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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
    • Write head with high moment film layer having tapered portion extending beyond write gap layer
    • 用具有锥形部分延伸超过写间隙层的高力矩膜层写头
    • US06873494B2
    • 2005-03-29
    • US10134799
    • 2002-04-29
    • Yingjian ChenXiaozhong Dang
    • Yingjian ChenXiaozhong Dang
    • G11B5/31G11B5/39G11B5/40
    • B82Y25/00B82Y10/00G11B5/3106G11B5/313G11B5/3133G11B5/3153G11B5/3163G11B5/40G11B2005/3996
    • An inductive write head structure incorporating a high moment film in conjunction with at least one pole (e.g., the bottom pole) for use with magnetic storage media and a process for producing the same in which a lift-off photoresist mask is used prior to the deposition of the high moment sputtered film. Following the lift-off process, the high moment film remains on the bottom pole (“P1”) pedestal (in the case of a PDZT type write head) or on the P1 itself (in the case of a Stitched Pole write head). The edge of the lift-off sputtered film is then covered by cured photoresist insulation which is placed at a distance away from the air bearing surface (“ABS”). The coverage of insulation at the edge of the sputtered film is desirable in order to avoid forming a topographic step which may have undesired consequences in the subsequent top pole formation processes.
    • 结合至少一个极(例如,底极)与磁存储介质一起使用的高力矩膜的感应写头结构及其制造方法,其中在剥离光刻胶掩模之前使用剥离光致抗蚀剂掩模 沉积高速溅射膜。 在剥离过程之后,高力矩胶片保留在底极(“P1”)底座上(在PDZT型写入头的情况下)或P1本身(在缝合杆写入头的情况下)。 然后,剥离溅射膜的边缘被固定的光致抗蚀剂绝缘体覆盖,该固化的光致抗蚀剂绝缘体被放置在远离空气支承表面(“ABS”)的一定距离处。 在溅射膜的边缘处的绝缘层的覆盖是期望的,以避免形成在随后的顶极形成过程中可能具有不期望的后果的地形步骤。