在第二实施例中,第二极靴结构具有前后组件,其间具有平坦的层叠的第二极片轭层。
    • 50. 发明授权
    • Method of making a high resolution lead to shield short-resistant read
head
    • 制造高分辨率的方法导致屏蔽短路读头
    • US6162582A
    • 2000-12-19
    • US344904
    • 1999-06-25
    • Richard HsiaoTsann LinHugo Alberto Emilio Santini
    • Richard HsiaoTsann LinHugo Alberto Emilio Santini
    • G11B5/012G11B5/31G11B5/39G11B5/40G03F7/00
    • B82Y25/00B82Y10/00G11B5/012G11B5/313G11B5/3133G11B5/3163G11B5/3903G11B5/3967G11B5/40G11B2005/3996
    • An MR read head has first and second lead layers protected by first, second and third insulation layers in addition to the first and second insulative gap layers substantially all the way from the side edges of an MR sensor to terminals. The first and second insulation layers do not extend outside of the first and second lead layer sites so that greater heat dissipation can be realized from the MR sensor. Each lead layer comprises first and second lead layer films. Where these films overlap for electrical connection their top and bottom surfaces are protected by the first and second insulation layers and their edges are protected by the third insulation layer. Where the first lead layer film extends from the second lead layer film toward the respective terminal its bottom surface is protected by the first insulation layer and its top surface and its side edges are protected by the third insulation layer. Only three masks are required for fabricating or constructing these components. The first liftoff mask is employed for defining the first insulation layer and the first lead layer film. The second liftoff mask is employed for depositing the second lead layer film on the first lead layer film with an end of the second lead layer film for defining the track width of the MR sensor and making a contiguous junction with a respective side edge of the MR sensor and then depositing a second insulation layer on the second lead layer film. A third liftoff mask is employed for masking the MR sensor site and the second lead layer film of the first and second lead layers so that the height of the MR sensor can be defined and the third insulation layer deposited.
    • 除了基本上从MR传感器的侧边缘到端子的所有第一和第二绝缘间隙层之外,MR读取头具有由第一,第二和第三绝缘层保护的第一和第二引线层。 第一绝缘层和第二绝缘层不延伸到第一和第二引线层位置的外部,从而可以从MR传感器实现更大的散热。 每个引线层包括第一和第二引线层膜。 当这些膜重叠用于电连接时,其顶表面和底表面被第一和第二绝缘层保护,并且它们的边缘被第三绝缘层保护。 在第一引线层膜从第二引线层膜朝向各个端子延伸的情况下,其底表面被第一绝缘层及其顶表面保护,并且其侧边缘被第三绝缘层保护。 制造或构造这些部件只需要三个掩模。 采用第一剥离掩模来限定第一绝缘层和第一引线层膜。 第二剥离掩模用于在第一引线层膜上沉积第二引线层膜,第二引线层膜用于限定MR传感器的磁道宽度,并与MR的相应侧边缘形成连续的连接 传感器,然后在第二引线层膜上沉积第二绝缘层。 采用第三剥离掩模掩蔽第一和第二引线层的MR传感器位置和第二引线层膜,从而可以限定MR传感器的高度,并沉积第三绝缘层。