PHOTOVOLTAIC MODULE ENCAPSULATION
    2.
    发明申请
    PHOTOVOLTAIC MODULE ENCAPSULATION 审中-公开
    光伏组件封装

    公开(公告)号:WO2017102669A1

    公开(公告)日:2017-06-22

    申请号:PCT/EP2016/080701

    申请日:2016-12-12

    Abstract: There is provided a method of encapsulating a photovoltaic module comprising a plurality of photovoltaic devices. The method comprises forming a wall of compact glass that extends from a periphery of a surface of a first glass sheet to a periphery of an opposing surface of a second glass sheet, the plurality of photovoltaic devices being located within a volume enclosed by the first glass, the second glass sheet and the wall of compact glass, wherein the wall of compact glass is formed from a plurality of courses of glass frit, and sealing the enclosed volume using laser-assisted glass frit bonding.

    Abstract translation: 提供了一种封装包括多个光伏器件的光伏模块的方法。 该方法包括形成从第一玻璃板的表面的外围延伸到第二玻璃板的相对表面的外围的致密玻璃壁,所述多个光生伏打器件位于由第一玻璃 ,第二玻璃板和致密玻璃壁,其中致密玻璃壁由多层玻璃料制成,并且使用激光辅助玻璃料粘合密封封闭容积。

    CONNECTION OF PHOTOACTIVE REGIONS IN AN OPTOELECTRONIC DEVICE
    3.
    发明申请
    CONNECTION OF PHOTOACTIVE REGIONS IN AN OPTOELECTRONIC DEVICE 审中-公开
    光电器件中光电区的连接

    公开(公告)号:WO2015092433A1

    公开(公告)日:2015-06-25

    申请号:PCT/GB2014/053796

    申请日:2014-12-19

    Abstract: An optoelectronic device has a layered construction, comprising a base layer, a first conductive layer, a photoactive layer and a second conductive layer. Plural separation channels extending through the photoactive layer and the first conductive layer separate the photoactive layer into photoactive regions, and insulator material extends through the respective separation channels to the base layer. Between adjacent photoactive regions, electrical connectors extend inside the lateral extent of the insulator material between a surface of a second electrode that is in electrical contact with one photoactive region to an opposing surface of a first electrode that is in electrical contact with the other photoactive region. By forming the electrical connectors extend inside the lateral extent of the insulator material, the overall size of the connection is minimised.

    Abstract translation: 光电子器件具有分层结构,包括基底层,第一导电层,光敏层和第二导电层。 延伸穿过光活性层和第一导电层的多个分离通道将光活性层分离成光活性区域,并且绝缘体材料通过相应的分离通道延伸到基层。 在相邻的光活性区域之间,电连接器在与一个光活性区域电接触的第二电极的表面之间的绝缘体材料的横向范围内延伸到与另一个光活性区域电接触的第一电极的相对表面 。 通过形成电连接器在绝缘体材料的横向范围内延伸,连接的总体尺寸最小化。

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