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    • 4. 发明公开
    • Photovoltaic device and method of manufacturing the same
    • Photovoltaische Vorrichtung und Verfahren zu ihrer Herstellung
    • EP2528097A1
    • 2012-11-28
    • EP11167931.2
    • 2011-05-27
    • Nederlandse Organisatie voor Toegepast -Natuurwetenschappelijk Onderzoek TNO
    • Young, Edward Willem Albert
    • H01L27/30
    • H02S40/00H01L27/301H01L31/0504Y02E10/50Y02P70/521
    • A photovoltaic device is presented that comprises a stack of layers including a first electrode layer (40), a second electrode layer (60), and a photo-active layer (50) arranged between the first electrode layer and the second electrode layer. The first electrode layer (40) comprises at least an electric support layer (41) with a first structure of electrically conductive electrode lines (42A, 42B) and with a second structure of electrically conductive collector lines (44A, 44B) that are relatively wide with respect to said electrode lines (42A, 42B). The electrode lines (42A, 42B) and the collector lines (44A, 44B) are arranged in the plane of the electric support layer. The photovoltaic device has a plurality of photovoltaic modules (A, B, ...) that each comprise a respective lateral portion of said stack of layers. A lateral portion comprises a first electrode layer portion (40A, 40B) with an electric support layer portion (41A, 41B) of the first electrode layer (40), comprises a second electrode layer portion (60A, 60B) of the second electrode layer (60), and comprises a photo-active layer portion (50A, 50B) of the photo-active layer (50). The electric support layer portions (41A, 41B) have a respective portion of the first structure and a respective portion of the second structure electrically connected to said respective portion of the first structure. The photovoltaic modules are arranged in a series connection wherein mutually subsequent photovoltaic modules are coupled by an electric connection from a collector line (44A) of a first electrode layer portion (40A) of a first one of said mutually subsequent photovoltaic modules (A) to a second electrode layer portion (60B) of a second one (B) of said mutually subsequent photovoltaic modules. At least one conditional electric bypass element (30) is mounted against the electric support layer (41). The conditional electric bypass element has a first and a second terminal (31, 32) that are respectively connected to a respective collector line (44A, 44B) of mutually different, neighbouring electric support layer portions (41A, 41B). The conditional electric bypass element (30) has a conditionally electrically conductive channel (35) between said first and said second terminal.
    • 提出了一种光伏器件,其包括一叠层,包括第一电极层(40),第二电极层(60)和布置在第一电极层和第二电极层之间的光活性层(50)。 第一电极层(40)至少包括具有导电电极线(42A,42B)的第一结构的电支撑层(41)和具有相对较宽的导电收集线(44A,44B)的第二结构 相对于所述电极线(42A,42B)。 电极线(42A,42B)和集电线(44A,44B)布置在电支撑层的平面中。 光伏器件具有多个光伏模块(A,B,...),每个光伏模块分别包括所述堆叠层的相应侧面部分。 横向部分包括具有第一电极层(40)的电支撑层部分(41A,41B)的第一电极层部分(40A,40B),包括第二电极层的第二电极层部分(60A,60B) (60),并且包括光活性层(50)的光活性层部分(50A,50B)。 电支撑层部分(41A,41B)具有第一结构的相应部分,并且第二结构的相应部分电连接到第一结构的所述相应部分。 光伏模块以串联方式布置,其中相互后续的光伏模块通过电连接从所述相互后续的光伏模块(A)中的第一个光伏模块(A)的第一电极层部分(40A)的集电线(40A)耦合到 所述相互后续光伏模块中的第二电极层(B)的第二电极层部分(60B)。 至少一个有条件的电旁路元件(30)安装在电支撑层(41)上。 条件电旁路元件具有分别连接到相互不同的相邻电支撑层部分(41A,41B)的相应集电线(44A,44B)的第一端子(31,32)。 条件电旁路元件(30)在所述第一端子和所述第二端子之间具有有条件的导电通道(35)。
    • 9. 发明公开
    • Opto-electric device and method for manufacturing the same
    • Optoelektrische Vorrichtung und Verfahren zu deren Herstellung
    • EP2629347A1
    • 2013-08-21
    • EP12155869.6
    • 2012-02-17
    • Nederlandse Organisatie voor Toegepast -Natuurwetenschappelijk Onderzoek TNO
    • van den Brand, JeroenWilson, Joanne Sarahvan Mol, Antonius Maria BernardusHermes, Dorothee ChristineYoung, Edward Willem Albert
    • H01L51/52
    • H01L51/5256H01L33/62H01L51/5203H01L51/5212H01L51/5228H01L51/5234H01L51/5271H01L51/56
    • The opto-electric device (10) comprises an opto-electric layer structure (20) having an anode and a cathode layer (22, 24 resp.) as well as a opto-electric layer (26) arranged between said anode and cathode layers, and having a light-transmission side (28), the cathode layer of said anode and cathode layer being closest to said light-transmission side. A dual electrically conductive layer structure is (40) arranged at a side of said opto-electric layer structure opposite the light-transmission side, the dual electrically conductive layer structure having a first and a second electrically conductive layer (42, 44 resp.) mutually insulated by a first electrically insulating layer (46), the first electrically conductive layer of said first and second electrically conductive layer being closest to the opto-electric layer structure. A second electrically insulating layer (50) is arranged between the light emitting layer structure (20) and the dual electrically conductive layer structure (40), wherein the first electrically conductive layer (42) is electrically connected by at least a first transverse electrical conductor (62) through said second insulating layer with said anode layer (22) and said second electrically conductive layer (44) is electrically connected by at least a second transverse electrical conductor (64) through said first electrically insulating layer (46), said first electrically conductive layer (42), said second electrically insulating layer (50), said anode electrode layer (22) and said light emitting layer (26), with said cathode layer (24).
    • 光电装置(10)包括具有阳极和阴极层(22,24)的光电层结构(20)以及布置在所述阳极层和阴极层之间的光电层(26) ,并具有光透射侧(28),所述阳极和阴极层的阴极层最靠近所述光透射侧。 双重导电层结构(40)布置在所述光电层结构的与光透射侧相对的一侧,所述双重导电层结构具有第一和第二导电层(42,44) 由第一电绝缘层(46)互相绝缘,所述第一和第二导电层的第一导电层最靠近光电层结构。 第二电绝缘层(50)布置在发光层结构(20)和双重导电层结构(40)之间,其中第一导电层(42)通过至少第一横向电导体 (62)通过所述第二绝缘层与所述阳极层(22)和所述第二导电层(44)通过所述第一电绝缘层(46)的至少第二横向电导体(64)电连接,所述第一 导电层(42),所述第二电绝缘层(50),所述阳极电极层(22)和所述发光层(26)与所述阴极层(24)连接。