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
    • 1. 发明授权
    • Color filterless display device, optical element, and manufacture
    • 无滤色显示装置,光学元件和制造
    • US08879016B2
    • 2014-11-04
    • US13030271
    • 2011-02-18
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • G02F1/1335F21V8/00
    • G02B6/0053G02F1/133526G02F1/133621
    • A method of forming liquid crystal cell for a color display device includes forming a liquid crystal layer and a prism structure between top and bottom substrates. Forming the prism structure includes forming a lens shaped die, coating a low refractive index resin on the lens shaped die, pasting the lens shaped die to the top substrate, and irradiating the coated low refractive index resin so as to set the low refractive index resin and form a low refractive index layer. The lens shaped die is removed from the low refractive index layer, a high refractive index resin is coated on the low refractive index layer by use of a planarizing die. The coated high refractive index resin is irradiated so as to set the high refractive index resin and form a high refractive index layer, and the planarizing die is removed from the high refractive index layer.
    • 一种形成彩色显示装置的液晶元件的方法包括在顶部和底部基板之间形成液晶层和棱镜结构。 形成棱镜结构包括形成透镜形模,在透镜形模上涂覆低折射率树脂,将透镜成形模贴合到顶基板上,照射涂布的低折射率树脂,以便将低折射率树脂 并形成低折射率层。 从低折射率层去除透镜成形的模具,通过使用平面化模具将高折射率树脂涂覆在低折射率层上。 照射涂覆的高折射率树脂以设置高折射率树脂并形成高折射率层,并且从高折射率层去除平面化模具。
    • 5. 发明申请
    • SMALL RADIUS END MILL TOOL
    • 小型立铣刀
    • US20070147965A1
    • 2007-06-28
    • US11610611
    • 2006-12-14
    • Fumiaki Yamada
    • Fumiaki Yamada
    • B26D1/12
    • B23C5/109B23B2220/12B23B2265/08B23C3/28B23C5/22Y10T29/49Y10T407/1908Y10T407/1912Y10T407/1924Y10T407/1946Y10T407/21Y10T407/26Y10T409/304424Y10T409/309408
    • An end mill including a shank having one end gripped by a chuck which is rotatable about a predetermined rotation axis, and a blade body attached to the other end of the shank and rotatable together with the shank. The blade body has a shape in which the area of a cross section in a plane perpendicular to the rotation axis decreases as the distance from the shank increases, and includes a linear cutting edge parallel to, and at a certain distance from, the rotation axis. An end cutting edge adjoining the cutting edge in the longitudinal direction thereof may be provided. The blade body includes, for example, a rake-face-side surface including a rake face and adjoining the flank-side surface in two portions, and a linear cutting edge formed at one of the positions at which the flank-side surface and the rake-face-side surface come in contact with each other.
    • 一种端铣刀,其包括具有由卡盘夹持的一端的柄部,所述卡盘可绕预定的旋转轴线旋转,以及附接到所述柄部的另一端并与所述柄一起旋转的刀片体。 叶片本体具有这样一种形状,其中垂直于旋转轴的平面中的截面的面积随着与柄的距离的增加而减小,并且包括与旋转轴平行且距离旋转轴一定距离的线性切割刃 。 可以设置沿切割刃的纵向邻接的端部切削刃。 叶片本体包括例如包括前刀面的前刀面侧表面和两侧面相邻的侧面表面,以及线性切削刃,其形成在侧面侧和 前刀面侧相互接触。
    • 6. 发明申请
    • Optical connection board and optical signal transmission
    • 光连接板和光信号传输
    • US20050163416A1
    • 2005-07-28
    • US11022018
    • 2004-12-23
    • Fumiaki YamadaYoichi Taira
    • Fumiaki YamadaYoichi Taira
    • G02B6/122B29D11/00G02B6/12G02B6/13G02B6/138G02B6/30G02B6/42
    • G02B6/4214B29D11/00663G02B6/138G02B6/30G02B2006/12104
    • Optical signal transmission system comprising optical signal transmission board having first optical waveguide, and optical connection board having second optical waveguide and inserted into opening of optical signal transmission board substantially perpendicularly thereto, opening being provided in upper surface of transmission board. The board comprises: a first board; the first optical waveguide extended on an upper surface of the first board; and a second board made parallel to the first board, the opening extended from the upper surface thereof toward the first board is provided in the optical signal transmission board. The optical connection board comprises: a third board; second optical waveguide extended on an upper surface of the third board; and reflection surface provided in end portion of second optical waveguide, reflecting light traveling through the second optical waveguide, and making the light incident onto the first optical waveguide extended in a direction substantially perpendicular to the board.
    • 光信号传输系统包括具有第一光波导的光信号传输板和具有第二光波导并且基本上垂直于其的光信号传输板的开口插入的光连接板,设置在传输板的上表面中的开口。 董事会包括:第一板; 所述第一光波导延伸在所述第一板的上表面上; 以及与第一板平行的第二板,在其上表面朝向第一板延伸的开口设置在光信号传输板中。 光连接板包括:第三板; 第二光波导延伸在第三板的上表面上; 以及设置在第二光波导的端部的反射面,反射穿过第二光波导的光,并使入射到第一光波导上的光沿基本上垂直于板的方向延伸。
    • 7. 发明授权
    • Light guide apparatus, a backlight apparatus and a liquid crystal display apparatus
    • 导光装置,背光装置和液晶显示装置
    • US06667782B1
    • 2003-12-23
    • US09664719
    • 2000-09-19
    • Yoichi TairaFumiaki YamadaAkiko Nishikai
    • Yoichi TairaFumiaki YamadaAkiko Nishikai
    • G02F113
    • G02B6/0053G02B6/0046G02F1/133615
    • A backlight apparatus (and light guide and liquid crystal display apparatus incorporating the same) includes a wedge-type light guide having a refractive index n1, and having a top surface, a bottom surface and a side surface, a light source for directing light to the side surface of the wedge-type light guide, a first light transmission layer having a refractive index n2, which is smaller than said refractive index n1, and having a top surface and a bottom surface, wherein the top surface of the first light transmission layer is attached to the bottom surface of the wedge-type light guide, and a light deflecting layer having a top surface attached to the bottom surface of the first light transmission layer for deflecting the incident light from the first light transmission layer toward the top surface of the wedge-type light guide.
    • 背光装置(以及包含该背光装置的导光体和液晶显示装置)包括具有折射率n1的楔形导光体,具有顶面,底面和侧面,用于将光导向 楔形光导的侧表面,具有小于所述折射率n1的折射率n2的第一透光层,并且具有顶表面和底表面,其中第一透光层的顶表面 层附接到楔形光导的底表面,以及光偏转层,其具有附接到第一透光层的底表面的顶表面,用于将来自第一透光层的入射光朝向顶表面 的楔形导光体。
    • 8. 发明授权
    • Light modulator and optical head adjustment method
    • 光调制器和光头调节方法
    • US5515355A
    • 1996-05-07
    • US285681
    • 1994-08-04
    • Fumiaki Yamada
    • Fumiaki Yamada
    • G02B7/00G02B7/02G02F1/09G11B7/08G11B7/12G11B7/125G11B7/22G11B11/10G11B11/105G11B7/00
    • G11B7/08G11B7/12
    • The present invention sets the position of each apparatus of a detecting system and an emitting system without using a reference disk in assembling an optical head. A light signal similar to reflected light of a reference disk is generated by a light modulator comprising a Faraday rotator for rotating a plane of polarization proportionally to the current by setting a solenoid coil having a large Faraday constant set around a piece of glass and electrifying the solenoid coil, a convex lens connected to a mechanism which moves along the optical axis in accordance with the applied current, a target section having a light detecting target with a groove formed on the surface and a light reflecting member set to the groove on the optical axis and connected to a mechanism moving along the radial direction of a disk in accordance with an applied current, so as to perform positioning by using the generated signal as a servo signal.
    • 本发明在组装光头时不使用参考盘来设置检测系统和发射系统的每个装置的位置。 通过包括法拉第旋转器的光调制器产生类似于参考盘的反射光的光信号,用于通过设置围绕一块玻璃设置具有大的法拉第常数的螺线管线圈,使与该电流成比例的偏振平面旋转,并使 螺线管线圈,连接到根据所施加的电流沿着光轴移动的机构的凸透镜,具有形成在表面上的槽的光检测对象的目标部分和设置在光学器件上的凹槽的光反射部件 并且根据施加的电流连接到沿着盘的径向方向移动的机构,以便通过使用所生成的信号作为伺服信号来执行定位。
    • 9. 发明授权
    • Color filterless display device, optical element, and manufacture
    • 无滤色显示装置,光学元件和制造
    • US08767139B2
    • 2014-07-01
    • US13030208
    • 2011-02-18
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • G02F1/1335
    • G02B6/0053G02F1/133526G02F1/133621
    • A method of forming an optical element for a color display device includes forming a lens shaped die, coating a low refractive index photo-setting resin on the lens shaped die, pasting the lens shaped die to a substrate, and irradiating the coated low refractive index photo-setting resin so as to set the low refractive index resin and form a low refractive index layer. The lens shaped die is removed from the low refractive index layer set on the substrate, a high refractive index photo-setting resin is coated on the low refractive index layer by use of a planarizing die, and the coated high refractive index photo-setting resin is irradiated so as to set the high refractive index resin and form a high refractive index layer. The planarizing die is then from the high refractive index layer set on the low refractive index layer.
    • 一种形成彩色显示装置的光学元件的方法包括:形成透镜形模,在透镜模上涂覆低折射率光固化树脂,将透镜成形模贴在基板上,照射涂覆的低折射率 光固化树脂,以便设置低折射率树脂并形成低折射率层。 透镜成形的模具从设置在基板上的低折射率层去除,高折射率光固化树脂通过使用平面化模具涂覆在低折射率层上,并且涂覆的高折射率光固化树脂 被照射以设置高折射率树脂并形成高折射率层。 然后,平面化裸片来自设置在低折射率层上的高折射率层。