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    • 6. 发明授权
    • Double-nosed inductive transducer with reduced off-track writing
    • 双向电感式换能器,减少了离轨写入
    • US07113366B1
    • 2006-09-26
    • US10290880
    • 2002-11-07
    • Yugang WangKroum StoevFrancis LiuYingjian Chen
    • Yugang WangKroum StoevFrancis LiuYingjian Chen
    • G11B5/187
    • G11B5/3116
    • A thin film electromagnetic head has an inductive transducer with a double-nosed ferromagnetic trailing pole layer. The trailing pole layer has a trailing pole tip disposed adjacent to a media-facing surface, a trailing pole yoke disposed distal to the media-facing surface, and a trailing pole nose disposed between the trailing pole tip and the trailing pole yoke. The media-facing surface extends as a substantially flat surface in all directions from the trailing pole tip. The length of the trailing pole nose may be at least twice as long as the trailing pole tip length. The width of the trailing pole nose can be 10 to 30 times as wide as the trailing pole tip width. An inductive transducer having a double-nosed trailing pole layer provides a higher ratio of on-track to off-track write fields, thereby improving the density with which data can be written to the recording media. Such a double-nosed trailing pole layer can be used in transducers for either longitudinal or perpendicular magnetic recording.
    • 薄膜电磁头具有具有双尖铁磁后极层的感应换能器。 后极层具有邻近面向媒体的表面设置的尾极尖端,设置在面向介质的表面的远侧的后极轭,以及设置在后极端和后极轭之间的后极端。 面向媒体的表面作为从所述尾杆末端的所有方向上的基本上平坦的表面延伸。 尾杆鼻部的长度可以至少是尾杆末端长度的两倍。 尾杆鼻的宽度可以是尾杆尖宽度的10至30倍。 具有双端尾磁极层的电感式换能器提供了较高的导轨与非磁道写磁场的比率,从而提高了数据可以写入记录介质的密度。 这样的双头后磁极层可用于用于纵向或垂直磁记录的换能器中。
    • 9. 发明授权
    • Inductive writer design using a soft magnetic pedestal having a high magnetic saturation layer
    • 使用具有高磁饱和层的软磁基座的感应写入器设计
    • US07375926B1
    • 2008-05-20
    • US11779785
    • 2007-07-18
    • Kroum S. StoevFrancis H. LiuYugang WangYingjian Chen
    • Kroum S. StoevFrancis H. LiuYugang WangYingjian Chen
    • G11B5/187
    • G11B5/1871G11B5/3116G11B5/3146G11B5/3967
    • A magnetic head for writing information on a relatively-moving medium includes a first substantially flat soft magnetic pole layer and a second substantially flat pole layer with at least one coil layer between them. The pole layers are magnetically coupled in a core region and spaced by more than one micron from one other. A soft magnetic pedestal adjoins the first pole layer adjacent to a medium-facing surface of the head, and a first high magnetic saturation layer adjoins the pedestal. A second high magnetic saturation layer adjoins the second pole layer. The first high magnetic saturation layer has a first throat height and the second high magnetic saturation layer extends from the medium-facing surface only to a second throat height. The first and second throat heights are within about one and one-half microns from the medium-facing surface and are essentially equal.
    • 用于在相对移动的介质上写入信息的磁头包括第一基本平坦的软磁极层和在它们之间具有至少一个线圈层的第二基本平坦的极性层。 磁极层磁芯耦合在磁芯区域并彼此间隔超过一微米。 软磁座与第一磁极层相邻,与磁头的介质表面相邻,第一高磁饱和层邻接基座。 第二高磁饱和层邻接第二极层。 第一高磁饱和层具有第一喉部高度,而第二高磁饱和层从介质中的表面延伸到第二喉部高度。 第一和第二喉部高度距离面向介质的表面大约一个半微米,并且基本相等。
    • 10. 发明授权
    • Inductive writer design for using a soft magnetic pedestal having a high magnetic saturation layer
    • 使用具有高磁饱和层的软磁基座的感应写入器设计
    • US07310204B1
    • 2007-12-18
    • US10741856
    • 2003-12-19
    • Kroum S. StoevFrancis H. LiuYugang WangYingjian Chen
    • Kroum S. StoevFrancis H. LiuYugang WangYingjian Chen
    • G11B5/187
    • G11B5/1871G11B5/3116G11B5/3146G11B5/3967
    • A magnetic head for writing information on a relatively-moving medium has a pair of substantially flat soft magnetic pole layers separated by a pair of coil layers. A soft magnetic pedestal adjoins the leading pole layer adjacent to a medium-facing surface and is spaced from the second pole layer by a nanoscale nonferromagnetic gap, the pedestal having a layer of high magnetic saturation material that defines a throat height and extends beyond the throat height. A second high magnetic saturation material adjoins the trailing pole layer and either terminates at the throat height to form a second pedestal or extends to reach a magnetic backgap structure that magnetically couples the pole layers. The MR sensor can be located closer than the write transducer to the trailing end of the head to reduce separation between the read transducer and the write transducer.
    • 用于在相对移动的介质上写入信息的磁头具有由一对线圈层隔开的一对基本平坦的软磁极层。 软磁性基座毗邻与中间面向表面相邻的引导极层,并且与第二极层间隔一纳米尺度的非铁磁隙,该基座具有一层高磁饱和度材料,其限定了喉部高度并延伸到喉部 高度。 第二高磁饱和材料邻接后极层并且终止于喉部高度以形成第二基座或延伸以到达磁耦合极层的磁性后隙结构。 MR传感器可以位于比写入传感器更靠近头部尾端的位置,以减少读取传感器与写入传感器之间的分离。