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    • 1. 发明申请
    • METHOD FOR TESTNG MOLD STRUCTURE, MOLD STRUCTURE, AND MAGNETIC RECORDING MEDIUM
    • 测试模具结构,模具结构和磁记录介质的方法
    • US20100149673A1
    • 2010-06-17
    • US12636145
    • 2009-12-11
    • Kenji ICHIKAWAAtsushi TATSUGAWAToshihiro USA
    • Kenji ICHIKAWAAtsushi TATSUGAWAToshihiro USA
    • G11B27/36
    • G11B27/36G11B5/855G11B2220/2516
    • A method for testing a mold structure including magnetically transferring a magnetic signal according to a concavo-convex pattern for a servo area in a mold structure to a perpendicular magnetic recording medium; electrically reproducing ≧50 tracks of the magnetic signal of servo data transferred onto the perpendicular magnetic recording medium using a magnetic head to obtain a reproduction signal; and calculating a pattern drawing accuracy radially from the reproduction signal to evaluate a performance of the mold structure including a disc-shaped base material; and the concavo-convex pattern for the servo area and a concavo-convex pattern for a data area formed on a base material surface following a desired design pattern. The concavo-convex patterns for the servo area are aligned in the radial direction of the base material, and the concavo-convex pattern for the data area are aligned in the circumferential direction between the concavo-convex patterns for the servo area.
    • 一种用于测试模具结构的方法,包括根据用于模具结构中的伺服区域的垂直磁记录介质的凹凸图案磁转移磁信号; 使用磁头电磁再现传送到垂直磁记录介质上的伺服数据的磁信号的50个磁道,以获得再现信号; 并从再现信号径向计算图形绘制精度,以评估包括盘形基材的模具结构的性能; 以及用于伺服区域的凹凸图案和在所需设计图案之后形成在基材表面上的数据区域的凹凸图案。 伺服区域的凹凸图案在基材的径向上排列,数据区域的凹凸图案在伺服区域的凹凸图案之间的圆周方向上排列。
    • 2. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20070187782A1
    • 2007-08-16
    • US11624656
    • 2007-01-18
    • Katsuhiro KATOKenji ICHIKAWA
    • Katsuhiro KATOKenji ICHIKAWA
    • H01L29/76
    • H01L29/0619H01L27/0266
    • The semiconductor device in accordance with the present invention includes a transistor region, a first guard ring, a second guard ring, and a silicide region. A first-conductive-type transistor is formed in the transistor region. The first guard ring is a second-conductive-type first impurity diffusion layer surrounding the transistor region with a first width, and is coupled to a first reference potential. The second guard ring is a first-conductive-type second impurity diffusion layer surrounding the first guard ring with a second width. The silicide region is formed on the surface of the second guard ring such that substantially no silicide is formed on a portion of the surface of the second guard ring on the side facing a drain region of the first-conductive-type transistor, and is connected to a second reference potential line whose potential is higher than that of the first reference potential line.
    • 根据本发明的半导体器件包括晶体管区域,第一保护环,第二保护环和硅化物区域。 第一导电型晶体管形成在晶体管区域中。 第一保护环是围绕具有第一宽度的晶体管区域并且耦合到第一参考电位的第二导电型第一杂质扩散层。 第二保护环是围绕第二保护环的第二宽度的第一导电型第二杂质扩散层。 硅化物区域形成在第二保护环的表面上,使得在与第一导电型晶体管的漏极区域相对的一侧的第二保护环的表面的一部分上基本上不形成硅化物,并且连接 到第二参考电位线,其电位高于第一参考电位线的电位。
    • 3. 发明申请
    • OUTER MIRROR
    • 外镜
    • US20090279195A1
    • 2009-11-12
    • US12432944
    • 2009-04-30
    • Masahiko ITOHKenji ICHIKAWAHiroyuki KAJIYAMA
    • Masahiko ITOHKenji ICHIKAWAHiroyuki KAJIYAMA
    • G02B7/182
    • B60R1/074
    • An object of the present invention is to provide an outer mirror which prevents the whistle noise without the rotation of the mirror assembly being prevented. In order to achieve the above object, an outer mirror which includes a mirror base provided on a vehicle body; a shaft portion fixed to the mirror base; a mirror assembly rotatably mounted on the mirror base around the shaft portion used as a rotational axis; a windshield member to occlude a gap between the mirror base and the mirror assembly, in which the shaft portion includes a mounting seat attached to the mirror base; a shaft body provided uprightly on the mounting seat, the mirror assembly includes a housing having an opening toward the mirror base and the shaft body is inserted into the opening; and a mirror attached to the housing is provided.
    • 本发明的目的是提供一种防止在不防止反射镜组件转动的情况下产生哨声的外镜。 为了实现上述目的,提供一种外镜,其包括设置在车身上的镜座; 固定在镜座上的轴部; 反射镜组件,可旋转地安装在作为旋转轴线的轴部周围的反射镜基座上; 挡风玻璃构件,用于封闭镜座和反射镜组件之间的间隙,其中轴部包括附接到镜座的安装座; 一个竖立在安装座上的轴体,该镜组件包括一个具有朝向镜底座的开口的壳体,并且该轴体插入该开口中; 并且设置了附接到壳体的反射镜。
    • 5. 发明申请
    • ANTENNA DEVICE AND SHELF TYPE READER SYSTEM
    • 天线装置和支架式读取器系统
    • US20070279295A1
    • 2007-12-06
    • US11755969
    • 2007-05-31
    • Eiichirou NAKAZONOFutoshi DEGUCHIMasahiko TANAKAKenji ICHIKAWATakeshi GOTO
    • Eiichirou NAKAZONOFutoshi DEGUCHIMasahiko TANAKAKenji ICHIKAWATakeshi GOTO
    • H01Q9/04G08B13/14
    • H01Q11/08H01Q1/2216
    • An antenna device is provided for which the thickness can be reduced, warping can be prevented, and manufacturing can be easily performed. According to the present invention, the antenna device includes: a support member, formed like a long hollow plate by extruding a resin; and an antenna unit, wherein a plurality of antenna elements, which are thin metal plates formed substantially in a U shape and which include a first coupling portion extended from one end in one direction and a second coupling portion extended from the other end in the opposite direction, grip the external sides of the support member in the longitudinal direction. The first coupling portion of a specific antenna element is connected to the second coupling portion of the adjacent antenna element, and the second coupling portion of the specific antenna element is connected to the first coupling portion of the adjacent antenna element. Since the antenna elements are connected in this manner, the antenna unit is formed like a coil.
    • 提供一种能够减小厚度的天线装置,可以防止翘曲,并且可以容易地进行制造。 根据本发明,天线装置包括:支撑构件,其通过挤出树脂形成为长的中空板; 以及天线单元,其中多个天线元件是基本上形成U形的薄金属板,并且包括从一个方向上的一端延伸的第一耦合部分和从另一端部延伸的第二耦合部分 方向,在纵向方向上夹持支撑构件的外侧。 特定天线元件的第一耦合部分连接到相邻天线元件的第二耦合部分,并且特定天线元件的第二耦合部分连接到相邻天线元件的第一耦合部分。 由于天线元件以这种方式连接,天线单元形成为类似于线圈。