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    • 2. 发明授权
    • Method of manufacturing data recording medium made of ordered alloy thin
film
    • 制造有序合金薄膜的数据记录介质的制造方法
    • US6068739A
    • 2000-05-30
    • US328254
    • 1999-06-09
    • Toshio SuzukiNaoki HondaKazuhiro Ouchi
    • Toshio SuzukiNaoki HondaKazuhiro Ouchi
    • G11B11/10C23C14/34G11B5/84G11B11/12
    • G11B5/7325G11B11/10582G11B5/851
    • A method of manufacturing a data recording medium for recording and reproducing data by use of a magnetic field or light and formed of an ordered alloy thin film comprising the steps of forming at least one underlayer principally containing an element or a compound selected from the group consisting of Cr, Pt, Pd, Au, Fe, Ni, MgO, NiO and controlled in such a way that a crystal plane having a crystal lattice face of a Miller index (100) is in parallel to a substrate, and forming an ordered alloy layer with L1.sub.0 crystal structure by sputter deposition within the range satisfying Equation 1: P.times.D>3000, where P is Ar sputter-gas pressure (Pa) and D is a target-substrate distance (mm), is disclosed. When a recording medium is formed of an ordered alloy thin film by using a glass substrate for a hard disk for industrial use, according to the method of the present invention, formation of an ordered phase required for exhibiting large magnetocrystalline anisotropy is accelerated at a low temperature allowing usage of the glass substrate, so that the recording medium is improved in thermal stability.
    • 一种制造数据记录介质的方法,用于通过使用磁场或光记录和再现由有序合金薄膜形成的数据的数据记录介质,该方法包括以下步骤:形成至少一个主要包含元素或选自以下的化合物的底层: 的Cr,Pt,Pd,Au,Fe,Ni,MgO,NiO,并且使得具有米勒指数(100)的晶格面的晶面与基板平行,并且形成有序合金 通过溅射沉积在满足公式1的范围内的L10晶体结构的层:PxD> 3000,其中P是Ar溅射气体压力(Pa),D是目标衬底距离(mm))。 当通过使用用于工业用硬盘的玻璃基板由有序合金薄膜形成记录介质时,根据本发明的方法,显示出大的磁晶各向异性所需的有序相的形成被加速到低 允许使用玻璃基板的温度,使得记录介质的热稳定性得到改善。
    • 4. 发明授权
    • Vehicle navigation system and method
    • 车载导航系统及方法
    • US06351708B1
    • 2002-02-26
    • US09482094
    • 2000-01-13
    • Toru TakagiNaoki Honda
    • Toru TakagiNaoki Honda
    • G01C2100
    • G01C21/26G06Q30/0284
    • A vehicle navigation system and method in the present invention comprises a navigation apparatus transmitting a current position of a vehicle and a target destination of the vehicle, and a base station receiving the current position and the target destination, searching a route information from the current position to the target destination, and transmitting the route information to the navigation apparatus. The base station includes an information storage section storing added information with regard to road features, a route searching section searching the added route information from the information storage section, a transmitting section transmitting the route information to the navigation apparatus and then transmitting the added information to the navigation apparatus. The navigation apparatus displays the route information and the added route information each of which is transmitted from the base station.
    • 本发明的车辆导航系统和方法包括:发送车辆的当前位置和车辆的目标目的地的导航装置,以及接收当前位置和目标目的地的基站,从当前位置搜索路线信息 并且将路线信息发送到导航装置。 基站包括存储有关道路特征的附加信息的信息存储部,从信息存储部追加的路径信息的路径检索部,向导航装置发送路线信息,然后发送添加的信息的发送部 导航装置。 导航装置显示从基站发送的路由信息​​和添加的路由信息​​。
    • 10. 发明授权
    • Method of designing patterned magnetic recording medium and patterned magnetic recording medium
    • 设计图案化磁记录介质和图案化磁记录介质的方法
    • US07339764B2
    • 2008-03-04
    • US11689851
    • 2007-03-22
    • Naoki HondaKazuhiro Ouchi
    • Naoki HondaKazuhiro Ouchi
    • G11B5/74
    • G11B5/855
    • A method of designing a patterned magnetic recording medium including a magnetic film with perpendicular magnetic anisotropy which is patterned into dots form includes steps of setting values to dot pattern periods Px and Py, a thickness “t”, a thermal stability factor Kn, a minimum inter-dot spacing S0, and a maximum recording field Hm, setting an initial value of a saturation magnetization Ms, finding a nucleation field for magnetization reversal Hn and estimating a coercivity Hc and a saturation field Hs, and repeating the steps given above so as to make the saturation field Hs lower than the maximum recording field Hm, thereby determining the magnetic properties Ms, Hn and Hc satisfying a desired condition.
    • 设计图案化磁记录介质的方法,其包括具有垂直磁各向异性的磁膜,其被图案化为点形,包括将值设置为点图案周期P&lt; x&gt;和P&gt; Y >,厚度“t”,热稳定性因子K N n N,最小间隙间隔S 0> 0,最大记录场H“ SUB>,设置饱和磁化强度M S s的初始值,找到用于磁化反转H n n N的成核磁场,并估计矫顽磁力H < 和饱和场H S S,并且重复上述步骤以使得比最大记录场H SUB的饱和场H S ,从而确定满足期望条件的磁性质M H,H N n和H C c。