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    • 71. 发明申请
    • Method of producing anisotropic optical element
    • 制造各向异性光学元件的方法
    • US20060222781A1
    • 2006-10-05
    • US11372261
    • 2006-03-10
    • Masanori UmeyaHiroyuki NishimuraTakanori AonoTakuya Yamazaki
    • Masanori UmeyaHiroyuki NishimuraTakanori AonoTakuya Yamazaki
    • C09K19/00C09K19/52
    • C09K19/02C09K19/38C09K2019/0448C09K2219/03Y10T428/10Y10T428/1036
    • The present invention provides a method of producing simply and precisely an anisotropic optical element having optical properties that are anisotropic with respect to a direction of a normal to an element plane. After forming an uncured film by applying flatwise a radiation-polymerizable cholesteric liquid crystal to a substrate (step 101), the film is heated to convert the cholesteric phase of the liquid crystal in the film into an isotropic phase (step 102). Thereafter, the isotropic phase of the liquid crystal in the film is converted into the cholesteric phase thereof, with a gas blown on the film from a predetermined direction (step 103). By doing so, the liquid crystal is oriented in such a manner that a mean direction of directions of helical axes (a main direction of helical axes) in liquid crystal domains in the film is tilted, relative to a direction of a normal to a film plane, along a stream of the gas blown. Lastly, the liquid crystal in the film is polymerized with the phase of the liquid crystal in the film maintained cholesteric (step 104). By this, the above-described state of orientation of the liquid crystal in the film is fixed as it is, and there is produced an anisotropic optical element having optical properties that are anisotropic with respect to the direction of the normal to the element plane.
    • 本发明提供简单且准确地制造各向异性光学元件的方法,所述各向异性光学元件具有相对于元件平面的法线方向是各向异性的光学特性。 通过将可放射线聚合的胆甾型液晶平面地涂布到基板上形成未固化的膜(步骤101)之后,加热膜,将膜中的液晶的胆甾醇相转变为各向同性相(步骤102)。 此后,将薄膜中的液晶的各向同性相转化为胆甾醇相,并从预定方向吹入薄膜上(步骤103)。 通过这样做,液晶被定向成使得膜中的液晶畴中的螺旋轴的方向的平均方向(螺旋轴的主方向)相对于膜的法线方向倾斜 飞机沿着气流吹动。 最后,膜中的液晶与保持胆甾醇的膜中的液晶相聚合(步骤104)。 由此,膜的液晶的上述取向状态是原样固定的,并且产生具有相对于元件平面的法线方向具有各向异性的光学性质的各向异性光学元件。
    • 72. 发明授权
    • Method for heat treating synthetic quartz glass for optical use
    • 光学用合成石英玻璃热处理方法
    • US07093465B2
    • 2006-08-22
    • US10297451
    • 2001-05-31
    • Tetsuji UedaHiroyuki NishimuraAkira Fujinoki
    • Tetsuji UedaHiroyuki NishimuraAkira Fujinoki
    • C03C15/00
    • C03C23/007C03B19/1453C03B32/00C03B2201/03Y10S65/90
    • An object of the present invention is to overcome the problems of the prior art technique, and to provide a heat treatment method as well as a heat treatment apparatus capable of heat treating, with higher efficiency, a synthetic quartz glass for optical use having higher homogeneity and higher purity. Another object of the present invention is to provide and a synthetic quartz glass for optical use.The problems above are solved by, in a method for heat treating a flat cylindrical synthetic quartz glass body provided as the object to be heat treated in a heating furnace, a method for heat treating a synthetic quartz glass for optical use comprising preparing a vessel made of quartz glass and having a flat cylindrical space for setting therein the object synthetic quartz glass body, placing two or more object synthetic quartz glass bodies into the vessel in parallel with each other, filling the space with SiO2 powder, setting the vessel inside the heating furnace with its lid closed, and applying the heat treatment to the vessel.
    • 本发明的目的是克服现有技术的问题,提供热处理方法以及能够以更高的效率对具有较高均匀性的光学用合成石英玻璃进行热处理的热处理装置 和更高的纯度。 本发明的另一个目的是提供一种用于光学用途的合成石英玻璃。 上述问题是通过在加热炉中对作为热处理对象的平坦圆筒形合成石英玻璃体进行热处理的方法来解决的,该方法是用于热处理用于光学用途的合成石英玻璃的方法,包括制备容器 的石英玻璃,并且具有平坦的圆柱形空间用于在其中设置物体合成石英玻璃体,将两个或更多个目标合成石英玻璃体彼此平行地放置在容器中,用SiO 2填充空间, 粉末,将容器置于加热炉内并关闭盖子,并对容器进行热处理。
    • 78. 发明授权
    • Portable information terminal
    • 便携式信息终端
    • US06543696B2
    • 2003-04-08
    • US09852760
    • 2001-05-11
    • Hiroyuki Nishimura
    • Hiroyuki Nishimura
    • G06K710
    • H04B1/3816G06K7/0021G06K7/0069H01R12/725H01R13/24H04M1/0202H04M1/0274H04M2250/14
    • A portable information terminal of the present invention is used with an IC card 10, the portable information terminal includes a housing forming the portable information terminal main body, a circuit board 20 disposed in the housing,and a connector 18 which is provided with a plurality of connection terminals 19 connected to the circuit board 20 and which is formed to define a groove for storing an information card 10. The plurality of connection terminals 19 are arranged on a lateral wall of the connector 18 in such a manner that the connection terminals 19 contact with a plurality of connection terminals of the information card 10. The connection terminals 19 are disposed on a plane which is inclined with respect to a main plane of the circuit board 20.
    • 本发明的便携式信息终端与IC卡10一起使用,便携式信息终端包括形成便携式信息终端主体的壳体,设置在壳体中的电路板20和设置有多个的连接器18 连接端子19连接到电路板20,并且形成为限定用于存储信息卡10的凹槽。多个连接端子19以连接端子19的方式布置在连接器18的侧壁上 与信息卡10的多个连接端子接触。连接端子19设置在相对于电路板20的主平面倾斜的平面上。