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    • 61. 发明申请
    • Etchant and method of etching
    • 蚀刻剂和蚀刻方法
    • US20060189123A1
    • 2006-08-24
    • US11289382
    • 2005-11-30
    • Noriyuki SaitouTakuji YoshidaKazunori InoueMakoto IshikawaYoshio Kamiharaguchi
    • Noriyuki SaitouTakuji YoshidaKazunori InoueMakoto IshikawaYoshio Kamiharaguchi
    • H01L21/4763H01L21/302
    • C23F1/44C23F1/20C23F1/26H01L21/32134
    • A fine wiring line profile with satisfactory precision is formed from a multilayer film containing a first layer made of an aluminum alloy and a second layer formed thereon made of a molybdenum-niobium alloy, by simultaneously etching the two layers constituting the multilayer film through only one etching operation while preventing the upper layer from forming overhangs. An etchant for etching a multilayer film containing an aluminum alloy layer formed over a substrate and a molybdenum-niobium alloy layer formed thereon having a niobium content of 2-19% by weight contains an aqueous solution of an acid mixture containing phosphoric acid, nitric acid, and an organic acid; and a method of etching is carried out with this etchant. The etchant preferably has a phosphoric acid concentration Np of 50-75% by weight, a nitric acid concentration Nn of 2-15% by weight, and an acid ingredient concentration defined by Np+(98/63)Nn of 55-85% by weight.
    • 由含有由铝合金制成的第一层和由钼铌合金构成的第二层的多层膜通过仅通过一个同时蚀刻构成多层膜的两层形成精细的布线线廓 同时防止上层形成悬垂。 用于蚀刻含有在基材上形成的铝合金层的多层膜的蚀刻剂和其上形成的铌含量为2〜19重量%的钼 - 铌合金层含有含有磷酸,硝酸的酸混合物的水溶液 ,和有机酸; 并且用该蚀刻剂进行蚀刻的方法。 蚀刻剂的磷酸浓度优选为50〜75重量%,硝酸浓度N 2〜2重量%,酸成分 浓度由55-85%(重量)的N + P +(98/63)N 所定义。
    • 69. 发明授权
    • Display device and method of manufacturing the same
    • 显示装置及其制造方法
    • US08405091B2
    • 2013-03-26
    • US12523550
    • 2008-02-04
    • Takumi NakahataKazunori InoueKoji OdaNaoki NakagawaNobuaki Ishiga
    • Takumi NakahataKazunori InoueKoji OdaNaoki NakagawaNobuaki Ishiga
    • H01L27/14
    • G02F1/13439G02F1/133555G02F1/136227G02F2001/136295G02F2201/40G02F2202/06H01L27/124H01L29/458
    • A display device includes a metal conductive layer formed on a substrate, a transparent electrode film formed on the substrate and joined to the metal conductive layer and an interlayer insulating film isolating the metal conductive layer and the transparent conductive film. The metal conductive layer has a lower aluminum layer made of aluminum or aluminum alloy, an intermediate impurity containing layer made of aluminum or aluminum alloy containing impurities and formed on a substantially entire upper surface of the lower aluminum layer and an upper aluminum layer made of aluminum or aluminum alloy and formed on the intermediate impurity containing layer. In the interlayer insulating film and the upper aluminum layer, a contact hole penetrates therethrough and locally exposes the intermediate impurity containing layer, and the transparent electrode film is joined to the metal conductive layer in the intermediate impurity containing layer exposed from the contact hole.
    • 显示装置包括形成在基板上的金属导电层,形成在基板上并与金属导电层接合的透明电极膜和隔离金属导电层和透明导电膜的层间绝缘膜。 金属导电层具有由铝或铝合金制成的较低铝层,由含有杂质的铝或铝合金制成的中间杂质含有层,形成在下铝层的大致整个上表面上,铝层由铝制成 或铝合金,并形成在中间杂质含有层上。 在层间绝缘膜和上部铝层中,接触孔穿过其中并局部暴露中间杂质含有层,并且透明电极膜与从接触孔露出的中间杂质含有层中的金属导电层接合。
    • 70. 发明申请
    • 3D IMAGE DISPLAY DEVICE AND 3D IMAGE DISPLAY METHOD
    • 3D图像显示装置和3D图像显示方法
    • US20120169730A1
    • 2012-07-05
    • US13395987
    • 2010-05-07
    • Kazunori Inoue
    • Kazunori Inoue
    • G06T15/00
    • G02B27/0093G02B27/2228H04N13/128H04N13/332H04N13/373H04N13/376
    • Provided is a 3D image display method by which a viewer can more comfortably view a 3D image using an image stream for 3D viewing. The 3D image display method is a method used in a 3D image display device for displaying a 3D image from an image stream for 3D viewing including an image for a left eye and an image for a right eye, using a screen and 3D viewing glasses. The method comprises a step for acquiring, as glasses information, either the position and/or the inclination of the 3D viewing glasses with respect to the screen (S1200), a step for determining whether or not the glasses information satisfies an appropriate viewing condition under which a viewer wearing the 3D viewing glasses can view the 3D image (S1300), a step for correcting either the size and/or the position of either the image for the left eye and/or the image for the right eye (S1400-S1700) when the glasses information does not satisfy the appropriate viewing condition (S1300: NO), and a step for outputting the image to the screen (S1800).
    • 提供了一种3D图像显示方法,通过该3D图像显示方法,观看者可以使用用于3D观看的图像流更舒适地观看3D图像。 3D图像显示方法是用于使用屏幕和3D观看眼镜从用于从用于左眼的图像和用于右眼的图像的3D观看的图像流中显示3D图像的3D图像显示装置中使用的方法。 该方法包括以下步骤:作为眼镜信息获取3D观看眼镜相对于屏幕的位置和/或倾斜度(S1200);步骤,用于确定眼镜信息是否满足适当的观看条件 佩戴3D观看眼镜的观看者可以观看3D图像(S1300),用于校正左眼图像和/或右眼图像的尺寸和/或位置的步骤(S1400-S1700 )当眼镜信息不满足适当的观看条件(S1300:否)时,以及将图像输出到画面的步骤(S1800)。