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    • 2. 发明授权
    • Transparent multilayer device
    • 透明多层器件
    • US06565982B1
    • 2003-05-20
    • US08672691
    • 1996-06-28
    • Andrew J. OuderkirkLaurence R. GilbertRichard R. DahlenMichael F. Weber
    • Andrew J. OuderkirkLaurence R. GilbertRichard R. DahlenMichael F. Weber
    • B32B1508
    • B32B17/10018G02B5/282G02B5/305Y10T428/31616Y10T428/31678Y10T428/31681Y10T428/31786
    • A transparent multilayer device which reflects light in the infrared region of the spectrum while transmitting light in the visible region of the spectrum. The device comprises a multilayered polymer film and a transparent conductor. The multilayered polymer film preferably comprises layers of a semi-crystalline naphthalene dicarboxylic acid polyester having an average thickness of not more than 0.5 microns and layers of a second polymer having an average thickness of not more than 0.5 microns. The layers of semi-crystalline naphthalene dicarboxylic acid polyester preferably have a positive stress optical coefficient. The transparent conductor comprises at least one layer containing a metal or a metal compound in which the metal compound is preferably selected from the group consisting of metal oxides, metal alloys, and combinations thereof. Silver and indium tin oxide are particularly preferred transparent conductors. The transparent multilayer devices may be applied to the surface of a glass or plastic substrate, such as an exterior window in a building, or to a windshield or window in an automobile, truck, or aircraft.
    • 透明多层器件,其在光谱的可见光区域中透射光的同时反射光的红外区域中的光。 该装置包括多层聚合物膜和透明导体。 多层聚合物膜优选包含平均厚度不大于0.5微米的半结晶萘二甲酸聚酯层,平均厚度不超过0.5微米的第二聚合物层。 半结晶萘二甲酸聚酯层优选具有正应力光学系数。 透明导体包括至少一层含有金属或金属化合物的层,其中金属化合物优选选自金属氧化物,金属合金及其组合。 银和氧化铟锡是特别优选的透明导体。 透明多层器件可以应用于玻璃或塑料基板的表面,例如建筑物中的外窗,或汽车,卡车或飞机中的挡风玻璃或窗户。
    • 4. 发明授权
    • Metal-coated multilayer mirror
    • 金属多层反射镜
    • US6088163A
    • 2000-07-11
    • US970271
    • 1997-11-14
    • Laurence R. GilbertAndrew J. Ouderkirk
    • Laurence R. GilbertAndrew J. Ouderkirk
    • G02B5/08B32B15/08B32B27/36G02B1/10G02B5/28G02B5/30G02B27/28
    • G02B5/0866B32B27/36G02B27/283G02B5/3033
    • A metal-coated multilayer mirror having high reflectivity and high specularity. The mirror comprises a multilayered polymer film and a reflective metal layer. The multilayered polymer film preferably comprises layers of a crystalline, semi-crystalline, or liquid crystalline material, such as a naphthalene dicarboxylic acid polyester, having an average thickness of not more than 0.5 microns and layers of a second polymer having an average thickness of not more than 0.5 microns. Preferably, the layers of semi-crystalline naphthalene dicarboxylic acid polyester have a positive stress optical coefficient. The reflective metal layer comprises a metal selected from the group consisting of silver, gold, aluminum, nickel, copper, and titanium, with silver and aluminum being particularly preferred. The metal-coated multilayer mirrors are useful in applications requiring broad bandwidth reflection, high specularity, low manufacturing costs, and high reflectivity.
    • 具有高反射率和高镜面度的金属涂层多层反射镜。 反射镜包括多层聚合物膜和反射金属层。 多层聚合物膜优选包括平均厚度不大于0.5微米的结晶,半结晶或液晶材料层,例如萘二甲酸聚酯,平均厚度不为0.5μm的第二聚合物层 大于0.5微米。 优选地,半结晶萘二甲酸聚酯层具有正应力光学系数。 反射金属层包括选自银,金,铝,镍,铜和钛的金属,特别优选银和铝。 金属涂覆的多层反射镜可用于需要宽带宽反射,高镜面反射率,低制造成本和高反射率的应用中。
    • 5. 发明授权
    • Metal-coated multilayer mirror
    • 金属多层反射镜
    • US5699188A
    • 1997-12-16
    • US494418
    • 1995-06-26
    • Laurence R. GilbertAndrew J. Ouderkirk
    • Laurence R. GilbertAndrew J. Ouderkirk
    • G02B5/08B32B15/08B32B27/36G02B1/10G02B5/28G02B5/30G02B27/28
    • G02B5/0866B32B27/36G02B27/283G02B5/3033
    • A metal-coated multilayer mirror having high reflectivity and high specularity. The mirror comprises a multilayered polymer film and a reflective metal layer. The multilayered polymer film preferably comprises layers of a crystalline, semi-crystalline, or liquid crystalline material, such as a naphthalene dicarboxylic acid polyester, having an average thickness of not more than 0.5 microns and layers of a second polymer having an average thickness of not more than 0.5 microns. Preferably, the layers of semi-crystalline naphthalene dicarboxylic acid polyester have a positive stress optical coefficient. The reflective metal layer comprises a metal selected from the group consisting of silver, gold, aluminum, nickel, copper, and titanium, with silver and aluminum being particularly preferred. The metal-coated multilayer mirrors are useful in applications requiring broad bandwidth reflection, high specularity, low manufacturing costs, and high reflectivity.
    • 具有高反射率和高镜面度的金属涂层多层反射镜。 反射镜包括多层聚合物膜和反射金属层。 多层聚合物膜优选包括平均厚度不大于0.5微米的结晶,半结晶或液晶材料层,例如萘二甲酸聚酯,平均厚度不为0.5μm的第二聚合物层 大于0.5微米。 优选地,半结晶萘二甲酸聚酯层具有正应力光学系数。 反射金属层包括选自银,金,铝,镍,铜和钛的金属,特别优选银和铝。 金属涂覆的多层反射镜可用于需要宽带宽反射,高镜面反射率,低制造成本和高反射率的应用中。
    • 7. 发明授权
    • Phosphor reflector assembly for remote phosphor LED device
    • 用于远程荧光粉LED装置的荧光体反射器组件
    • US09028083B2
    • 2015-05-12
    • US13991073
    • 2011-12-19
    • Andrew J. OuderkirkNicholas T. Gabriel
    • Andrew J. OuderkirkNicholas T. Gabriel
    • F21K99/00H01L33/50H01L33/60H01L25/075
    • F21K9/56F21K9/64H01L25/0753H01L33/507H01L33/60H01L2924/0002H01L2924/00
    • Phosphor assemblies include a phosphor layer and a broadband reflector attached to the phosphor layer. The phosphor assembly can be combined with a short wavelength (e.g. blue) emitting LED and other optional components to provide a remote phosphor lighting system. At least some LED light passes through the phosphor layer before reaching the broadband reflector. The broadband reflector provides high reflectivity for both the LED light and the longer wavelength phosphor light. The degree of transparency or of transmission of the phosphor layer to LED light can be tailored to increase the broadband light output of the lighting system. Such increase can actually be achieved by decreasing the amount of phosphor used in the phosphor layer. The single pass transmission T of the phosphor layer to the LED light may be from 30 to 65%, and the reflectivity of the broadband reflector may be at least 90, 94, or 98%.
    • 荧光体组件包括磷光体层和连接到磷光体层的宽带反射器。 荧光体组件可以与短波长(例如蓝色)发射的LED和其它可选组件组合以提供远程磷光体照明系统。 至少一些LED光在到达宽带反射器之前通过荧光体层。 宽带反射器为LED灯和较长波长荧光灯提供高反射率。 可以调整荧光体层对LED光的透明度或透射度,以增加照明系统的宽带光输出。 这种增加实际上可以通过减少荧光体层中使用的荧光体的量来实现。 荧光体层对LED光的单程透射率T可以为30〜65%,宽带反射体的反射率可以为90〜94%〜98%。
    • 9. 发明申请
    • FRONT PROJECTION SCREEN WITH HIGH CONTRAST
    • 具有高对比度的前投影屏幕
    • US20120013851A1
    • 2012-01-19
    • US13143211
    • 2010-01-06
    • YuFeng LiuDavid T. YustMyron K. JordanAndrew J. Ouderkirk
    • YuFeng LiuDavid T. YustMyron K. JordanAndrew J. Ouderkirk
    • G03B21/60G03B21/28G02B5/02
    • G03B21/56
    • A light diffusing optical construction is disclosed. The optical construction includes an asymmetric optical diffuser that scatters light in a first direction with a first viewing angle AH and in a second direction orthogonal to the first direction with a second viewing angle AV. The ratio AH/AV is at least about 2. The optical construction also includes a substantially specular reflector that reflects light that is not scattered by the asymmetric optical diffuser. The substantially specular reflector has a first average reflectance Ro in the visible at a substantially zero incident angle and a second average reflectance R45 in the visible at a substantially 45 degree incident angle. The ratio Ro/R45 is at least about 1.5. The optical construction also includes a light absorbing layer that absorbs light that is not reflected by the specular reflector.
    • 公开了一种光散射光学结构。 该光学结构包括一个不对称的光学漫射器,其以第一视角AH在第一方向上散射光,并在第二方向上以第二视角AV散射光。 比例AH / AV至少为2.光学结构还包括基本上镜面的反射器,其反射不被非对称光学漫射器散射的光。 基本上镜面的反射器在可见光中具有基本为零入射角的第一平均反射率Ro和可见光以大致45度入射角的第二平均反射率R45。 比率Ro / R45至少约为1.5。 光学结构还包括吸收未被镜面反射体反射的光的光吸收层。