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    • 1. 发明专利
    • Cash handling machine
    • 现金处理机
    • JP2003016511A
    • 2003-01-17
    • JP2001195904
    • 2001-06-28
    • Masami Murata正己 村田
    • MURATA MASAMI
    • G07D9/00G07F9/02G08B13/02
    • PROBLEM TO BE SOLVED: To provide a cash handling machine that immediately notifies a prescribed manager when the cash handling machine is about to be stolen.
      SOLUTION: This cash handling machine for notifying an abnormal state is provided with an abnormality notifying device which has a vibration detection sensor having a magnetized rolling body 7 enclosed in a space 9 formed by a partition wall 13 made from non-magnetic material and a magnetic sensor 7 disposed on the partition wall 13, and a processing circuit 57 having an amplifier circuit 11 for amplifying an output signal of the vibration detection sensor and a transmitting circuit 12 for transmitting the amplified detection signal by radio, and notifies a preset receiver of the abnormal state of the cash handling machine through the transmitting circuit 12 when the vibration detection sensor of the abnormality notifying device 14 detects vibrations.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种现金处理机,当现金处理机即将被盗时,立即通知指定的经理。 解决方案:用于通知异常状态的现金处理机设置有异常通知装置,该异常通知装置具有振动检测传感器,该振动检测传感器具有包围在由非磁性材料制成的分隔壁13形成的空间9中的磁化滚动体7, 设置在分隔壁13上的传感器7和具有用于放大振动检测传感器的输出信号的放大器电路11的处理电路57和用于通过无线电发送放大的检测信号的发送电路12,并向预设接收机通知 当异常通知装置14的振动检测传感器检测到振动时,通过发送电路12的现金处理机的异常状态。
    • 2. 发明专利
    • Game machine
    • 游戏机
    • JP2003010515A
    • 2003-01-14
    • JP2001195867
    • 2001-06-28
    • Masami Murata正己 村田
    • MURATA MASAMI
    • A63F7/02
    • PROBLEM TO BE SOLVED: To provide a game machine which immediately reports to a predetermined manager, if its microcomputer is being replaced in guarding time, that the microcomputer is being replaced.
      SOLUTION: This is a game machine which is controlled by a microcomputer memorizing its winning probability in advance. In this machine, an abnormality- reporting apparatus is fixed, which has a shock-detecting sensor having a magnetized rolling element contained in a space formed by a partition made of a non-magnetic material and having a magnetic sensor fixed on the partition and has a processing circuit having an amplification circuit which amplifies the signal of the shock-detecting sensor and having a transmission circuit which radio-transmits the amplified signal. When the shock-detecting sensor of the abnormality-reporting apparatus detects a shock, the abnormality of the game machine is reported to a predetermined receiver through the transmission circuit.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了提供一种立即向预定的管理者报告如果在保护时间内更换其微型计算机的游戏机,则微型计算机被更换。 解决方案:这是一台由微机控制的游戏机,提前记忆其获胜概率。 在该机器中,固定有异常报告装置,其具有冲击检测传感器,该感应传感器具有磁化滚动元件,该磁化滚动元件包含在由非磁性材料制成的隔板形成的空间中,并且具有固定在隔板上的磁传感器,并具有 一种处理电路,具有放大电路,放大该冲击检测传感器的信号并具有发射电路,该发射电路对放大的信号进行无线电发射。 当异常报告装置的冲击检测传感器检测到冲击时,通过传输电路向预定的接收机报告游戏机的异常。
    • 3. 发明授权
    • Optical device and projector
    • 光学设备和投影机
    • US07270418B2
    • 2007-09-18
    • US11020698
    • 2004-12-27
    • Motoyuki FujimoriMasami Murata
    • Motoyuki FujimoriMasami Murata
    • G03B21/18G03B21/26G03B21/16
    • H04N9/3144
    • An optical device body (440) includes: three optical modulator holders (446) respectively holding three liquid crystal panels (441) and having cooling chambers with cooling fluid sealed therein to respectively cool the three liquid crystal panels (441) with the cooling fluid in the respective cooling chambers; a plurality of fluid circulators (448) intercommunicated with the three optical modulator holders (446) to guide the cooling fluid to the outside of the respective cooling chambers and re-introduce the cooling fluid into the respective cooling chambers; and a flow volume changer (449) disposed in a flow path of the cooling fluid and capable of changing flow volumes of the cooling fluid flown into the respective optical modulator holders (446) in accordance with heat values of the three liquid crystal panels (441).
    • 光学装置本体(440)包括:分别保持三个液晶面板(441)的三个光学调制器保持器(446),并且具有密封在其中的冷却流体的冷却室,以分别用三个液晶面板(441)冷却冷却流体 相应的冷却室; 与所述三个光学调制器保持器(446)相通的多个流体循环器(448),以将冷却流体引导到相应冷却室的外部,并将冷却流体重新引入相应的冷却室中; 以及设置在所述冷却流体的流路中并且能够根据所述三个液晶面板(441)的热值改变流入各个光学调制器保持器(446)的冷却流体的流量的流量变换器(449) )。
    • 4. 发明申请
    • Projector
    • 投影机
    • US20060187417A1
    • 2006-08-24
    • US11304542
    • 2005-12-16
    • Koichi AkiyamaMasami Murata
    • Koichi AkiyamaMasami Murata
    • G03B21/00
    • G02B26/108G02B27/1046G02B27/145G02B27/149G03B21/2026G03B21/2053H04N5/57H04N5/74H04N9/3105H04N9/3117H04N9/3155
    • A projector comprises an electro-optic modulator that modulates an illumination light beam in accordance with image information; a projecting optical system that projects the illumination light beam modulated by the electro-optic modulator, an illuminating device that emits the illumination light beam having a sectional shape compressed in the other direction so as to illuminate an entire image forming area with respect to one direction in the image forming area of the electro-optic modulator and illuminate one portion of the image forming area with respect to the other direction; and a rotating prism rotated at a constant speed and scanning the illumination light beam from the illuminating device along the other direction in the image forming area of the electro-optic modulator. The projector further comprises an illuminating device driving circuit that controls the light amount of the illumination light beam emitted from the illuminating device so as to reduce an illuminance difference generated by changing the scanning speed of the illumination light beam on the image forming area in the electro-optic modulator.
    • 投影仪包括根据图像信息调制照明光束的电光调制器; 投影光电系统,其投射由电光调制器调制的照明光束;照明装置,其发射具有沿另一方向压缩的截面形状的照明光束,以照射相对于一个方向的整个图像形成区域 在电光调制器的图像形成区域中,相对于另一方向照亮图像形成区域的一部分; 以及以恒定速度旋转的旋转棱镜,并且在电光调制器的图像形成区域中沿着另一个方向扫描来自照明装置的照明光束。 投影仪还包括照明装置驱动电路,其控制从照明装置发射的照明光束的光量,以便减少通过改变照射光束在电子照相形成区域中的扫描速度而产生的照度差 光调制器。
    • 9. 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.
    • 10. 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。