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    • 1. 发明专利
    • Polarizer and liquid crystal projector
    • 极化和液晶投影机
    • JP2009276447A
    • 2009-11-26
    • JP2008125955
    • 2008-05-13
    • Nippon Sheet Glass Co Ltd日本板硝子株式会社
    • OGINO ETSUOMURAGUCHI ISAOTANAKA TAKESHIKUSAKA SATORU
    • G02B5/30G02B1/02G02B5/18G02B27/28G02F1/1335
    • PROBLEM TO BE SOLVED: To provide a polarizer having a smaller number of total layers compared to conventional polarizers while having high polarization characteristics. SOLUTION: The polarizer comprises a multilayered structure on a transparent substrate having a periodical uneven surface at least in one direction, the multilayered structure formed by alternately and successively depositing first layers made of a high refractive index light-transmitting material and second layers made of a low refractive index light-transmitting material, by sputtering deposition and ion etching in a form corresponding to the uneven surface of the transparent substrate. The high refractive index light-transmitting material comprises a material containing at least Ti and having a refractive index of not less than 2.50. The polarizer has a haze rate of less than 3%. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供与常规偏振器相比具有较少数量的总层的偏振器,同时具有高偏振特性。 解决方案:偏振片包括在至少在一个方向上具有周期性不平坦表面的透明基板上的多层结构,所述多层结构通过交替并依次沉积由高折射率透光材料制成的第一层和第二层 由低折射率透光材料制成,通过溅射沉积和对应于透明基板的不平坦表面的形式的离子蚀刻。 高折射率透光材料包括至少含有Ti并且折射率不小于2.50的材料。 偏振器的雾度率小于3%。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Method for producing polarizer
    • 生产极化剂的方法
    • JP2008209484A
    • 2008-09-11
    • JP2007043907
    • 2007-02-23
    • Nippon Sheet Glass Co Ltd日本板硝子株式会社
    • SHINMO KATSUHIDEOGINO ETSUOSUZUKI KOICHIYAMAGUCHI HIDETOSHIKUBO YUICHIROKAGEYAMA DAIKIMURAGUCHI ISAOKUSAKA SATORUKOBAYASHI FUMITOSHI
    • G02B5/30G02F1/1335
    • PROBLEM TO BE SOLVED: To provide a method for producing a polarizer in which an effective region can be formed over the whole of the surface of a substrate, and, the desired number of polarizers can be inexpensively obtained with dimensions corresponding to a request and at an angle to the direction of ruggedness compared with the conventional production method for photonic crystals. SOLUTION: The method for producing a polarizer comprises: a process where a prescribed sol liquid is applied over the whole of the surface of the first base material composed of a translucent inorganic material, so as to form a prescribed coating film; a process where, in a state where a master mold is pressed against the coating film of the first base material, heating-holding is performed, and the coating film is cured, so as to form a surface to which periodical rugged shape in a specified direction is imparted on the coating film; and a process where many units of double layer films where one unit is composed of the first layer of a high refractive index translucent material and the second layer of a low refractive index translucent material are stacked, so as to form a multilayer structure, and a polarizer original plate with a large area of ≥400 mm 2 where the whole face is made into an effective region is obtained, so as to provide a hybrid polarizer. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种偏振片的制造方法,其中可以在基板的整个表面上形成有效区域,并且可以廉价地获得所需数量的偏振器,其尺寸对应于 与传统的光子晶体生产方法相比,要求和与坚固性方向成一定角度。 解决方案:偏振片的制造方法包括:在由半透明无机材料构成的第一基材的整个表面上施加规定的溶胶液以形成规定的涂膜的工序; 在将主模压在第一基材的涂膜上的状态下进行加热保持并使涂膜固化的工序,以形成规定的周期性凹凸形状的表面 涂布膜上施加方向; 并且堆叠多个单位的双层膜,其中一个单元由高折射率半透明材料的第一层和低折射率半透明材料的第二层组成,以形成多层结构,并且 获得了将整个面制成有效区域的大面积≥400mm 2 的偏光镜原版,以提供混合偏振器。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Nano-imprinting method and nano-imprinting apparatus
    • 纳米印刷方法和纳米印刷设备
    • JP2008049544A
    • 2008-03-06
    • JP2006226786
    • 2006-08-23
    • Mitsutoyo CorpNippon Sheet Glass Co Ltd日本板硝子株式会社株式会社ミツトヨ
    • MURAGUCHI ISAOSHINMO KATSUHIDENAKAMA KENICHIMAEDA FUJIO
    • B29C59/02B29C43/52B29C43/54B81C99/00G02B5/18
    • PROBLEM TO BE SOLVED: To provide a nano-imprinting method which suppresses a minute dislocation generated between the transfer pattern of a mold and a pattern to be transferred to a molding and a nano-imprinting apparatus for the method.
      SOLUTION: In the nano-imprinting apparatus 11, a first cushioning sheet 15 is installed in a stationary stage 13 having a first heater H1, and a second cushioning sheet 26 is installed in a movable stage 21 having a second heater H2. An article 16 to be molded is held in the stationary stage 13 through the first cushioning sheet 15, the mold 27 is held in the movable stage 21 through the second cushioning sheet 26, and the article 16 to be molded and the mold 27 are held by the stationary stage 13 and the movable stage 21. While the mold 27 is pressed to an uncured resist film 17 formed in the article 16 to be molded, the resist film 17 is heated by the first and second heaters H1 and H2 to be cured.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种纳米压印方法,其抑制在模具的转印图案和要转印到模制品的图案之间产生的微小位错和用于该方法的纳米压印装置。 解决方案:在纳米压印装置11中,第一缓冲片15安装在具有第一加热器H1的固定台13中,第二缓冲片26安装在具有第二加热器H2的可移动台21中。 要成型的物品16通过第一缓冲片15保持在固定台13中,模具27通过第二缓冲片26保持在可移动台21中,待模制的物品16和模具27被保持 通过固定台13和可移动台21.当模具27被压到形成在待成型的制品16中的未固化的抗蚀剂膜17时,抗蚀剂膜17被第一和第二加热器H1和H2加热以被固化 。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Method for producing joined member, and micro chemical chip obtained by using the same
    • 用于生产接合构件的方法,以及使用该方法获得的微细化学芯片
    • JP2005139016A
    • 2005-06-02
    • JP2003375476
    • 2003-11-05
    • Nippon Sheet Glass Co Ltd日本板硝子株式会社
    • TOYOSHIMA TAKAYUKIYAMAGUCHI HIDETOSHIMURAGUCHI ISAO
    • G01N37/00C03C27/10
    • PROBLEM TO BE SOLVED: To solve the problem that the flatness of the glass surface of a micro chemical chip, obtained by integrally laminating a plurality of glass sheets and joining the sheets by thermal fusion of glass, is insufficient because of the warpage of the glass sheet.
      SOLUTION: In the method for producing a joined member, glass members each containing silicon dioxide as a main component are joined to each other, and a solution of a silicon alkoxide compound is used for bonding the joining faces. At the time of joining, heating or an external force is applied onto the joining face to press it in order to increase bonding strength. It is possible to obtain the micro chemical chip having a fine flow passages by integrally laminating a glass sheet having grooves and a glass sheet by the method.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题为了解决通过一体层压多个玻璃板并通过玻璃的热熔融而接合片材而获得的微细化学品的玻璃表面的平坦度由于翘曲而不充分的问题 的玻璃板。 解决方案:在接合部件的制造方法中,以二氧化硅为主要成分的玻璃构件相互接合,并且使用硅烷氧化合物溶液粘接接合面。 在接合时,为了提高接合强度,在接合面上施加加热或外力来加压接合面。 通过该方法通过一体地层压具有槽的玻璃板和玻璃板,可以获得具有细流动通道的微型化学芯片。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Light-emitting element with lens
    • 带镜头的发光元件
    • JP2005311269A
    • 2005-11-04
    • JP2004166560
    • 2004-06-04
    • Nippon Sheet Glass Co Ltd日本板硝子株式会社
    • HAMANAKA KENJIROHASHIMOTO TAKAHIRONAGATA HIDESHIONO SEIJIMURAGUCHI ISAOKOMABA NOBUYUKI
    • G02B3/00H01L33/08H01L33/30H01L33/44H01L33/58H01L33/00
    • PROBLEM TO BE SOLVED: To improve the light utilization efficiency of a light-emitting element having a lens.
      SOLUTION: A compound lens 30 is provided on an almost U-shaped light emitting unit 22 of a light-emitting element. When the maximal positions of a light emission intensity of the almost U-shaped light emitting unit 22 are connected, a polygonal line 32 is formed. Parts of four spherical lenses 43, 44, 45, 46, having their centers positioned at respective both ends of three line segments of this polygonal line 32, are provided, and parts of three cylindrical lenses 48, 50, 52 having axes parallel to the respective three line segments are provided in their intermediate portions to form the compound lens 30, by adjacently disposing them to each another. In addition, the light emitting element is provided with an antireflection film for covering the light-emitting unit 22, and the compound lens 30 is provided on a surface of the antireflection film.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提高具有透镜的发光元件的光利用效率。 解决方案:复合透镜30设置在发光元件的大致U形发光单元22上。 当连接大致U字形发光单元22的发光强度的最大位置时,形成折线32。 设有四个球面透镜43,44,45,46,其中心位于该折线32的三个线段的相应两端,并且具有平行于该多边形线32的轴线的三个柱面透镜48,50,52的部分 在它们的中间部分设置相应的三个线段,以通过将它们相互放置而形成复合透镜30。 此外,发光元件设置有用于覆盖发光单元22的防反射膜,并且复合透镜30设置在防反射膜的表面上。 版权所有(C)2006,JPO&NCIPI