会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Magnetic recording medium and method of making the same
    • 磁记录介质及其制作方法
    • US06202926B1
    • 2001-03-20
    • US09244986
    • 1999-02-04
    • Masahiro ItoShohei MimuraMasao ShigetaTsutomu Chou
    • Masahiro ItoShohei MimuraMasao ShigetaTsutomu Chou
    • G06K708
    • G06K19/06196
    • A magnetic recording medium, and methods of making and reading the same, including on at least a portion of a substrate an irreversible recording layer which contains an irreversible recording material undergoing an irreversible change of saturation magnetization upon heating. The invention involves the steps of previously heating the irreversible recording layer to form an initial heated region in which a plurality of heated bars whose saturation magnetization has been irreversibly changed are arrayed in a bar code pattern, and converting unheated bars disposed between the heated bars into a heated state for changing the array pattern of heated bars, thereby recording the information.
    • 一种磁记录介质及其制造和读取方法,在至少一部分基板上包含不可逆记录层,该不可逆记录层含有在加热时经历饱和磁化强度不可逆变化的不可逆记录材料。 本发明涉及以下步骤:预先加热不可逆记录层以形成初始加热区域,其中饱和磁化强度已经不可逆地改变的多个加热棒被以条形码图案排列,并且将设置在加热棒之间的未加热条转换为 用于改变加热棒的阵列图案的加热状态,从而记录信息。
    • 3. 发明授权
    • Magnetic recording medium and method of making the same
    • 磁记录介质及其制作方法
    • US6029895A
    • 2000-02-29
    • US244437
    • 1999-02-04
    • Masahiro ItoShohei MimuraMasao ShigetaTsutomu Chou
    • Masahiro ItoShohei MimuraMasao ShigetaTsutomu Chou
    • G06K19/06
    • G06K19/06196
    • A magnetic recording medium, and a method of making the same, including an irreversible recording layer which undergoes an irreversible change of saturation magnetization upon heating. The magnetic recording medium includes on at least a portion of a substrate an irreversible recording layer which contains an irreversible recording material undergoing an irreversible change of saturation magnetization upon heating. The irreversible recording layer includes at least in part a fixed information recording region for recording the fixed information of the medium. In the fixed information recording region, a plurality of heated bars whose saturation magnetization has been irreversibly changed are arrayed substantially parallel to each other. The array pattern of the heated bars or the array pattern of unheated bars disposed between adjacent ones of the heated bars contains the fixed information encoded in a frequency modulation process or phase modulation process.
    • 一种磁记录介质及其制造方法,包括在加热时经受饱和磁化强度的不可逆变化的不可逆记录层。 磁记录介质在衬底的至少一部分上包括不可逆记录层,其含有在加热时经历饱和磁化强度的不可逆变化的不可逆记录材料。 不可逆记录层至少部分地包括用于记录介质的固定信息的固定信息记录区域。 在固定信息记录区域中,饱和磁化强度已经不可逆地改变的多个加热棒彼此基本平行排列。 设置在相邻加热棒之间的加热棒的阵列图案或未加热棒的阵列图案包含以频率调制过程或相位调制过程编码的固定信息。
    • 9. 发明授权
    • Thermal-assisted magnetic recording head having dielectric waveguide, metal waveguide and near-field light generating element
    • 具有介质波导,金属波导和近场光产生元件的热辅助磁记录头
    • US08462593B1
    • 2013-06-11
    • US13367767
    • 2012-02-07
    • Eiji KomuraKoji ShimazawaTsutomu ChouShinji HaraKosuke Tanaka
    • Eiji KomuraKoji ShimazawaTsutomu ChouShinji HaraKosuke Tanaka
    • G11B11/00
    • G11B5/314G11B5/6088G11B2005/0021
    • A magnetic head includes a dielectric waveguide to propagate propagation light; a metal waveguide facing the dielectric waveguide, coupling to the propagation light propagating through the dielectric waveguide in a surface plasmon mode, generating first surface plasmon with larger wavenumber than that of the propagation light, and propagating the first surface plasmon; a near-field light generating element facing the metal waveguide and extending to ABS, coupling to the first surface plasmon propagating on the metal waveguide in a surface plasmon mode, generating second surface plasmon with wavenumber larger than that of the first surface plasmon, propagating the second surface plasmon to an end part on the ABS side, and generating near-field light at the end part on the ABS side; and a recording magnetic pole provided in the vicinity of the near-field light generating element and having an end part positioned on the ABS.
    • 磁头包括传播传播光的电介质波导; 面向电介质波导的金属波导,以表面等离子体模式耦合到通过电介质波导传播的传播光,产生波数比传播光波数大的第一表面等离子体,并传播第一表面等离子体; 面向金属波导并延伸到ABS的近场光产生元件,以表面等离子体模式耦合到在金属波导上传播的第一表面等离子体激元,产生波数大于第一表面等离子体波的第二表面等离子体,传播 第二表面等离子体激元到ABS侧的端部,并且在ABS侧的端部产生近场光; 以及设置在近场光产生元件附近并具有位于ABS上的端部的记录磁极。