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    • 1. 发明专利
    • Display device
    • 显示设备
    • JPH11271665A
    • 1999-10-08
    • JP37252398
    • 1998-12-28
    • Central Glass Co LtdNippon Mitsubishi Oil Corpセントラル硝子株式会社日石三菱株式会社
    • ASAKURA MOTOOHOSAKI KENJI
    • G02B27/01B60K35/00G02B27/02G02F1/13G09F9/00
    • PROBLEM TO BE SOLVED: To provide a simple display device capable of preventing double images by using a liquid crystal display device having the normal polarization axis of 45°.
      SOLUTION: Display information from the liquid crystal display device 6 having the polarization axis of 45° to a vertical axis on the display screen is projected on the surface of transparent planar bodies 1 and 1' by the incident angle of the Brewster angle, reflected and displayed on the eye point 8 on the side of the display device 6 by the transparent planar bodies 1 and 1' or a translucent reflection film 3 provided on the transparent planar bodies 1 and 1'. In this case, an azimuth rotator 7 for performing 45° optical rotation is installed on the front surface of the liquid crystal display device 6 or the azimuth rotator for performing the 45° optical rotation and attaining P wave is installed to the transparent planar bodies 1 and 1'.
      COPYRIGHT: (C)1999,JPO
    • 要解决的问题:提供能够通过使用具有45度的正常偏振轴的液晶显示装置来防止双重图像的简单显示装置。解决方案:具有偏振轴为45°的液晶显示装置6的显示信息 度。 通过布鲁斯特角的入射角将透明平面体1和1'的表面投影到显示屏幕上的垂直轴,并通过透明平面反射并显示在显示装置6侧的眼睛点8上 主体1和1'或设置在透明平面体1和1'上的半透明反射膜3。 在这种情况下,用于进行45度的方位旋转器7。 光学旋转安装在液晶显示装置6的前表面或用于执行45度的方位旋转器。 光学旋转和获得P波被安装到透明平面体1和1'。
    • 4. 发明专利
    • Method of manufacturing wavelength selective film transmittable of radiowave
    • 制造波长波长选择膜的方法
    • JP2007161584A
    • 2007-06-28
    • JP2007063312
    • 2007-03-13
    • Central Glass Co Ltdセントラル硝子株式会社
    • NAKAJIMA HIROSHIASAKURA MOTOOOMOTO HIDEO
    • C03C17/36
    • PROBLEM TO BE SOLVED: To obtain glass having a coating film, which has decreased reflectance to radiowaves in each frequency band of TV broadcast, satellite broadcast and mobile phone, sufficient shielding performance to solar insolation and transmissivity to visible rays.
      SOLUTION: A mixed dispersion layer obtained by mixing a metal nitride and Ag is formed on the surface of a transparent substrate, and then an Ag-containing layer at least containing Ag, such as an Ag-mixed layer obtained by mixing a metal nitride and Ag, is formed on the mixed dispersion layer. Thereafter, an Ag particulate layer comprising particulate Ag is formed on the surface layer of the film by heating the formed films at a temperature of ≥150°C and not higher than the softening temperature of the transparent substrate.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了获得具有降低对TV广播,卫星广播和移动电话的每个频带中的无线电波的反射率的涂膜的玻璃,对于可见光线的太阳照射和透射率的足够的屏蔽性能。 解决方案:在透明基板的表面上形成通过混合金属氮化物和Ag而获得的混合分散层,然后将至少含有Ag的含Ag层,例如通过混合Ag 在混合分散层上形成金属氮化物和Ag。 此后,通过在≥150℃且不高于透明基板的软化温度的温度下加热所形成的膜,在膜的表面层上形成包含颗粒状Ag的Ag颗粒层。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • HOLOGRAM EXPOSURE DEVICE
    • JPH0916060A
    • 1997-01-17
    • JP16361295
    • 1995-06-29
    • CENTRAL GLASS CO LTD
    • KOBAYASHI KAZUYAASAKURA MOTOONISHIKAWA SHINJI
    • G02B5/30G02B5/32G03H1/04
    • PURPOSE: To provide a hologram exposure device which suppresses the formation of unnecessary diffraction gratings according to the rear surface reflection of a dry plate. CONSTITUTION: This hologram exposure device forms interference fringes by irradiating the dry plate 1 formed with a photosensitive material on a substrate with light from a laser beam source which emits the light polarized to an S wave vibrating perpendicularly to a dry plate surface. The exposure device described above is so constituted that a polarization direction adjusting film 2 for rotatorily polarizing the polarization direction at 90 deg. is exposed in the state of bringing this film into contact with either surface of the dry plate. Further, the angle at which the laser beam is emitted from the dry plate is preferably so set as to attain a Brewster angle θ or to attain a range of θ±5 deg. and for this purpose, the film is preferably exposed in the state of bringing a transparent block of a non-parallel shape into contact with the outermost surface on the side opposite to the incident side of the laser beam in such a manner that the exit angle of the laser beam attains the Brewster angle at need.