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    • 3. 发明授权
    • Yoke spin valve MR read head
    • 轭式旋转阀MR读头
    • US5493467A
    • 1996-02-20
    • US364913
    • 1994-12-27
    • William C. CainRobert FontanaHugo A. SantiniMason L. Williams, III
    • William C. CainRobert FontanaHugo A. SantiniMason L. Williams, III
    • G11B5/00G11B5/39G11B5/147G11B5/235
    • B82Y25/00B82Y10/00G11B5/3903G11B5/3925G11B2005/0016G11B2005/3996
    • The present invention is a yoke spin valve MR read head which electrically connects a spin valve MR sensor to spaced apart yoke portions. First and second yoke pieces are electrically connected at a head surface and are insulated from one another at a back gap which is remotely located from the head surface. The first yoke piece has a break which divides it into first and second portions which are spaced from one another. The spin valve MR sensor is located within this break and electrically interconnects the first and second portions of the first yoke piece. First and second leads are connected to the first and second yoke pieces respectively and receive a current from a current source for applying a sense current to the spin valve MR sensor via the first and second yoke pieces. When a magnetic medium is moved adjacent the head surface of the read head the yoke pieces serve as conductors for transmitting sense current to the spin valve MR sensor as well as functioning as a flux guide. Flux incursions propagated from the magnetic medium to the spin valve MR sensor via the yoke cause relative rotations between directions of magnetic moments of a pinned layer and a free layer which correspond to signals which can be processed by a signal processing device. The signal strength of the yoke spin valve MR sensor is superior to an anisotropic MR sensor and is easier to fabricate.
    • 本发明是将自旋阀MR传感器与间隔开的磁轭部分电连接的磁轭自旋阀MR读头。 第一和第二轭片在头表面处电连接并且在远离头表面的后间隙处彼此绝缘。 第一轭片具有将其分成彼此间隔开的第一和第二部分的断裂。 自旋阀MR传感器位于该断裂之内并电互连第一轭片的第一和第二部分。 第一和第二引线分别连接到第一和第二磁轭,并且从电流源接收电流,用于经由第一和第二磁轭将感测电流施加到自旋阀MR传感器。 当磁性介质在读头的头表面附近移动时,轭件用作用于将感应电流传递到自旋阀MR传感器以及用作磁通引导件的导体。 通过轭从磁介质传播到自旋阀MR传感器的磁通入侵引起与被信号处理装置处理的信号相对应的钉扎层和自由层的磁矩方向之间的相对旋转。 轭自旋阀MR传感器的信号强度优于各向异性MR传感器,并且制造更容易。
    • 7. 发明授权
    • Scaled write head with high recording density and high data rate
    • 具有高记录密度和高数据速率的缩放写头
    • US06181514B2
    • 2001-01-30
    • US09205476
    • 1998-12-04
    • Hugo Alberto Emilio SantiniMason L. Williams, III
    • Hugo Alberto Emilio SantiniMason L. Williams, III
    • G11B5147
    • G11B5/012G11B5/3116G11B5/313G11B5/3163
    • The present invention provides a scaled down write head which has a high recording density and a high data rate. A significant dimension not scaled down proportionally is the thickness of the write coil layer so as to prevent heating of the head. The thickness of the write coil layer is equal to or greater than the thickness of the second pole piece layer. The insulation stack of the write head employs a nonorganic first insulation layer and only one baked photoresist layer which is a second insulation layer. A third insulation layer of the insulation stack may be provided by an extension of the write gap layer. With a lower stack height and with first and second pole pieces that are thinner, a well-defined second pole tip is constructed without reflective notching. The write gap layer is constructed after the other insulation layers of the insulation stack so as to prevent a reduction of its thickness during construction of the write coil layer. The data rate is increased by decreasing the thicknesses of the first and second pole piece layers which reduced thicknesses are enabled by decreasing the pitch of the write coil layer and moving the write coil layer closer to the ABS.
    • 本发明提供了具有高记录密度和高数据速率的缩小写入头。 成比例缩小的重要尺寸是写入线圈层的厚度,以防止头部的加热。 写入线圈层的厚度等于或大于第二极片层的厚度。 写头的绝缘堆叠采用非有机第一绝缘层,并且只有一个烘烤的光致抗蚀剂层是第二绝缘层。 绝缘堆叠的第三绝缘层可以由写间隙层的延伸部提供。 具有较低的堆叠高度,并且第一和第二极片较薄,明确限定的第二极尖端构造为没有反射性切口。 写间隙层构造在绝缘堆叠的其它绝缘层之后,以防止在写入线圈层的构造期间其厚度的减小。 通过减小第一和第二极片层的厚度来增加数据速率,通过减小写入线圈层的间距并使写入线圈层更靠近ABS来实现减小的厚度。