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    • 33. 发明授权
    • Mirror reflective element assembly
    • 镜面反光元件装配
    • US07274501B2
    • 2007-09-25
    • US10528269
    • 2003-09-19
    • Ian A. McCabeHamid HabibiDesaraju V. VaraprasadNiall R. Lynam
    • Ian A. McCabeHamid HabibiDesaraju V. VaraprasadNiall R. Lynam
    • G02F1/15
    • G02B5/0858B60R1/12B60R2001/1215G02F1/157
    • A mirror assembly for a vehicle includes a mirror element having at least one substrate that has a forward surface and a rearward surface. The mirror element comprises at least one substantially reflective metallic layer sandwiched between a respective pair of substantially transparent non-metallic layers. Each of the substantially transparent non-metallic layers and the substantially reflective metallic layer have a selected refractive index and a selected physical thickness such that the reflective element is selectively spectrally tuned to substantially transmit at least one preselected spectral band of radiant energy therethrough while substantially reflecting other radiant energy. A radiant energy emitting element is disposed at or near the rearward surface of the at least one substrate. The radiant energy emitting element is configured to emit radiant energy with a peak intensity within the at least one preselected spectral band.
    • 用于车辆的镜组件包括具有至少一个具有前表面和后表面的基底的反射镜元件。 镜子元件包括夹在相应的一对基本上透明的非金属层之间的至少一个基本上反射的金属层。 基本上透明的非金属层和基本上反射的金属层中的每一个具有选定的折射率和选定的物理厚度,使得反射元件被选择性地光谱调谐以基本上透射至少一个预选的辐射能量谱带,同时基本上反射 其他辐射能量。 辐射能发射元件设置在所述至少一个衬底的后表面处或附近。 辐射能发射元件被配置为发射具有至少一个预选光谱带内的峰值强度的辐射能。
    • 40. 发明授权
    • Display-on-demand mirror with optional defogging feature, and method of making the same
    • 具有可选除雾功能的按需显示器,以及制作相同的方法
    • US08304072B2
    • 2012-11-06
    • US12285514
    • 2008-10-07
    • Desaraju V. VaraprasadYiwei Lu
    • Desaraju V. VaraprasadYiwei Lu
    • C03C17/36
    • B32B17/10036B32B17/10174B32B17/10761C03C17/36C03C17/3615C03C17/3649C03C17/3663H05B3/84Y10T428/265
    • Certain example embodiments relate to robust semi-transparent coatings that are suitable for use in a wide variety of display-on-demand mirror applications, and methods of making the same. In certain example embodiments, a coated article includes a coating supported by a glass substrate. A reflective metal-inclusive layer is formed, directly or indirectly, on the glass substrate. A silicon oxide inclusive layer is formed, directly or indirectly, on the reflective metallic layer. A titanium oxide inclusive layer is formed, directly or indirectly, on the silicon oxide inclusive layer. The metal-inclusive layer is formed so as to reflect incoming light away from the glass substrate such that substantially less incoming light would be reflected away from the glass substrate if lighting were provided on a side of the glass substrate opposite the coating than if no lighting were provided. The surface of the coated article need not necessarily be conductive. The metal-inclusive layer may be connected to a power source so as to heat it (e.g., for defogging purposes).
    • 某些示例性实施例涉及适用于各种按需显示屏镜面应用中的稳健半透明涂层及其制造方法。 在某些示例性实施例中,涂覆制品包括由玻璃基板支撑的涂层。 直接或间接地在玻璃基板上形成反射性含金属层。 直接或间接地在反射金属层上形成包含氧化硅的层。 包含氧化钛的层直接或间接地形成在含氧化硅的层上。 包含金属的层被形成为将入射光反射离开玻璃基板,使得如果在玻璃基板的与涂层相对的一侧上设置照明而不是没有照明的情况下将基本上较少的入射光反射离开玻璃基板 被提供。 涂覆制品的表面不一定是导电的。 包含金属的层可以连接到电源以加热它(例如,为了除雾目的)。