SPIN TRANSFER TORQUE MAGNETIC MEMORY DEVICE USING MAGNETIC RESONANCE PRECESSION AND THE SPIN FILTERING EFFECT
    21.
    发明申请
    SPIN TRANSFER TORQUE MAGNETIC MEMORY DEVICE USING MAGNETIC RESONANCE PRECESSION AND THE SPIN FILTERING EFFECT 审中-公开
    使用磁共振预测和旋转过滤效果的转子转子磁力记忆装置

    公开(公告)号:US20140159175A1

    公开(公告)日:2014-06-12

    申请号:US14116959

    申请日:2012-04-30

    CPC classification number: H01L43/02 G11C11/16 G11C11/161 H01L43/08 H01L43/10

    Abstract: The present invention relates to a magnetic memory device which additionally comprises a free magnetic layer constituting a horizontal direction variable magnetization layer having a fixed saturation magnetization value, whereby a switching current is markedly reduced as compared with conventional magnetic layers such that a high degree of integration of the device can be achieved and it is possible to lower a critical current density necessary for magnetization reversal thereby reducing the power consumption of the device. Also, a stray field effect occurring from a fixed magnetic layer is reduced such that a written magnetization data is thermally stable.

    Abstract translation: 本发明涉及一种磁存储器件,其还包括构成具有固定的饱和磁化值的水平方向可变磁化层的自由磁性层,由此与常规磁性层相比,开关电流显着降低,使得高度集成 的器件,并且可以降低磁化反转所需的临界电流密度,从而降低器件的功耗。 此外,从固定磁性层发生的杂散场效应减小,使得写入的磁化数据是热稳定的。

    DISPLAY SUBSTRATE, A METHOD OF MANUFACTURING THE DISPLAY SUBSTRATE AND A DISPLAY APPARATUS HAVING THE DISPLAY SUBSTRATE
    23.
    发明申请
    DISPLAY SUBSTRATE, A METHOD OF MANUFACTURING THE DISPLAY SUBSTRATE AND A DISPLAY APPARATUS HAVING THE DISPLAY SUBSTRATE 有权
    显示基板,制造显示基板的方法和具有显示基板的显示装置

    公开(公告)号:US20080297678A1

    公开(公告)日:2008-12-04

    申请号:US12098176

    申请日:2008-04-04

    CPC classification number: G02F1/136209 G02F2001/136236

    Abstract: A display substrate includes a gate line, a data line, a thin film transistor, a pixel electrode, and a light blocking layer. The data line is insulated from the gate line and crosses the gate line. The thin film transistor is connected to the gate line and the data line. The thin film transistor is formed in a pixel. The pixel electrode is formed in the pixel and connected to the thin film transistor. The light blocking layer is formed from a same layer as the data line, wherein the light blocking layer is adjacent to a side of the data line.

    Abstract translation: 显示基板包括栅极线,数据线,薄膜晶体管,像素电极和遮光层。 数据线与栅极线绝缘,并与栅极线交叉。 薄膜晶体管连接到栅极线和数据线。 薄膜晶体管形成在像素中。 像素电极形成在像素中并连接到薄膜晶体管。 遮光层由与数据线相同的层形成,其中遮光层与数据线的一侧相邻。

    Perpendicular magnetic recording media
    24.
    发明申请

    公开(公告)号:US20060188753A1

    公开(公告)日:2006-08-24

    申请号:US11404758

    申请日:2006-04-17

    Abstract: A perpendicular magnetic recording medium having a good thermal stability and a high recording density is provided. The perpendicular magnetic recording medium includes at least a first and a second perpendicular magnetic recording layer and a substrate supporting the first and the second perpendicular magnetic recording layers. The first and the second perpendicular magnetic recording layers have different physical/magnetic properties and are formed of materials that compensate the different physical/magnetic properties. The first and the second perpendicular magnetic recording layers are selected from a layer for improving perpendicular magnetic anisotropic energy (Ku), a layer for reducing the size of crystal grains, a layer for reducing the size of magnetic domains, a layer for increasing an SNR, a layer for improving signal output, a layer for reducing noise, a layer for improving the uniformity of crystal grain sizes, and a layer for improving the uniformity of magnetic domain sizes.

    Perpendicular magnetic recording media

    公开(公告)号:US07060375B2

    公开(公告)日:2006-06-13

    申请号:US10615956

    申请日:2003-07-10

    Abstract: A perpendicular magnetic recording medium having a good thermal stability and a high recording density is provided. The perpendicular magnetic recording medium includes at least a first and a second perpendicular magnetic recording layer and a substrate supporting the first and the second perpendicular magnetic recording layers. The first and the second perpendicular magnetic recording layers have different physical/magnetic properties and are formed of materials that compensate the different physical/magnetic properties. The first and the second perpendicular magnetic recording layers are selected from a layer for improving perpendicular magnetic anisotropic energy (Ku), a layer for reducing the size of crystal grains, a layer for reducing the size of magnetic domains, a layer for increasing an SNR, a layer for improving signal output, a layer for reducing noise, a layer for improving the uniformity of crystal grain sizes, and a layer for improving the uniformity of magnetic domain sizes.

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