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    • 61. 发明授权
    • Magnetic write head with side shield and gap layer
    • 磁性写头,侧面屏蔽和间隙层
    • US08233236B2
    • 2012-07-31
    • US12169291
    • 2008-07-08
    • Yong-su KimKook-hyun SunwooKyoung-won Na
    • Yong-su KimKook-hyun SunwooKyoung-won Na
    • G11B5/127
    • G11B5/3116
    • A magnetic write head includes a main pole, a return yoke forming a magnetic path with the main pole, a side shield formed at both sides of the main pole, and a shield gap layer formed between the side shield and the return yoke. The side shield and the return yoke have portions connected to each, and are separated from each other by the shield gap layer in an area except for the portions which contact. A first gap layer formed of a nonmagnetic insulation material is formed between both sides of the main pole and the side shield. A gap is formed between an end portion of the main pole and an end portion of the return yoke and a second gap layer is formed in the gap with a nonmagnetic insulation material.
    • 磁写头包括主极,形成与主极的磁路的返回磁轭,形成在主电极两侧的侧屏蔽以及形成在侧屏蔽和返回磁轭之间的屏蔽间隙层。 侧护罩和返回轭具有连接到每个的部分,并且在除接触部分之外的区域中通过屏蔽间隙层彼此分离。 由主磁极和侧屏两侧形成由非磁性绝缘材料形成的第一间隙层。 在主极的端部和返回轭的端部之间形成间隙,并且在间隙中用非磁性绝缘材料形成第二间隙层。
    • 63. 发明授权
    • Magnetic memory devices using magnetic domain dragging
    • 使用磁畴拖曳的磁存储器件
    • US07902579B2
    • 2011-03-08
    • US11505969
    • 2006-08-18
    • Chee-kheng LimEun-sik KimYong-su Kim
    • Chee-kheng LimEun-sik KimYong-su Kim
    • G11C11/02
    • G11C11/15G11C11/5607G11C19/0808H01L27/228
    • A magnetic memory device includes a memory region, an input and a sensor. The memory region includes a free layer, a pinned layer and a non-magnetic layer. The free layer has adjacent sectors and a magnetic domain wall. The pinned layer corresponds to the sectors and has a fixed magnetization direction. The non-magnetic layer is formed between the free layer and the pinned layer. The memory region includes a magnetic domain wall stopper for stopping the magnetic domain wall formed at each boundary of the sectors. The input is electrically connected to one end of the free layer for inputting a signal for magnetic domain dragging. The sensor measures a current flowing through the memory region.
    • 磁存储器件包括存储区域,输入端和传感器。 存储区包括自由层,钉扎层和非磁性层。 自由层具有相邻扇区和磁畴壁。 被钉扎层对应于扇区并且具有固定的磁化方向。 非磁性层形成在自由层和被钉扎层之间。 存储区域包括用于停止形成在扇区的每个边界处的磁畴壁的磁畴壁塞。 输入电连接到自由层的一端,用于输入用于磁畴拖动的信号。 传感器测量流过存储器区域的电流。
    • 66. 发明授权
    • Multi-bit magnetic memory device using spin-polarized current and methods of manufacturing and operating the same
    • 使用自旋极化电流的多位磁存储器件及其制造和操作方法
    • US07684233B2
    • 2010-03-23
    • US11347228
    • 2006-02-06
    • Chee-kheng LimYong-su Kim
    • Chee-kheng LimYong-su Kim
    • G11C11/00
    • H01L43/08B82Y10/00G11C11/16G11C11/5607H01L27/228
    • A multi-bit magnetic memory device using a spin-polarized current and methods of manufacturing and operating the same. The magnetic memory device includes a switching device and a magnetic storage node connected to the switching device, wherein the magnetic storage node includes a first magnetic layer, a second magnetic layer and a free magnetic layer which are vertically and separately disposed from one another. The first and second magnetic layer have transmission characteristics opposite to each other for spin-polarized electrons, and have magnetic polarizations that are opposite to each other. The free magnetic layer may include first and second free magnetic layers, which are separately disposed from each other. The magnetic storage node may further include third and fourth magnetic layers that are separately disposed between the first and second free magnetic layers.
    • 使用自旋极化电流的多位磁存储器件及其制造和操作方法。 磁存储器件包括连接到开关器件的开关器件和磁存储节点,其中磁存储节点包括彼此垂直且分开设置的第一磁性层,第二磁性层和自由磁性层。 第一和第二磁性层对于自旋极化电子具有彼此相反的传输特性,并且具有彼此相反的磁极化。 自由磁性层可以包括彼此分开设置的第一和第二自由磁性层。 磁存储节点还可以包括分开设置在第一和第二自由磁性层之间的第三和第四磁性层。
    • 68. 发明授权
    • Magnetic head
    • 磁头
    • US07486478B2
    • 2009-02-03
    • US11247305
    • 2005-10-12
    • Chee-kheng LimYong-su Kim
    • Chee-kheng LimYong-su Kim
    • G11B5/147
    • G11B5/3116G11B5/3143
    • Provided is a magnetic head having a magnetic thin film structure that reduces the effect of a stray field and generates a magnetization reversal at a high speed. The magnetic head includes a first pole, a second pole spaced apart from the first pole, and an induction coil that induces a magnetic field in the first and second poles, wherein the first and second poles include a pole tip in which a leakage flux for recording is generated, and a head yoke that guides the flux flowing in the poles, and at least one implant for controlling a magnetic domain, the implant formed in at least one of the first and second poles. The magnetic thin film can effectively reduce the effect of a stray field entering from the outside, and can control a domain wall motion so that high speed magnetic recording is possible, by generating a magnetization reversal at a high speed corresponding to a magnetic field applied by an induction coil.
    • 本发明提供一种具有磁性薄膜结构的磁头,其能够降低杂散磁场的影响并产生高速的磁化反转。 磁头包括第一极,与第一极分开的第二极和感应线圈,其在第一和第二极中引起磁场,其中第一和第二极包括极尖,其中漏极通量用于 产生记录,以及引导磁极在磁极中流动的磁头磁轭,以及用于控制磁畴的至少一个注入,形成在第一和第二磁极中的至少一个上的注入。 磁性薄膜可以有效地降低从外部进入的杂散场的影响,并且可以控制畴壁运动,从而可以通过相应于由磁场施加的磁场产生高速磁化反转,从而实现高速磁记录 感应线圈。
    • 69. 发明申请
    • MAGNETIC RECORDING APPARATUS
    • 磁记录装置
    • US20090027802A1
    • 2009-01-29
    • US12054728
    • 2008-03-25
    • Yong-su Kim
    • Yong-su Kim
    • G11B5/596
    • G11B5/59688G11B5/59655
    • Provided is a magnetic recording apparatus including a magnetic recording medium having a magnetic recording position patterned of a magnetic substance and a read head reading information from the magnetic recording medium, wherein the magnetic recording medium includes: a data area having the magnetic recording position patterned including a plurality of data tracks; and a servo area including a servo burst for tracking the data tracks, wherein the servo burst includes a plurality of bursts deviating from one another in a downtrack direction, and a width of each of the bursts is equal to or greater than a width of the read head and narrower than twice the width of the read head. According to this structure, although data is reproduced using a read head having a greater width than a width of each of data tracks, a linear section in which an output voltage is reduced depending on a size of an off-track is formed. As a result, a dead zone can be removed.
    • 本发明提供一种磁记录装置,包括磁记录介质,磁记录介质具有图形化的磁性物质和从磁记录介质读取信息的磁头,其中磁记录介质包括:具有磁记录位置图形化的数据区,包括 多个数据轨道; 以及包括用于跟踪数据轨道的伺服脉冲串的伺服区域,其中所述伺服脉冲串包括在倾斜方向上彼此偏离的多个脉冲串,并且每个脉冲串的宽度等于或大于 读头并且窄于读头宽度的两倍。 根据该结构,虽然使用宽度大于数据磁道的宽度的读头来再现数据,但是形成其中输出电压根据偏离磁道的尺寸减小的线性部分。 因此,可以去除死区。