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    • 2. 发明授权
    • Light transmission screen
    • 透光屏
    • US5831585A
    • 1998-11-03
    • US597099
    • 1996-02-07
    • Satoshi AokiHirokazu SakaguchiKatsuaki Mitani
    • Satoshi AokiHirokazu SakaguchiKatsuaki Mitani
    • G03B21/62H04N5/74G03B21/56
    • G03B21/625
    • A light transmission screen having strong mechanical strength, enhanced image resolution, extremely narrow joints between screens and the like, consisting of a light transmissive panel, a lenticular lens sheet stacked on the light incident side of the light transmissive panel, a Fresnel lens sheet stacked on the light incident side of the lenticular lens sheet and optionally a light transmissive film stacked on the light incident side of the Fresnel lens sheet. The periphery of the light transmissive film or the periphery of the Fresnel lens sheet is joined to the light transmissive panel, resulting in the light transmissive panel, lenticular lens sheet, Fresnel lens sheet and light transmissive film being formed into a single-piece construction.
    • 一种透光屏,其具有强的机械强度,增强的图像分辨率,在屏幕之间的非常窄的接合点等,由透光面板,堆叠在透光面板的光入射侧的双凸透镜薄片组成,菲涅尔透镜片堆叠 在双凸透镜片的光入射侧和可选地,层叠在菲涅耳透镜片的光入射侧的透光膜。 透光膜的周边或菲涅耳透镜片的周边与透光面板接合,导致透光面板,双凸透镜片,菲涅耳透镜片和透光膜形成为单件式结构。
    • 6. 发明授权
    • Reflecting mirror and film and television receiver
    • 反射镜和电影和电视接收机
    • US06425672B2
    • 2002-07-30
    • US09896440
    • 2001-06-29
    • Takehiko YamashitaKatsuaki MitaniHirokazu Sakaguchi
    • Takehiko YamashitaKatsuaki MitaniHirokazu Sakaguchi
    • G02B508
    • G02B5/0866H04N9/3141
    • A reflecting film is made by forming resin layers on both sides of a metal thin film, and using a colorless, transparent, and optically isotropic material at least in one resin layer. A reflecting film is made by forming a metal thin film on one side of a resin film, and forming a colorless, transparent, and optically isotropic resin coat layer on its surface by printing or other method. A mirror having such a reflecting film is mounted on a frame. A projection type image magnifying apparatus for liquid crystal panel and a projection type image magnifying apparatus for CRT, improved in resolution and contrast ratio, is obtained by using such mirror as an image reflecting mirror.
    • 通过在金属薄膜的两面上形成树脂层,并且在至少一个树脂层中使用无色透明和光学各向同性的材料制成反射膜。 通过在树脂膜的一面上形成金属薄膜,通过印刷或其它方法在其表面上形成无色,透明和光学各向同性的树脂涂层而制成反射膜。 具有这种反射膜的反射镜安装在框架上。 通过使用这种反射镜作为图像反射镜,获得了用于液晶面板的投影型图像放大装置和用于CRT的投影型图像放大装置,其分辨率和对比度提高。
    • 7. 发明授权
    • Reflecting mirror and film and television receiver
    • 反射镜和电影和电视接收机
    • US06264341B1
    • 2001-07-24
    • US09696783
    • 2000-10-26
    • Takehiko YamashitaKatsuaki MitaniHirokazu Sakaguchi
    • Takehiko YamashitaKatsuaki MitaniHirokazu Sakaguchi
    • G02B508
    • G02B5/0866H04N9/3141
    • A reflecting film is made by forming resin layers on both sides of a metal thin film, and using a colorless, transparent, and optically isotropic material at least in one resin layer. A reflecting film is made by forming a metal thin film on one side of a resin film, and forming a colorless, transparent, and optically isotropic resin coat layer on its surface by printing or other method. A mirror having such a reflecting film is mounted on a frame. A projection type image magnifying apparatus for liquid crystal panel and a projection type image magnifying apparatus for CRT, improved in resolution and contrast ratio, is obtained by using such mirror as an image reflecting mirror.
    • 通过在金属薄膜的两面上形成树脂层,并且在至少一个树脂层中使用无色透明和光学各向同性的材料制成反射膜。 通过在树脂膜的一面上形成金属薄膜,通过印刷或其它方法在其表面上形成无色,透明和光学各向同性的树脂涂层来制造反射膜。 具有这种反射膜的反射镜安装在框架上。 通过使用这种反射镜作为图像反射镜,获得了用于液晶面板的投影型图像放大装置和用于CRT的投影型图像放大装置,其分辨率和对比度提高。