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    • 73. 发明申请
    • Enhanced light transmission conductive coated transparent substrate and method for making same
    • 增强透光导电涂层透明基板及其制造方法
    • US20010055673A1
    • 2001-12-27
    • US09883654
    • 2001-06-18
    • Catherine A. Getz
    • B05D001/18B05D005/06
    • G02B1/116C03C17/3417C03C2218/365G06F3/041Y10T428/24942
    • A reduced glare, conductive coated panel having increased visible light transmission and suitable for use as a touch screen, digitizer panel or a substrate in an information display includes a transparent substrate, one or more thin film interference layers forming a thin film stack on each of the opposite surfaces of the substrate, and a transparent, electrically conductive coating on the outermost layer of one or both of the thin film stacks. The method preferably includes dipping the substrate in a solution of a precursor for the thin film material at an angle to the vertical and the surface of the solution such that the layer of one side of the substrate has a thickness different from that on the opposite side, curing the layers, and applying the transparent electrically conductive coating thereover.
    • 具有增加的可见光透射率并且适合用作信息显示器中的触摸屏,数字转换器面板或基板的减少的眩光导电涂层面板包括透明基板,在薄板叠层的每一个上形成薄膜叠层的一个或多个薄膜干涉层 衬底的相对表面和在一个或两个薄膜堆叠的最外层上的透明导电涂层。 该方法优选包括将基底浸入薄膜材料的前体与溶液的垂直和表面成一角度的溶液中,使得基底的一侧的层的厚度不同于相对侧的厚度 ,固化层,并在其上涂覆透明导电涂层。
    • 75. 发明授权
    • Anti-reflective composite
    • 防反射复合材料
    • US06266193B1
    • 2001-07-24
    • US09085844
    • 1998-05-28
    • Mohtashim SaifHassan Memarian
    • Mohtashim SaifHassan Memarian
    • G02B110
    • G02B1/116
    • An anti-reflective composite is provided having very high visible light transmission and negligible visible reflectance over 400 nm-800 nm wavelengths. The composite of the invention includes (a) a light transmissive substrate; (b) a hard coat deposited onto the substrate; (c) a thin carbon layer having an average thickness between about 2 Å and about 100 Å; and (d) a plurality of transparent oxide layer pairs deposited onto the thin carbon layer, each transparent oxide layer pair comprising (i) a first transparent oxide having a refractive index between about 1.65 and about 2.65 and an average thickness between about 100 Å and about 3200 Å and (ii) a second transparent oxide layer having a refractive index between about 1.2 and about 1.85, and an average thickness between about 100 Å and about 3200 Å. The composite can also include an intermediate oxide layer disposed between the thin carbon layer and the first transparent oxide layer. Such intermediate oxide layer has a refractive index between about 1.5 and about 2.2 and is between 400 Å and about 1000 Å in thickness. In another preferred embodiment, the composite further comprises an outermost transparent low surface energy layer having a surface energy of less than about 40 dynes/cm. In another preferred embodiment, the transparent layers are deposited by vacuum or non-vacuum processes or by a combination of both processes.
    • 提供了具有非常高的可见光透射率和超过400nm-800nm波长的可忽略的可见反射率的抗反射复合材料。 本发明的复合体包括(a)透光基板; (b)沉积在基材上的硬涂层; (c)平均厚度在约和之间的薄碳层; 和(d)沉积在薄碳层上的多个透明氧化物层对,每个透明氧化物层对包含(i)第一透明氧化物,其折射率介于约1.65至约2.65之间,平均厚度介于约和之间 约3200埃,和(ii)第二透明氧化物层,其折射率介于约1.2至约1.85之间,平均厚度在约至约3200埃之间。 复合材料还可以包括设置在薄碳层和第一透明氧化物层之间的中间氧化物层。 这样的中间氧化物层的折射率在约1.5和约2.2之间,并且在400和大约的厚度之间。 在另一个优选实施方案中,所述复合材料进一步包括表面能小于约40达因/厘米的最外层的透明低表面能层。 在另一个优选的实施方案中,通过真空或非真空方法或两种方法的组合沉积透明层。
    • 77. 发明授权
    • Simple process for anti-reflection coating with multiple metal films
    • 具有多个金属膜的抗反射涂层的简单工艺
    • US5916684A
    • 1999-06-29
    • US995914
    • 1997-12-22
    • Jau-Jier ChuI-Wen Lee
    • Jau-Jier ChuI-Wen Lee
    • G02B1/11B32B17/00
    • G02B1/116Y10T428/31678Y10T428/31692
    • An anti-reflection screen filter is provided that includes four consecutively applied layers to a substrate. A first layer, furthest from the substrate, is arranged on an underlying second layer and comprises an oxide material having a refractive index within the approximating range of 1.46 to 1.50 at a wavelength of 520 nm. The second layer is arranged on an underlying third layer and is formed by a metal having a refractive index within the approximating range of 1.5 to 4.0 at a wavelength of 520 nm. The third layer is arranged on an underlying fourth layer and is formed by a metal having a refractive index within the approximating range of 0.2 to 1.4 at a wavelength of 520 nm. The fourth layer is disposed on the front surface of a substrate and is formed by a metal having a refractive index within the approximating range of 1.5 to 4.0 at a wavelength of 520 nm.
    • 提供了一种防反射屏蔽滤光器,其包括四个连续施加到基板的层。 距离衬底最远的第一层被布置在下面的第二层上,并且包括在520nm的波长处的折射率在1.46至1.50的近似范围内的氧化物材料。 第二层布置在下面的第三层上,并且由在520nm的波长处的折射率在1.5至4.0的近似范围内的金属形成。 第三层布置在下面的第四层上,并且由在520nm的波长处的折射率在0.2至1.4的近似范围内的金属形成。 第四层设置在基板的前表面上,并且由在520nm的波长处的折射率在1.5至4.0的近似范围内的金属形成。