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    • 2. 发明授权
    • Magnetic read/write device with insulated coil layer recessed into pole
    • 具有绝缘线圈层的磁性读/写装置嵌入极
    • US06349014B1
    • 2002-02-19
    • US09311939
    • 1999-05-14
    • Billy W. Crue, Jr.Renuka ApparaoZhupei ShiKen YoungMark Seymour
    • Billy W. Crue, Jr.Renuka ApparaoZhupei ShiKen YoungMark Seymour
    • G11B517
    • B82Y25/00B82Y10/00G11B5/3116G11B5/3123G11B5/313G11B5/3967G11B2005/3996
    • A write element for recording data on a magnetic medium includes a first pole and a second pole separated by a non-magnetic, electrically insulating write gap layer. In addition, a coil layer is recessed into the first pole and is electrically insulated from the first pole by a coil insulation layer, and form the second pole by a coil separation layer. The coil layer includes at least one coil turn, each of which are transversely separated from an adjacent coil turn by a coil turn divider. In some embodiments, the coil turn dividers are integral with and therefore formed of the same material as the first pole. The coil layer, first pole, and coil turn dividers are planarized before formation of the coil separation layer. Also, a second pole pedestal can be connected to the second pole at the air bearing surface, and separated from the first pole by the write gap layer. A highly heat conductive material can be disposed below the first pole as an undercoat. Such an undercoat can facilitate dispersion of heat that is generated by a current passing through the coil layer, away from other components of the write element. In addition, the write element can be formed in conjunction with a read element to form a read/write head. The read element can be formed above the write element, with the coil layer embedded in the first pole which is distal the read element.
    • 用于在磁介质上记录数据的写元件包括由非磁性,电绝缘的写间隙层分开的第一极和第二极。 此外,线圈层凹陷到第一极中并且通过线圈绝缘层与第一极电绝缘,并且通过线圈分离层形成第二极。 线圈层包括至少一个线圈匝,每个线圈匝由线圈岔分隔器与相邻线圈匝横向分离。 在一些实施例中,线圈转弯分度器与由第一极构成的材料形成一体并因此形成。 在形成线圈分离层之前,将线圈层,第一极和线圈分路器平坦化。 此外,第二极基座可以在空气轴承表面处连接到第二极,并且通过写间隙层与第一极分离。 高导热性材料可以设置在第一极下方作为底涂层。 这样的底涂层可以促进由通过线圈层的电流而远离写入元件的其它部件产生的热分散。 此外,写入元件可以与读取元件结合形成读/写头。 读取元件可以形成在写入元件上方,其中线圈层嵌入到远离读取元件的第一极中。
    • 4. 发明授权
    • Thin film magnetic write head having an ultra-low stack height
    • 具有超低堆叠高度的薄膜磁性写头
    • US06304414B1
    • 2001-10-16
    • US09357580
    • 1999-07-20
    • Billy W. Crue, Jr.Renuka ApparaoZhupei ShiSean Yao
    • Billy W. Crue, Jr.Renuka ApparaoZhupei ShiSean Yao
    • G11B531
    • G11B5/3967G11B5/3116G11B5/313
    • A magnetoresistive write element having a greatly reduced stack height allowing construction of a smaller track width and tighter track width tolerances. The reduced stack height also produces improved magnetic flux flow properties in the write element leading to an improved magnetic fringing field in the write gap region The magnetoresistive write head includes an electrically conductive planar coil having a portion thereof extending between first and second poles. The first and second poles join one another to form a magnetic yoke which is closed at one end and open at the other. An insulation layer separates the coil from the first pole. Another layer of insulating material is formed into the coil, interspersed between the winds and having an upper surface which is flush with the upper surface of the coil. A thin layer of write gap material insulates the coil from the second pole. Since there is only a thin layer of write gap material between the coil and the second pole, rather than a thicker insulation layer, the topography of the second pole can be reduced. This lowers the stack height which allows the second pole to be constructed to define a smaller write gap with tighter tolerances.
    • 具有大大降低的堆叠高度的磁阻写入元件,允许构造更小的轨道宽度和更紧密的轨道宽度公差。 减小的堆叠高度还在写入元件中产生改善的磁通流动特性,导致写入间隙区域中改善的磁边界场磁阻写入头包括导电平面线圈,其具有在第一和第二极之间延伸的部分。 第一和第二极彼此结合形成磁轭,该磁轭在一端封闭并在另一端开放。 绝缘层将线圈与第一极分开。 绝缘材料的另一层形成为线圈,散布在风之间并且具有与线圈的上表面齐平的上表面。 写入间隙材料的薄层将线圈与第二极绝缘。 由于在线圈和第二极之间只有薄层的写间隙材料,而不是较厚的绝缘层,所以可以减小第二极的形貌。 这降低了堆叠高度,这允许构造第二极点以限定更小的公差的写入间隙。
    • 7. 发明授权
    • Magnetic write head having a splitcoil structure
    • 具有分离线圈结构的磁性写头
    • US06496330B1
    • 2002-12-17
    • US09393056
    • 1999-09-09
    • Billy W. Crue, Jr.Zhupei ShiMark David ThomasLien-Chang Wang
    • Billy W. Crue, Jr.Zhupei ShiMark David ThomasLien-Chang Wang
    • G11B517
    • G11B5/313G11B2005/0013Y10T29/49062
    • A magnetoresistive head having a split coil structure including multiple, similar coil layers separated by an insulator and joined at their ends to define parallel electrical paths. The coil passes through a magnetic yoke having an open end and a closed end and is electrically insulated from the yoke. The parallel electrical paths of the separate coil layers can each be modeled as a resistor in series with an inductor, each of the paths also being in parallel with a capacitor. The split coil has a much faster current rise time than a comparable single layer coil or than multiple coils connected in series. Since the coil current provides the magneto-motive force for imparting a signal on a passing recording medium, the decreased current rise time corresponds to an increased data recording rate.
    • 一种具有分离线圈结构的磁阻头,包括由绝缘体隔开并在其端部连接以限定平行电路径的多个相似的线圈层。 线圈通过具有开口端和封闭端的磁轭,并且与磁轭电绝缘。 单独线圈层的并联电路可以各自被建模为与电感器串联的电阻器,每个路径也与电容器并联。 分离线圈的电流上升时间比可比较的单层线圈要快得多,或多个线圈串联连接。 由于线圈电流提供用于在通过的记录介质上施加信号的磁动力,所以减小的电流上升时间对应于增加的数据记录速率。
    • 8. 发明授权
    • High density multi-coil magnetic write head having a reduced yoke length and short flux rise time
    • 具有减小磁轭长度和短磁通上升时间的高密度多线圈磁性写头
    • US06483662B1
    • 2002-11-19
    • US09350773
    • 1999-07-09
    • Mark ThomasBilly W. Crue, Jr.Zhupei ShiSonny Tran
    • Mark ThomasBilly W. Crue, Jr.Zhupei ShiSonny Tran
    • G11B5147
    • G11B5/313G11B5/3116G11B5/3967
    • A magnetoresistive write element has a plurality of coils disposed between a first and second pole. A first coil having inner and outer contacts is provided on top of a layer of insulation on top of the first pole. A write gap material above the first coil separates the poles at a yoke tip region to form a write gap therebetween. Second and third coils wound in the form of a single bifilar coil are provided on top of the write gap material, each having an inner and an outer contact portion. Electrical connection between the inner contact of the first coil and the inner contact of the second coil is provided through a via in the write gap material. An insulation layer above the second and third coils provides separation from a fourth coil provided thereabove. The fourth coil also has inner and outer contact portions. The outer contact of the fourth coil electrically connects with the outer contact of the second coil through one of the vias in the second insulation layer separating the second and third coil from the fourth coil. Similarly, the inner contact of the fourth coil connects electrically with the inner contact of the third coil. An insulation layer is deposited on top of the fourth coil and the second pole is formed on top thereof such that the first and second poles make electrical connection with one another at back gap portion.
    • 磁阻写入元件具有设置在第一和第二极之间的多个线圈。 具有内触点和外触点的第一线圈设置在第一极顶上的绝缘层的顶部。 在第一线圈上方的写入间隙材料将磁极尖端区域处的磁极分开,以在它们之间形成写入间隙。 卷绕在单个双线圈形式的第二和第三线圈设置在写入间隙材料的顶部,每个具有内部和外部接触部分。 通过写入间隙材料中的通孔提供第一线圈的内部接触和第二线圈的内部接触之间的电连接。 第二和第三线圈上方的绝缘层提供与设置在其上的第四线圈的分离。 第四线圈还具有内部和外部接触部分。 第四线圈的外触点通过第二绝缘层中的一个通孔与第二线圈的外触点电连接,以使第二和第三线圈与第四线圈分离。 类似地,第四线圈的内部接触件与第三线圈的内部接触件电连接。 绝缘层沉积在第四线圈的顶部上,并且第二极形成在其顶部上,使得第一和第二极在后间隙部分处彼此电连接。
    • 9. 发明授权
    • Ultra small advanced write transducer and method for making same
    • 超小型高级写入传感器及其制作方法
    • US06417998B1
    • 2002-07-09
    • US09274187
    • 1999-03-23
    • Billy W. Crue, Jr.Zhupei ShiVijay K. DhingraSean Yao
    • Billy W. Crue, Jr.Zhupei ShiVijay K. DhingraSean Yao
    • G11B539
    • G11B5/3967G11B5/3116G11B5/313
    • A magnetoresistive write element having a planar coil layer between a first pole and a second pole. The magnetoresistive write element further includes a buildup insulation layer having an upper surface that is substantially coplanar with an upper surface of the first pole. Further, the planar coil layer is disposed above both the first pole and the buildup insulation layer. A method for forming a magnetoresistive write element includes providing a first pole and covering the first pole with an insulating layer. The insulating layer is then planarized, thereby exposing the first pole and defining a buildup insulation layer. This planarization also results in the formation of a substantially planar upper surface of the buildup insulation layer and a substantially planar upper surface of the first pole. More specifically, the first pole upper surface is substantially coplanar with the buildup insulation layer upper surface. The method also includes forming a write gap material layer above the insulation layer and first pole, and forming a substantially planar coil layer above said write gap material layer. In addition, a second pole is formed above the write gap material layer, with the coil layer thereby disposed between the first pole and the second pole.
    • 一种在第一极和第二极之间具有平面线圈层的磁阻写入元件。 磁阻写入元件还包括具有与第一极的上表面基本共面的上表面的积层绝缘层。 此外,平面线圈层设置在第一极和积层绝缘层两者之上。 形成磁阻写入元件的方法包括提供第一极并且用绝缘层覆盖第一极。 然后将绝缘层平坦化,从而暴露第一极并限定积层绝缘层。 这种平面化还导致形成积层绝缘层的基本平坦的上表面和第一极的基本平坦的上表面。 更具体地,第一极上表面与积层绝缘层上表面基本上共面。 该方法还包括在绝缘层和第一极之上形成写间隙材料层,以及在所述写间隙材料层之上形成基本平面的线圈层。 此外,在写入间隙材料层的上方形成第二极,由此将线圈层设置在第一极和第二极之间。