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    • 21. 发明授权
    • Manufacturing method for polarizing conversion elements
    • US06669797B2
    • 2003-12-30
    • US10105408
    • 2002-03-26
    • Masami Murata
    • Masami Murata
    • B32B3100
    • G02B5/3033Y10T156/1052Y10T156/1062Y10T156/108
    • A number of k sets of light transmissive members are prepared, k being an integer of 2 or greater, where each set thereof may consist of a plurality of first light transmissive plates and a plurality of second light transmissive plates, and (K+1) third light transmissive plates having a greater thickness than those of the first and the second light transmissive plate. A composite plate member is produced by alternately arranging and bonding one set of the plurality of first light transmissive plates and the plurality of second light transmissive plates to each of the spaces between the (K+1) third light transmissive plates, and alternately arranging a plurality of polarization separating films and a plurality of reflecting films on each interface in the composite plate member. A block substrate having a light receiving surface and a light emitting surface is produced by cutting the composite plate member along a first section parallel to a surface inclining at a predetermined angle with the surface of the composite plate member, the light receiving and light emitting surfaces being parallel to the first section. The light receiving surface and the light emitting surface of the block substrate are polished, and k light transmissive blocks are produced from one block substrate by dividing the block substrate at the positions of the third light transmissive plates disposed inside the block substrate.
    • 22. 发明授权
    • Method for producing a liquid crystal panel
    • 液晶面板的制造方法
    • US06195149B1
    • 2001-02-27
    • US08860098
    • 1997-07-22
    • Takumi KoderaKozo GyotaFumio ObataMasami Murata
    • Takumi KoderaKozo GyotaFumio ObataMasami Murata
    • G02F11339
    • G02F1/133351G02F1/1339G02F1/1341
    • A method for producing a liquid crystal panel by forming a plurality of liquid crystal sealing-in areas between a transparent pair of large-area substrates and dividing the liquid crystal sealing-in areas into separate liquid crystal sealing-in areas. The method includes (A) forming transparent electrodes which form a plurality of liquid crystal panels on a surface of each of the large-area substrates, (B) forming seals, each of which surround the transparent electrode required to form one liquid crystal panel, on one of the large-area substrates in order to form liquid crystal injection openings, and forming liquid crystal injection openings in the seals, (C) bonding together the large-area substrates such that their transparent electrodes face each other, with the seals interposed therebetween, (D) removing a portion of one of the pair of large-area substrates such that the liquid crystal injection opening is exposed to the outside, (E) injecting liquid crystal into the liquid crystal sealing-in area through the liquid crystal injection opening exposed to the outside, and then sealing the liquid crystal injection opening with a sealing agent, and (F) dividing the pair of large-area substrates into separate panels after the liquid crystal injection. According to this method, liquid crystal injection can be performed without completely cutting the large-area liquid crystal panel so that the production steps are simplified.
    • 通过在透明的一对大面积基板之间形成多个液晶密封区域并将液晶封入区域分割为分立的液晶密封区域来制造液晶面板的方法。 该方法包括:(A)形成在每个大面积基板的表面上形成多个液晶面板的透明电极,(B)形成密封件,(B)围绕形成一个液晶面板所需的透明电极, 在大面积基板中的一个上形成液晶注入开口,并在密封件中形成液晶注入口,(C)将大面积基板彼此粘合在一起,使得它们的透明电极彼此面对, (D)去除一对大面积基板中的一方的一部分,使得液晶注入口暴露于外部,(E)通过液晶注入将液晶注入液晶封入区域 开口暴露在外面,然后用密封剂密封液晶注入口,(F)在液体之后将一对大面积基板分成分开的面板 晶体注射。 根据这种方法,可以在不完全切割大面积液晶面板的情况下进行液晶注入,从而简化了制造步骤。
    • 24. 发明授权
    • Electronic timepiece
    • 电子钟表
    • US4250523A
    • 1981-02-10
    • US9724
    • 1979-02-05
    • Masami Murata
    • Masami Murata
    • G04D7/00G04C10/04G04G5/02G04C3/00
    • G04C10/04
    • An inspection circuit for use in an electronic timepiece is provided. The inspection circuit is characterized by the use of a gating circuit intermediate the timekeeping circuit of an electronic timepiece and certain counters that apply timekeeping signals to the digital display digits. The gating circuit is adapted to be selectively disposed into an inspection mode and thereby simultaneously apply to certain of the counters producing timekeeping signals a predetermined frequency inspection signal thereby reducing the time required to inspect the performance of the timepiece.
    • 提供了一种用于电子钟表的检查电路。 检查电路的特征在于使用在电子计时器的计时电路之间的门控电路以及将计时信号应用于数字显示数字的某些计数器。 选通电路适于选择性地设置在检查模式中,从而同时对某些计数器施加预定的频率检测信号,从而减少检查钟表的性能所需的时间。
    • 26. 发明授权
    • Optical modulator holder optical device and projector
    • 光学调制器支架光学设备和投影机
    • US07216987B2
    • 2007-05-15
    • US11042118
    • 2005-01-26
    • Motoyuki FujimoriMasami Murata
    • Motoyuki FujimoriMasami Murata
    • G03B21/18G02B26/00
    • G02F1/133385G02F2001/133325G03B21/16H04N9/3105H04N9/3144
    • An optical modulator holder 4402 has a middle frame 4409 for supporting a liquid crystal panel 441, a pair of frame members 4405 and 4406 for sandwiching the middle frame 4409 supporting the liquid crystal panel 441, a second elastic member 4407B and a third elastic member 4407C respectively interposed between the pair of frame members 4405 and 4406 and the liquid crystal panel 441, and translucent boards 442A and 443A respectively arranged on outer faces of the pair of frame members 4405 and 4406. An opening 4409A into which the liquid crystal panel 441 can be fitted is formed on the middle frame 4409, and an inner face thereof serves as an exterior position reference face for the liquid crystal panel 441.
    • 光调制器保持器4402具有用于支撑液晶面板441的中间框架4409,用于夹持支撑液晶面板441的中间框架4409的一对框架构件4405和4406,第二弹性构件4407B和第三弹性构件 4407C分别设置在一对框架构件4405和4406与液晶面板441之间,以及分别布置在一对框架构件4405和4406的外表面上的半透明板442A和443A。 在中间框架4409上形成可装配液晶面板441的开口4409A,其内表面用作液晶面板441的外部位置基准面。
    • 28. 发明授权
    • Optical device and projector
    • 光学设备和投影机
    • US07085034B2
    • 2006-08-01
    • US11080488
    • 2005-03-16
    • Motoyuki FujimoriMasami MurataToshiaki Hashizume
    • Motoyuki FujimoriMasami MurataToshiaki Hashizume
    • G02F1/01
    • G02B27/1046G02B7/008G02B27/145G02B27/149H04N9/3144
    • An optical device (44) includes three optical modulators, three optical modulator holders (447), a plurality of fluid circulating members (440), a cross dichroic prism (444), a fluid branching section (446), a fluid feed-in section (449) and a fluid pressurizing/feeding section (445). The three optical modulator holders (447) are fitted respectively to the three light-incident surfaces of the cross dichroic prism (444) through three supporting members (448). The fluid feed-in section (449) is fitted to the top surface of the cross dichroic prism (444). The fluid branching section (446) and the fluid pressurizing/feeding section (445) are laid one on the other and fitted to the lower surface of the cross dichroic prism (444).
    • 光学装置(44)包括三个光学调制器,三个光学调制器保持器(447),多个流体循环部件(440),十字分色棱镜(444),流体分支部分(446) (449)和流体加压供给部(445)。 三个光学调制器保持器(447)分别通过三个支撑构件(448)装配到十字分色棱镜(444)的三个光入射表面。 流体馈入部分(449)装配到十字分色棱镜(444)的顶表面。 流体分支部分(446)和流体加压供给部分(445)彼此放置并配合到十字分色棱镜(444)的下表面。