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    • 33. 发明授权
    • Integrated thin-film solar battery
    • 集成薄膜太阳能电池
    • US06294722B1
    • 2001-09-25
    • US09510842
    • 2000-02-23
    • Masataka KondoTakayuki Suzuki
    • Masataka KondoTakayuki Suzuki
    • H01L31042
    • H01L31/18H01L31/046H01L31/0463H01L31/048H01L31/049H01L31/056Y02E10/52
    • A sputtering-deposition method usable in forming on an insulator substrate a film including a conductive layer includes the steps of: preparing a conductive substrate holder in the form of a frame having an opening at its central area and electrically grounded; positioning the insulator substrate to cover the opening of the holder; arranging a flexible spacer on a peripheral edge of the substrate and also superposing a back plate on the spacer to press the substrate against the holder via the spacer; pressing and fixing the back plate to the holder; and then sputtering a separately provided target to deposit a new layer on a region of the substrate exposed in the holder's opening.
    • 可用于在绝缘体基板上形成包括导电层的薄膜的溅射沉积方法包括以下步骤:制备具有在其中心区域处具有开口并且电接地的框架形式的导电基板保持器; 将绝缘体基板定位成覆盖保持器的开口; 在衬底的周边边缘上布置柔性间隔物,并且还将隔板叠置在间隔件上,以通过间隔件将衬底压靠在保持器上; 将背板按压固定到支架上; 然后溅射单独提供的目标,以在暴露在保持器的开口中的基板的区域上沉积新的层。
    • 34. 发明授权
    • Thin film photoelectric conversion module and method of manufacturing the same
    • 薄膜光电转换模块及其制造方法
    • US06288323B1
    • 2001-09-11
    • US09517218
    • 2000-03-02
    • Katsuhiko HayashiHideo Yamagishi
    • Katsuhiko HayashiHideo Yamagishi
    • H01L31042
    • H01L31/186H01L27/1421H01L31/02021H01L31/046Y02E10/50Y02P70/521Y10S136/293
    • The present invention provides a thin film photoelectric conversion module, including a substrate and a plurality of thin film photoelectric conversion cells formed on the substrate and connected to each other in series to form a series-connected array. Where the light to one of the cells is intercepted, the particular cell is prevented from being heated to an excessively high temperature by suppressing the behavior of the cell as a diode through repeatedly applying a reversed bias voltage to each cell, by preventing a large current from flowing through the light-intercepted cell through employing the construction that a plurality of series-connected arrays each having a sufficiently low short-circuit current are connected to each other in parallel or through using a plurality of sub-arrays each having a sufficiently low short-circuit current for forming the series-connected array and connecting bypass diodes to these sub-arrays, respectively, in parallel, or by facilitating occurrence of short-circuiting in the light-intercepted cell through arranging a metal portion that is partly in contact with the thin film photoelectric conversion unit.
    • 本发明提供一种薄膜光电转换模块,其包括基板和形成在基板上的多个薄膜光电转换单元,并且彼此串联连接以形成串联连接的阵列。 在截止到其中一个电池的光的情况下,通过对每个电池反复施加反向的偏置电压,通过抑制电池作为二极管的电池的行为,通过防止大的电流来防止特定的电池被加热到过高的温度 通过采用将具有足够低的短路电流的多个串联连接的阵列并联连接或通过使用多个子阵列,每个子阵列具有足够低的结构,从而流过光截获的单元 用于形成串联阵列并且将旁路二极管分别并联连接到这些子阵列的短路电流,或者通过布置部分接触的金属部分来容易地在光截断的单元中发生短路 与薄膜光电转换单元。
    • 37. 发明授权
    • Substrate and collector grid structures for electrically interconnecting photovoltaic arrays and process of manufacture of such arrays
    • 用于电互连光伏阵列的基板和集电极栅格结构以及这种阵列的制造工艺
    • US06239352B1
    • 2001-05-29
    • US09281656
    • 1999-03-30
    • Daniel Luch
    • Daniel Luch
    • H01L31042
    • H01L31/0508H01L31/0445H01L31/048H01L31/0512Y02E10/50
    • This invention comprises deposition of thin film photovoltaic junctions on metal substrates which can be heat treated following deposition in a continuous fashion without deterioration of the metal support structure. In a separate operation, an interconnection substrate structure is produced in a continuous roll-to-roll fashion. In this way the interconnection substrate structure can be uniquely formulated from polymer-based materials since it does not have to endure high temperature exposure. Cells comprising the metal foil supported photovoltaic junctions are then laminated to the interconnection substrate structure. Conductive interconnections are deposited to complete the array. The conductive interconnections can be accomplished with a separately prepared interconnection component. The interconnected array is produced using continuous roll-to-roll processing which avoids the need to use the expensive and intricate material removal operations currently taught in the art to achieve electrical interconnections among arrays of photovoltaic cells.
    • 本发明包括在金属基底上沉积薄膜光伏结,其可以以连续的方式沉积而不会损坏金属支撑结构而进行热处理。 在单独的操作中,以连续的卷对卷方式生产互连基板结构。 以这种方式,互连衬底结构可以由聚合物基材料独特地配制,因为它不必承受高温暴露。 然后将包含金属箔支撑的光伏结的电池层压到互连衬底结构。 导电互连被沉积完成阵列。 导电互连可以通过单独准备的互连部件实现。 使用连续的卷对卷处理来生产互连的阵列,其避免了使用本领域当前教导的昂贵且复杂的材料去除操作的需要,以实现光伏电池阵列之间的电互连。