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    • 1. 发明授权
    • Reflecting film and reflector making use of the same
    • 反射膜和反射镜使用相同
    • US5982546A
    • 1999-11-09
    • US655762
    • 1996-05-30
    • Satoshi KawamotoYumi GotohShin FukudaNobuhiro Fukuda
    • Satoshi KawamotoYumi GotohShin FukudaNobuhiro Fukuda
    • G02B1/10G02B5/30
    • G02B5/0866
    • A reflecting film has at least a transparent polymer film and a thin silver layer applied on the transparent polymer film to reflect light entered from a side of the transparent polymer film. The reflecting film retains a reflectance of at least 90% to visible light even after the reflector is exposed for 300 hours at a reflecting film temperature of 100.degree. C. and an exposure intensity of 500 mW/cm.sup.2 to artificial sunlight from which light of 390 nm and shorter in wavelength has been eliminated. For fabricating the reflecting film, a surface of the transparent polymer film is preferably treated with a metal-containing plasma, then the thin-silver layer is deposited on the treated surface. A reflector making use of the reflecting film is also disclosed.
    • 反射膜在透明聚合物膜上至少具有透明聚合物膜和薄银层,以反射从透明聚合物膜侧进入的光。 即使反射体在100℃的反射膜温度下暴露300小时,对于人造太阳光的曝光强度为500mW / cm 2,反射膜仍保持至少90%的可见光的反射率,其中光390 已经消除了nm和更短的波长。 为了制造反射膜,优选用含金属的等离子体处理透明聚合物膜的表面,然后将薄银层沉积在处理过的表面上。 还公开了使用反射膜的反射器。
    • 4. 发明授权
    • Transparent conductive laminate and electroluminescence light-emitting element using same
    • 透明导电层压板和使用其的电致发光元件
    • US06351068B2
    • 2002-02-26
    • US08766824
    • 1996-12-13
    • Fumiharu YamazakiTomoyuki OkamuraShin FukudaNobuhiro Fukuda
    • Fumiharu YamazakiTomoyuki OkamuraShin FukudaNobuhiro Fukuda
    • H05B3328
    • H05B33/28Y10S428/917
    • A transparent conductive laminate in which a transparent conductive layer (an ITO film) mainly comprising indium, tin and oxygen is formed on one main surface of a transparent substrate such as a polymeric film and which is excellent in moist heat resistance and scuff resistance and which can be applied to various kinds of transparent electrodes. The transparent conductive layer has a stable amorphous structure, and its resistivity is 1×l0−2 &OHgr;·cm or less, and its electron mobility is 20 cm2/(V·sec) or more. This transparent conductive laminate can be prepared by forming an amorphous film mainly comprising indium, tin and oxygen and having a resistivity of more than 1×10−2 &OHgr;·cm on the substrate by a sputtering process under a high oxygen concentration atmosphere, and then subjecting the film to a heat treatment in the range of 80 to 180° C. to decrease the resistivity to 1×10−2 &OHgr;·cm or less, while the amorphous structure is maintained. This transparent conductive laminate can suitably be utilized as the transparent electrode of an electroluminescence light-emitting element equipped with a layer containing zinc sulfide as a light-emitting layer, and in this case, the deterioration of luminance during continuous light emission can be remarkably inhibited.
    • 在透明基板(如聚合物膜)的一个主表面上形成主要包含铟,锡和氧的透明导电层(ITO膜)的透明导电层压体,其耐湿热性和耐擦伤性优异, 可以应用于各种透明电极。 透明导电层具有稳定的非晶结构,其电阻率为1×10 -2Ω·Ω·cm以下,电子迁移率为20cm2 /(V.sec)以上。 该透明导电性层叠体可以通过在高氧浓度气氛下通过溅射法在基板上形成主要包含铟,锡和氧并且电阻率大于1×10 -2 OMEGA.cm的非晶膜,然后将 在80〜180℃的范围内进行热处理,将电阻率降低至1×10 -2Ω·cm·cm以下,同时保持非晶结构。 该透明导电性层叠体可以适当地用作配置有含有硫化锌作为发光层的层的电致发光发光元件的透明电极,在这种情况下,可以显着抑制连续发光时的亮度劣化 。
    • 8. 发明授权
    • Image processor and image display apparatus comprising the same
    • 图像处理器和包括该图像处理器的图像显示装置
    • US08175121B2
    • 2012-05-08
    • US11960828
    • 2007-12-20
    • Nobuhiro FukudaMasahiro OginoYoshiaki MizuhashiTakashi Oyama
    • Nobuhiro FukudaMasahiro OginoYoshiaki MizuhashiTakashi Oyama
    • H04J3/06
    • H04N7/0142
    • An image processor includes a motion vector acquisition section for acquiring and outputting an image motion vector in pixel or a predetermined block unit from plural frames included in an input image signal; and a frame interpolation section for generating an interpolated frame by using the motion vector provided by the motion vector acquisition section and for combining the interpolated frame with a frame of the input image signal, thereby composing a signal of a new frame sequence. The motion vector acquisition section includes a first motion vector acquisition section acquiring a motion vector by matching process and a second motion vector acquisition section acquiring a motion vector based on a relative misalignment of a predetermined edge component between two temporally successive frames in a specific area of an input image signal's frame.
    • 一种图像处理器包括:运动矢量获取部分,用于从包括在输入图像信号中的多个帧中获取并输出像素或预定块单元中的图像运动矢量; 以及帧内插部分,用于通过使用由运动矢量获取部分提供的运动矢量来生成内插帧,并且将内插帧与输入图像信号的帧组合,由此组成新的帧序列的信号。 运动矢量获取部分包括通过匹配处理获取运动矢量的第一运动矢量获取部分和第二运动矢量获取部分,其基于在特定区域中的两个时间上连续的帧之间的预定边缘分量的相对未对准来获取运动矢量 输入图像信号的帧。