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    • 41. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20050057704A1
    • 2005-03-17
    • US10975478
    • 2004-10-29
    • Toshiya OotakeYutaka NakaiYuko KizuYoshitaka Yamada
    • Toshiya OotakeYutaka NakaiYuko KizuYoshitaka Yamada
    • G02B5/30G02F1/1335G02F1/13363G02F1/139
    • G02F1/133555G02F1/1393G02F2001/133638G02F2413/105
    • A liquid crystal display device includes first and second electrode substrates, a liquid crystal layer which is held between the substrates and in which nematic liquid crystal molecules are arranged in substantially parallel to each of the substrates without distortion, first and second optical anisotropic elements respectively disposed on the substrates on the sides opposite to the liquid crystal layer, first and second half-wavelength plates respectively disposed on the optical anisotropic elements, and first and second polarizing plates respectively disposed on the half-wavelength plates. Particularly, the substrate includes a light transmitting section which permits backlight light from the polarizing plate side to transmit therethrough and a light reflecting section which reflects ambient light from the polarizing plate side and at least one of the optical anisotropic elements is formed of two retardation plates having a retardation in a plane.
    • 液晶显示装置包括第一和第二电极基板,保持在基板之间的液晶层,其中向列型液晶分子基本上平行于每个基板而没有变形地布置,分别设置第一和第二光学各向异性元件 在与液晶层相反的一侧的基板上,分别设置在光学各向异性元件上的第一和第二半波长板以及分别设置在半波长板上的第一和第二偏振片。 特别地,基板包括:允许来自偏振板侧的背光源透射的透光部,以及反射来自偏振板侧的环境光和至少一个光学各向异性元件的光反射部,由两个相位差板 在飞机上有延迟。
    • 47. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US07098975B2
    • 2006-08-29
    • US11058299
    • 2005-02-16
    • Yoshitaka Yamada
    • Yoshitaka Yamada
    • G02F1/1335
    • G02F1/133553G02F1/133504G02F1/13363G02F2001/133638
    • In order to reduce an occurrence of a double image, to improve a contrast ratio in transmissive display, and to widen a viewing angle, a light diffusion layer for restricting the occurrence of the double image is placed between a viewing angle compensating plate and a reflective layer. With this configuration, though traveling directions of light emitted from a backlight placed on an outside of the reflective layer are changed in the light diffusion layer, the traveling directions are not changed in the viewing angle compensating plate and a liquid crystal layer once the light is made incident onto the viewing angle compensating plate, and the light travels straight in any of the vertical direction and slanting directions. Thus, the viewing angle compensating plate can exert an original function thereof to compensate a phase difference and can ensure a viewing angle widely.
    • 为了减少双重图像的出现,为了提高透射显示中的对比度,并且扩大视角,用于限制双重图像的发生的光扩散层被放置在视角补偿板和反射镜 层。 利用这种结构,由于在从光反射层的外侧放置的背光发出的光的行进方向在光漫射层中发生变化,所以在视野角补偿板和液晶层一旦光为 使其入射到视角补偿板上,并且光线在任何垂直方向和倾斜方向上直线行进。 因此,视角补偿板可以发挥其原始功能来补偿相位差,并且可以广泛地确保视角。
    • 48. 发明授权
    • Reflection LCD with a counter substrate having a plurality of curved
areas
    • 反射LCD,具有多个弯曲区域的对置基板
    • US6124911A
    • 2000-09-26
    • US834867
    • 1997-04-10
    • Hiroki NakamuraMasato KemmochiYoshitaka YamadaYoshihiro WatanabeMichiya KobayashiNozomu Harada
    • Hiroki NakamuraMasato KemmochiYoshitaka YamadaYoshihiro WatanabeMichiya KobayashiNozomu Harada
    • G02F1/1333G02F1/1335G02F1/1362
    • G02F1/133371G02F1/133553G02F1/136227G02F2203/02
    • A front surface of the opposite electrode of a liquid crystal display panel is formed in a curved shape. The relation between the reflecting surface of the pixel electrode and the curved surface of the opposite substrate is defined so that a leaving direction of the light that is reflected by the first face of the opposite substrate is different from a leaving direction of light that is emitted from the first face of the opposite substrate after having been reflected by the pixel electrodes through the liquid crystal layer. Thus, undesired light on the front surface of the opposite substrate is separated from light that is displayed. Consequently, an image free of dazzling and deterioration of contrast ratio due to undesired reflected light can be obtained with a high contrast ratio. In a display apparatus containing the reflection type liquid crystal display, an incident surface to a dichroic prism is an inclined surface including a curved surface, not a surface that is perpendicular to the optical axis. Thus, signal light that is reflected on each reflection type liquid crystal display panel and that is displayed can be separated from undesired light that is reflected on the surface of the dichroic prism. Thus, an image with a high quality, and a high contrast ratio can be displayed.
    • 液晶显示面板的相对电极的前表面形成为弯曲形状。 限定像素电极的反射面与相对基板的曲面之间的关系,使得由相对基板的第一面反射的光的离开方向与发出的光的离开方向不同 在由像素电极经过液晶层反射之后,从相对基板的第一面开始。 因此,相对基板的前表面上的不期望的光与显示的光分离。 因此,可以以高对比度获得由于不希望的反射光引起的无眩光和对比度的劣化的图像。 在包含反射型液晶显示器的显示装置中,分色棱镜的入射面是包括弯曲表面而不是垂直于光轴的表面的倾斜表面。 因此,在每个反射型液晶显示面板上反射并被显示的信号光可以与在二向色棱镜的表面上反射的不期望的光分离。 因此,可以显示具有高质量和高对比度的图像。
    • 50. 发明授权
    • Snap-in type sparkplug voltage probe device for use in internal
combustion engine
    • 用于内燃机的卡入式火花塞电压探头装置
    • US5453694A
    • 1995-09-26
    • US262655
    • 1994-06-20
    • Shigeru MiyataYoshitaka YamadaHideji YoshidaYoshihiro MatsubaraYasuo Ito
    • Shigeru MiyataYoshitaka YamadaHideji YoshidaYoshihiro MatsubaraYasuo Ito
    • F02P17/00F02P17/12G01R15/16G01R31/00G01R1/06G01R15/00G01R19/165
    • G01R15/16F02P17/12G01R31/007F02P2017/006F02P2017/123
    • In a snap-in type spark plug voltage probe device, the insulator base has an upper half and a lower half, both ends of which are integrally connected by means of a flexible portion. The upper half and the lower half have a plurality of grooves in which spark plug cables are placed. The upper half and the lower half are joined together by the flexible portion when in a closed position. The upper half has an opening to receive a protrusion provided on the lower half of the insulator base to maintain the upper half of the insulator base along the grooves, providing static capacity between the electrode layer and the spark plug cables when voltage is applied across the spark plugs. A lead wire electrically connects the electrode layer to a microcomputer so as to analyze the burning condition based on the static capacity between the electrode layer and the spark plug cables. An electrical shield layer is embedded in the insulator base in the proximity of the electrode layer and connected to the internal combustion engine by way of a ground wire located at a side of the electrode layer remote from the grooves so as to electrically shield the electrical layer. An insulator sheet is embedded in the insulator base and located between the electrode layer and the electrical shield layer.
    • 在卡扣式火花塞电压探针装置中,绝缘体基座具有上半部和下半部,其两端通过柔性部分一体连接。 上半部和下半部具有放置火花塞电缆的多个槽。 当处于关闭位置时,上半部和下半部通过柔性部分连接在一起。 上半部具有开口以接收设置在绝缘体基座的下半部上的突出部,以沿着凹槽保持绝缘体基座的上半部分,当电压施加在电极层上时,在电极层和火花塞电缆之间提供静态电容 火花塞。 引线将电极层电连接到微型计算机,以基于电极层和火花塞电缆之间的静态容量来分析燃烧状况。 电绝缘层嵌入电极层附近的绝缘体基底中,并通过远离槽的位于电极层一侧的接地线与内燃机连接,以电屏蔽电层 。 绝缘片被嵌入绝缘体基底中,位于电极层和电屏蔽层之间。