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    • 3. 发明申请
    • HERMETICALLY SEALED SOLAR CELLS
    • 密封密封太阳能电池
    • US20100132765A1
    • 2010-06-03
    • US12649147
    • 2009-12-29
    • Brian H. CumpstonBenyamin Buller
    • Brian H. CumpstonBenyamin Buller
    • H01L31/042H01L31/00
    • H01L31/035281H01L31/048H01L31/0481Y02E10/50
    • An elongated solar cell unit comprising (i) a substrate, (ii) one or more solar cells disposed on the substrate, (iii) a transparent casing disposed onto the one or more solar cells, the transparent nonplanar casing having a first end and a second end; and (iv) a first sealant cap that is hermetically sealed to the first end of the transparent nonplanar casing is provided. A solar cell unit comprising (i) a substrate, (ii) one or more bifacial or omnifacial solar cells disposed on the substrate, (iii) a transparent casing disposed onto the one or more bifacial or omnifacial solar cells, the transparent nonplanar casing having a first end and a second end and (iv) a first sealant cap that is hermetically sealed to the first end of the transparent nonplanar casing is provided.
    • 一种细长的太阳能电池单元,包括(i)衬底,(ii)设置在衬底上的一个或多个太阳能电池,(iii)设置在所述一个或多个太阳能电池上的透明壳体,所述透明非平面壳体具有第一端和 第二端 和(iv)设置密封到透明非平面壳体的第一端的第一密封帽。 一种太阳能电池单元,包括(i)基板,(ii)设置在基板上的一个或多个双面或全方位太阳能电池,(iii)设置在所述一个或多个双面或全方位太阳能电池上的透明壳体,所述透明非平面壳体具有 提供第一端和第二端,以及(iv)密封到透明非平面壳体的第一端的第一密封帽。
    • 4. 发明申请
    • Hermetically sealed cylindrical solar cells
    • 密封圆柱形太阳能电池
    • US20100326429A1
    • 2010-12-30
    • US11437928
    • 2006-05-19
    • Brian H. CumpstonBenyamin Buller
    • Brian H. CumpstonBenyamin Buller
    • F24J2/46B23P17/00
    • H01L31/035281H01L31/046H01L31/048Y02E10/50Y10T29/4998
    • A cylindrical shaped solar cell having a water vapor transmission rate of 10−4 g/m2·day or less is provided. The cylindrical shaped solar cell unit comprises a substrate that is either (i) tubular shaped or (ii) rigid solid rod shaped, a back-electrode circumferentially disposed on the substrate, a semiconductor junction layer circumferentially disposed on the back-electrode, and a transparent conductive layer circumferentially disposed on the semiconductor junction. A transparent tubular casing is circumferentially disposed onto the cylindrical shaped solar cell. A first sealant cap is hermetically sealed to a first end of the transparent tubular casing. A second sealant cap is hermetically sealed to a second end of the transparent tubular casing. In some instances, the solar cell unit is a monolithically integrated arrangement of solar cells. In some instances, the solar cell unit is a solar cell.
    • 提供了水蒸汽透过率为10-4g / m 2·天或更少的圆筒形太阳能电池。 圆柱形太阳能电池单元包括(i)管状或(ii)刚性实心棒状基板,周向设置在基板上的背电极,周向设置在背电极上的半导体接合层,以及 周向设置在半导体结上的透明导电层。 圆柱形太阳能电池周向地设置透明管状外壳。 第一密封帽被密封到透明管状壳体的第一端。 第二密封剂盖气密地密封到透明管状壳体的第二端。 在一些情况下,太阳能电池单元是太阳能电池的整体集成布置。 在一些情况下,太阳能电池单元是太阳能电池。
    • 7. 发明申请
    • Volume Compensation Within a Photovoltaic Device
    • 光伏器件内的体积补偿
    • US20100147367A1
    • 2010-06-17
    • US12598129
    • 2008-04-29
    • Brian H. CumpstonTim LeongThomas P. Frangesh
    • Brian H. CumpstonTim LeongThomas P. Frangesh
    • H01L31/00
    • H01L31/02008H01L31/022425H01L31/035281H01L31/0392H01L31/03923H01L31/03925H01L31/048Y02E10/541
    • A photovoltaic device having (i) an outer transparent casing, (ii) a substrate, the substrate and the outer transparent casing defining an inner volume, (iii) at least one solar cell on the substrate, (iv) a filler layer sealing the at least one solar cell and (v) a container within the inner volume is provided. The container decreases in volume when the filler layer expands, and increases in volume when the filler layer contracts. In some instances, the container is sealed and has a plurality of ridges. In some instances, the container has an opening that is sealed by a spring loaded seal. In some instances, the container has a first opening and a second opening, where the first opening is sealed by a first spring loaded seal and the second opening is sealed by a second spring loaded seal. In some instances, the container has an elongated asteroid shape.
    • 一种光电器件,其具有(i)外部透明壳体,(ii)衬底,所述衬底和所述外部透明壳体限定内部体积,(iii)所述衬底上的至少一个太阳能电池,(iv)填充层, 提供至少一个太阳能电池和(v)内部容积内的容器。 当填料层膨胀时,容器体积减小,填料层收缩时容器体积增加。 在一些情况下,容器被密封并且具有多个脊。 在一些情况下,容器具有由弹簧加载的密封件密封的开口。 在一些情况下,容器具有第一开口和第二开口,其中第一开口由第一弹簧加载的密封件密封,并且第二开口由第二弹簧加载的密封件密封。 在一些情况下,容器具有细长的小行星形状。
    • 8. 发明授权
    • Volume compensation within a photovoltaic device
    • 光伏器件内的体积补偿
    • US08093493B2
    • 2012-01-10
    • US11998780
    • 2007-11-30
    • Brian H. CumpstonTim LeongThomas P. Frangesh
    • Brian H. CumpstonTim LeongThomas P. Frangesh
    • H02N6/00H01L31/042H01L31/00
    • H01L31/02008H01L31/022425H01L31/035281H01L31/0392H01L31/03923H01L31/03925H01L31/048Y02E10/541
    • A photovoltaic device having (i) an outer transparent casing, (ii) a substrate, the substrate and the outer transparent casing defining an inner volume, (iii) at least one solar cell on the substrate, (iv) a filler layer sealing the at least one solar cell and (v) a container within the inner volume is provided. The container decreases in volume when the filler layer expands, and increases in volume when the filler layer contracts. In some instances, the container is sealed and has a plurality of ridges. In some instances, the container has an opening that is sealed by a spring loaded seal. In some instances, the container has a first opening and a second opening, where the first opening is sealed by a first spring loaded seal and the second opening is sealed by a second spring loaded seal. In some instances, the container has an elongated asteroid shape.
    • 一种光电器件,其具有(i)外部透明壳体,(ii)衬底,所述衬底和所述外部透明壳体限定内部体积,(iii)所述衬底上的至少一个太阳能电池,(iv)填充层, 提供至少一个太阳能电池和(v)内部容积内的容器。 当填料层膨胀时,容器体积减小,填料层收缩时容器体积增加。 在一些情况下,容器被密封并且具有多个脊。 在一些情况下,容器具有由弹簧加载的密封件密封的开口。 在一些情况下,容器具有第一开口和第二开口,其中第一开口由第一弹簧加载的密封件密封,并且第二开口由第二弹簧加载的密封件密封。 在一些情况下,容器具有细长的小行星形状。
    • 9. 发明授权
    • Method and apparatus for optical data storage using non-linear heating by excited state absorption for the alteration of pre-formatted holographic gratings
    • 用于通过激发态吸收的非线性加热来改变预格式化全息光栅的光学数据存储的方法和装置
    • US06322931B1
    • 2001-11-27
    • US09364271
    • 1999-07-29
    • Brian H. CumpstonJoseph W. PerrySeth R. Marder
    • Brian H. CumpstonJoseph W. PerrySeth R. Marder
    • G03H112
    • B82Y10/00G02F1/3523G11B7/0045G11B7/00455G11B7/0065G11B7/245
    • The present invention comprises an optical data storage system utilizing a host material and molecules that exhibit non-linear absorption dissolved therein. The non-linear absorbing molecules allow for energy in the form of heat to be generated during the optical data storage process. This heat provides for localized alterations to occur in the pre-formatted holographic grating. The non-linear feature of these molecules allow for alterations to occur at specific depths and locations within the storage medium while limiting the secondary effects on other locations within the storage medium. The molecules exhibiting non-linear absorption may be selected from the group of molecules exhibiting two-photon absorption or reverse saturable absorption. The invention also comprises a method for preparing the optical storage medium, an optical data storage device comprising the optical data storage medium and having a format hologram stored within the medium. Additionally, the invention comprises an optical data storage system and method for use thereof wherein the storage system uses the optical data storage medium described above when altering a pre-formatted holographic grating in a localized region by non-linear thermal disruption of the grating. Another embodiment of the present invention comprises an optical data retrieval system embodying the optical data storage device described above and a method for retrieving the format hologram stored on the optical data storage device of the present invention.
    • 本发明包括利用主体材料的光学数据存储系统和在其中显示非线性吸收的分子。 非线性吸收分子允许在光学数据存储过程期间产生热的能量。 该热量提供在预格式化全息光栅中发生的局部变化。 这些分子的非线性特征允许在存储介质中的特定深度和位置处发生变化,同时限制对存储介质内的其它位置的二次效应。 显示非线性吸收的分子可以选自呈现双光子吸收或反饱和吸收的分子组。 本发明还包括一种用于制备光学存储介质的方法,包括光学数据存储介质并且具有存储在介质内的格式全息图的光学数据存储设备。 另外,本发明包括光学数据存储系统及其使用方法,其中当通过光栅的非线性热破坏来改变局部区域中的预格式化全息光栅时,存储系统使用上述光学数据存储介质。 本发明的另一实施例包括体现上述光学数据存储装置的光学数据检索系统以及用于检索存储在本发明的光学数据存储装置上的格式全息图的方法。
    • 10. 发明申请
    • SEALED PHOTOVOLTAIC APPARATUS
    • 密封光伏设备
    • US20100132794A1
    • 2010-06-03
    • US12444583
    • 2007-10-04
    • Brian H. Cumpston
    • Brian H. Cumpston
    • H01L31/0203H01L31/18
    • A61K31/7135H01L31/048Y02E10/50
    • An assembly for producing photovoltaic electricity has an outer assembly having at least one portion transparent to light energy. The outer assembly defines an inner volume. The outer assembly can be made of a first structural member having an opening to an external environment, where the opening is defined by at least one edge. The outer assembly also has a second structural member with a recess that corresponds to the edge at the opening. In this manner the edge of the first structural member conjoins with the corresponding recess of the second structural member, and the edge is conjoined to the corresponding recess with a seal. One or more photovoltaic devices are disposed within the inner assembly volume. Each such photovoltaic device is operable to receive the light and produce photovoltaic electricity in response to it.
    • 用于生产光伏电力的组件具有至少一部分对光能透明的部分的外部组件。 外部组件定义内部体积。 外部组件可以由具有到外部环境的开口的第一结构构件制成,其中开口由至少一个边缘限定。 外部组件还具有第二结构构件,其具有对应于开口处的边缘的凹部。 以这种方式,第一结构构件的边缘与第二结构构件的相应凹部结合,并且边缘通过密封件结合到相应的凹部。 一个或多个光伏器件设置在内部组件体积内。 每个这样的光伏器件可操作以响应于光而接收光并产生光伏电力。