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    • 6. 发明授权
    • Optical recording medium
    • 光记录介质
    • US06551680B2
    • 2003-04-22
    • US09822556
    • 2001-03-30
    • Toru AbikoFuminori TakaseHitoshi Shimomuki
    • Toru AbikoFuminori TakaseHitoshi Shimomuki
    • B32B302
    • G11B7/243G11B7/007G11B7/24079G11B7/24082G11B7/253G11B7/257G11B7/258G11B7/2585G11B7/259G11B2007/2431G11B2007/24312G11B2007/24314G11B2007/24316Y10T428/21
    • In order to ensure CAV recording/reproduction while preventing jitter deterioration and modulation decrease and thereby ensuring sufficient recording properties, even at a linear velocity higher than 4.8 m/s, a first dielectric film, phase change versatile recording film, second dielectric film, reflection film and protective film are formed on a disc substrate having formed lands and grooves on one major surface. The recording film is made of a GeInSbTe alloy, and the reflection film is made of an AgPdCu alloy or AlCu alloy. Composition of the GeInSbTe alloy is adjusted to contain Ge in the range of 1 to 6 wt %, In in the range of 2 to 6 wt %, and control Sb/Te in the range of 2.2 to 3.0. Composition of the AgPdCu alloy is adjusted to contain Cu not more than 1.5 wt %. Regarding groove conditions, groove depth is controlled in the range of 40 to 50 nm, groove width in the range of 0.40 to 0.65 &mgr;m, thickness of the first dielectric film in the range of 75 to 95 nm, thickness of the recording film in the range of 12 to 18 nm, thickness of the second dielectric film in the range of 20 to 28 nm, and thickness of the reflection film in the range of 60 to 140 nm.
    • 为了确保CAV记录/再现,同时防止抖动劣化和调制降低,从而确保足够的记录性能,即使在高于4.8m / s的线速度下,也可以使用第一介电膜,相变通用记录膜,第二介电膜,反射 膜和保护膜形成在一个主表面上具有形成的焊盘和凹槽的盘基板上。 记录膜由GeInSbTe合金制成,反射膜由AgPdCu合金或AlCu合金制成。 调整GeInSbTe合金的组成,使Ge含量为1〜6重量%,In为2〜6重量%,Sb / Te为2.2〜3.0。 将AgPdCu合金的组成调整为含有不超过1.5重量%的Cu。 关于槽条件,将槽深度控制在40〜50nm的范围内,槽宽度在0.40〜0.65μm的范围内,第一电介质膜的厚度在75〜95nm的范围内,记录膜的厚度 范围为12〜18nm,第二电介质膜的厚度为20〜28nm,反射膜的厚度为60〜140nm。
    • 7. 发明授权
    • Method of manufacturing steering wheel
    • 制造方向盘的方法
    • US5204043A
    • 1993-04-20
    • US831667
    • 1992-02-06
    • Toru AbikoKatunobu SakaneMitsuru HarataHiroshi Yasuda
    • Toru AbikoKatunobu SakaneMitsuru HarataHiroshi Yasuda
    • B29C45/14
    • B29C45/14631B29C45/14B29L2031/3047
    • A method of manufacturing a steering wheel, in which a coating layer is molded of a synthetic resin, by using a molding die unit, on at least the annular portion of a steering wheel core including a boss. The annular portion is located around the boss and has a groove extending in the circumferential direction thereof. Spokes couple the boss and the annular portion to each other. The method includes a die opening step in which an upper molding die and a lower molding die, which have a gate formed at the separation surfaces of the dies and communicating with the molding cavity of the die unit, are opened from each other. The second step is a core setting step in which the core is set in the cavity so that the outermost part of the groove of the annular portion having walls defining the groove between them is located as the top of the groove, one of the walls, which faces the gate and has a notched part notched to be smaller in height than the other of the walls, faces the gate at the notched part, and the top of the notched part is located below the separation surfaces. Third, a coating layer molding step is carried out in which the dies are closed on each other and the resin is injected into the cavity through the gate so that the coating layer is molded of the resin on the core. Last and a steering wheel takeout step in which the dies are opened from each other and the wheel is taken out from the dies is accomplished.
    • 至少在包括凸台的方向盘芯的环形部分上通过使用成型模具单元来制造其中通过合成树脂模制涂层的方向盘的方法。 环形部分位于凸台周围,并且具有沿其圆周方向延伸的凹槽。 轮辐将轮毂和环形部分相互连接。 该方法包括:模具打开步骤,其中在模具的分离表面处形成有浇口并与模具单元的模腔连通的上模塑模具和下模塑模具彼此打开。 第二步是芯设置步骤,其中芯体设置在空腔中,使得具有限定它们之间的凹槽的壁的环形部分的凹槽的最外部位于凹槽的顶部,其中一个壁, 其面向门并且具有切口小于其他壁的高度的切口部分,在切口部分处面对门,并且切口部分的顶部位于分离表面下方。 第三,进行涂层成型步骤,其中模具彼此封闭,并且树脂通过浇口注入空腔,使得涂层由芯上的树脂模制而成。 最后和方向盘取出步骤,其中模具彼此打开并且车轮从模具中取出。
    • 8. 发明申请
    • Liquid crystal display apparatus
    • 液晶显示装置
    • US20090079905A1
    • 2009-03-26
    • US11920886
    • 2007-03-29
    • Kiyohiro KimuraMakoto AokiJun SasakiToru Abiko
    • Kiyohiro KimuraMakoto AokiJun SasakiToru Abiko
    • G02F1/13357
    • G02B6/0053G02F1/133606G02F2001/133607
    • A liquid crystal display apparatus is provided in which occurrence of a moiré pattern can be prevented without largely reducing front luminance. A liquid crystal display apparatus 1 includes a surface light source 4, a liquid crystal display panel 2, and first and second prism sheets 5 and 6 for condensing light emitted from the surface light source 4 and guiding the light toward the liquid crystal display panel. The first and second prism sheets 5 and 6 are disposed such that prism array directions thereof are orthogonal to each other. When a pixel pitch of the liquid crystal display panel 2 is defined as Pp [μm]; a prism array pitch of the first prism sheet 5 is defined as Px [μm]; and a prism array pitch of the second prism sheet 6 is defined as Py [μm], relationships of Px≦Pp/(14−0.045Pp) and Py≦Pp/(11.5−0.032Pp) are satisfied.
    • 提供一种液晶显示装置,其中可以防止出现莫尔图案而不会大大降低正面亮度。 液晶显示装置1包括表面光源4,液晶显示面板2以及用于聚集从面光源4发出的光并将光引向液晶显示面板的第一和第二棱镜片5,6。 第一和第二棱镜片5和6被布置成使得其棱镜阵列方向彼此正交。 当液晶显示面板2的像素间距被定义为P p [mum]时; 第一棱镜片5的棱镜阵列间距被定义为Px [μm]。 并且第二棱镜片6的棱镜阵列间距被定义为Py [mum],满足Px <= Pp /(14-0.045Pp)和Py <= Pp /(11.5-0.032Pp)的关系。
    • 9. 发明申请
    • Liquid Crystal Display, Optical Sheet Manufacturing Method, and Optical Sheet
    • 液晶显示器,光学片制造方法和光学片
    • US20080316392A1
    • 2008-12-25
    • US11659010
    • 2006-04-05
    • Mitsuo ArimaJun ShimizuKei ObataEiji OotaToru AbikoYasuyuki KudoMasato IshigakiMitsunari Hoshi
    • Mitsuo ArimaJun ShimizuKei ObataEiji OotaToru AbikoYasuyuki KudoMasato IshigakiMitsunari Hoshi
    • G02F1/1335
    • G02F1/133606G02F2001/133607
    • A liquid crystal display, optical sheet manufacturing method, and an optical sheet are provided. The occurrence of moiré is prevented while suppressing a reduction in front luminance. The liquid crystal display includes: a liquid crystal display panel; a light source arranged on a back surface side of the liquid crystal display panel; an optical sheet with a light-condensing property arranged between the liquid crystal display panel and the light source, the optical sheet having a number of irregularities arranged continuously on a principal surface of the optical sheet; and a diffuser sheet arranged between the liquid crystal display panel and the optical sheet. The liquid crystal display is constructed so that when an arrangement pitch of the irregularities of the optical sheet is P [μm], a haze value of the diffuser sheet is H [%], a total light transmittance of the diffuser sheet is Tt [%], and a pixel pitch of the liquid crystal display panel is Pp [μm], the following relationship is satisfied: (H/Tt)·(Pp/P)≧1.6.
    • 提供液晶显示器,光学片材制造方法和光学片。 在抑制正面亮度降低的同时防止出现波纹。 液晶显示器包括:液晶显示面板; 布置在所述液晶显示面板的背面侧的光源; 在所述液晶显示面板和所述光源之间布置有具有聚光性的光学片,所述光学片在所述光学片的主面上连续地排列有多个凹凸; 以及布置在液晶显示面板和光学片之间的漫射片。 液晶显示器被构造成当光学片的凹凸的排列间距为P [μm]时,漫射片的雾度值为H [%],漫射片的总透光率为Tt [% ],液晶显示面板的像素间距为Pp [mum],满足以下关系:(H / Tt)(Pp / P)> = 1.6。