Magnetic recording medium and magnetic storage device using the same
    1.
    发明授权
    Magnetic recording medium and magnetic storage device using the same 失效
    磁记录介质及使用其的磁存储装置

    公开(公告)号:US06251532B1

    公开(公告)日:2001-06-26

    申请号:US08555415

    申请日:1995-11-09

    IPC分类号: B32B1501

    摘要: A magnetic recording medium capable of reducing noise and an error rate of the medium comprises a nonmagnetic substrate; a magnetic layer formed on the surface of the nonmagnetic substrate directly or through a nonmagnetic underlayer; and a protective layer formed on the magnetic layer. The magnetic recording medium satisfies the following relationships: −0.5≦{Hc(1)−Hc(p)}/Hc(1)≦0.3 Hc(1)≧2 kOe 20 G×&mgr;m≦Br(1)×t≦100 G×&mgr;m where Hc(1) is a corecivity of the magnetic layer measured in the longitudinal direction; Hc(p) is a coercivity of the magnetic layer measured in the perpendicular direction; Br(1) is a remanent magnetization of the magnetic layer measured in the longitudinal direction; and “t” is a layer thickness of the magnetic layer.

    摘要翻译: 能够降低介质的噪声和误差率的磁记录介质包括非磁性衬底; 直接或通过非磁性底层形成在非磁性基片的表面上的磁性层; 以及形成在磁性层上的保护层。 磁记录介质满足以下关系:-0.5 <= {Hc(1)-Hc(p)} / Hc(1)<= 0.3Hc(1)> = 2 kOe20 Gxmum <= Br(1)xt < 100 Gxmum其中Hc(1)是沿纵向测量的磁性层的集中度; Hc(p)是在垂直方向上测量的磁性层的矫顽力; Br(1)是沿纵向测量的磁性层的剩磁; “t”为磁性层的层厚。

    Magnetic recording medium and magnetic storage
    2.
    发明授权
    Magnetic recording medium and magnetic storage 失效
    磁记录介质和磁存储

    公开(公告)号:US06544672B1

    公开(公告)日:2003-04-08

    申请号:US09678382

    申请日:2000-10-03

    IPC分类号: G11B566

    摘要: Disclosed is a magnetic recording medium capable of reducing noise and an error rate of the medium. The medium comprises a nonmagnetic substrate; a magnetic layer formed on the surface of the nonmagnetic substrate directly or through a nonmagnetic underlayer; and a protective layer formed on the magnetic layer; wherein the magnetic recording medium satisfies the following relationships: −0.5≦{Hc(1)−Hc(p)}/Hc(1)≦0.3 Hc(1)≧2 kOe 20 G×&mgr;m≦Br(1)×t≦100 G×&mgr;m where Hc(1) indicates a corecivity of the magnetic layer measured in the longitudinal direction; Hc(p) indicates a coercivity of the magnetic layer measured in the perpendicular direction; Br(1) indicates a remanent magnetization of the magnetic layer measured in the longitudinal direction; and “t” indicates a layer thickness of the magnetic layer.

    摘要翻译: 公开了能够降低介质的噪声和错误率的磁记录介质。 介质包括非磁性基底; 直接或通过非磁性底层形成在非磁性基片的表面上的磁性层; 以及形成在所述磁性层上的保护层; 其中所述磁记录介质满足以下关系:其中Hc(1)表示在纵向方向上测量的磁性层的堆积率; Hc(p)表示在垂直方向测量的磁性层的矫顽力; Br(1)表示在纵向测定的磁性层的残留磁化强度; “t”表示磁性层的层厚度。

    Magnetic recording medium and magnetic recording system using the same
    5.
    发明授权
    Magnetic recording medium and magnetic recording system using the same 失效
    磁记录介质和使用磁记录系统的磁记录系统

    公开(公告)号:US5759681A

    公开(公告)日:1998-06-02

    申请号:US595303

    申请日:1996-02-01

    IPC分类号: G11B5/127 G11B5/39 G11B5/66

    摘要: A magnetic recording system includes an intermediate layer arranged between adjacent ones of a plurality of magnetic layers constituting a magnetic recording medium, the magnetic recording medium driven by a drive section in the recording direction, and a magnetic head including a write section and a read-back section set in relative motion with respect to the magnetic recording medium. Signals are applied to the magnetic head and the output signals from the magnetic head are read back by a read/write signal processing device. The read-back section of the magnetic head includes a magnetoresistive magnetic head. The magnetic layers of the magnetic recording medium include crystal grains having different crystal orientations and existing in overlapped positions in the direction perpendicular to the medium surface. High-density information read/write operation thus is made possible with an improved reliability.

    摘要翻译: 磁记录系统包括布置在构成磁记录介质的多个磁性层的相邻磁记录层之间的中间层,由记录方向上的驱动部分驱动的磁记录介质,以及包括写入区和读出区的磁头, 相对于磁记录介质相对运动地设置。 信号被施加到磁头,并且来自磁头的输出信号由读/写信号处理装置读回。 磁头的回读部分包括磁阻磁头。 磁记录介质的磁性层包括具有不同晶体取向并且在与介质表面垂直的方向上重叠位置的晶粒。 因此,高密度信息读/写操作可以提高可靠性。

    Magnetic recording medium containing heavy rare gas atoms, and a
magnetic transducing system using the medium
    10.
    发明授权
    Magnetic recording medium containing heavy rare gas atoms, and a magnetic transducing system using the medium 失效
    含有重稀土气原子的磁记录介质,以及使用介质的磁转换系统

    公开(公告)号:US5650889A

    公开(公告)日:1997-07-22

    申请号:US380792

    申请日:1995-01-30

    IPC分类号: G11B5/012 G11B5/64 G11B5/82

    CPC分类号: G11B5/656 G11B5/012

    摘要: A magnetic recording medium having a high coercivity and a high S/N ratio for high-density operation can include either a conductive or a nonconductive substrate. If the substrate is nonconductive, a conducting precoat layer is formed over the substrate. Further, an underlayer may be provided, over which a magnetic layer is formed by a bias sputtering method. The bias sputtering method may use Kr, Xe or Rn as a sputter gas, and employs a negative bias voltage. The magnetic recording medium has a product of remanent magnetization and magnetic layer thickness of 10-150 G.multidot..mu.m and a coercivity of 1600-4000 Oe. In combination with this magnetic recording medium, a large-capacity magnetic recording system has a write head that uses a magnetic material having a saturation magnetic flux density of more than 1.2 T in at least a part of the magnetic core; a read head utilizing the giant magnetoresistance effect; a signal processing circuit that utilizes maximum likelihood decoding; and circuits that correct for asymmetry of the reproduced signals from the magnetoresistive head. In addition, the flying height of the magnetic head slider is set to less than 0.05 .mu.m.

    摘要翻译: 具有高矫顽力和高S / N比的用于高密度操作的磁记录介质可以包括导电或非导电衬底。 如果衬底不导电,则在衬底上形成导电预涂层。 此外,可以设置底层,通过偏置溅射法在其上形成磁性层。 偏置溅射法可以使用Kr,Xe或Rn作为溅射气体,并采用负偏置电压。 磁记录介质具有10-150Gxμm的剩余磁化和磁性层厚度的产物,矫顽力为1600-4000Oe。 与该磁记录介质相结合,大容量磁记录系统具有在至少一部分磁芯中使用饱和磁通密度大于1.2T的磁性材料的写头; 利用巨磁电阻效应的读头; 利用最大似然解码的信号处理电路; 以及校正来自磁阻头的再现信号的不对称性的电路。 此外,磁头滑块的飞行高度设定为小于0.05μm。