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    • 2. 发明申请
    • METHOD FOR FABRICATING A SOLAR MODULE OF REAR CONTACT SOLAR CELLS USING LINEAR RIBBON-TYPE CONNECTOR STRIPS AND RESPECTIVE SOLAR MODULE
    • 使用线型带状连接器条和相应的太阳能模块来制造后接触太阳能电池的太阳能模块的方法
    • WO2014041413A1
    • 2014-03-20
    • PCT/IB2013/001964
    • 2013-09-10
    • REC SOLAR PTE. LTD.
    • ROSTAN, Philipp, JohannesWADE, RobertDIESTA, Noel, GonzalesSRIDHARA, Shankar, GauriSØRENG, Anders
    • H01L31/0224H01L31/05H01L31/068
    • H01L31/0516H01L31/0201H01L31/02245H01L31/0508H01L31/0682Y02E10/547
    • A solar module and a method for fabricating a solar module comprising a plurality of rear contact solar cells are described. Rear contact solar cells (1) are provided with a large size of e.g. 156 x 156 mm 2 . Soldering pad arrangements (13, 15) applied on emitter contacts (5) and base contacts (7) are provided with one or more soldering pads (9, 11) arranged linearly. The soldering pad arrangements (13, 15) are arranged asymmetrically with respect to a longitudinal axis (17). Each solar cell (1) is then separated into first and second cell portions (19, 21) along a line (23) perpendicular to the longitudinal axis (17). Due to such cell separation and the asymmetrical design of the soldering pad arrangements (13, 15), the first and second cell portions (19, 21) may then be arranged alternately along a line with each second cell portion (21) arranged in a 180°-orientation with respect to the first cell portions (19) and such that emitter soldering pad arrangements (13) of a first cell portion (19) are aligned with base soldering pad arrangements (15) of neighboring second cell portions (21), and vice versa. Simple linear ribbon-type connector strips (25) may be used for interconnecting the cell portions (19, 21) by soldering onto the underlying aligned emitter and base soldering pad arrangements (13, 15). The interconnection approach enables using standard ribbon-type connector strips (25) while reducing any bow as well as reducing series resistance losses.
    • 描述了一种用于制造包括多个后接触太阳能电池的太阳能模块的太阳能模块和方法。 后接触式太阳能电池(1)具有大尺寸的例如 156×156mm 2 。 施加在发射器触点(5)和基极触点(7)上的焊盘布置(13,15)设置有线性布置的一个或多个焊盘(9,11)。 焊垫装置(13,15)相对于纵向轴线(17)不对称地布置。 然后沿垂直于纵向轴线(17)的线(23)将每个太阳能电池(1)分成第一和第二电池部分(19,21)。 由于这种单元分离和焊盘布置(13,15)的不对称设计,第一和第二单元部分(19,21)然后可以沿着与布置在第一单元部分(21)中的每个第二单元部分 相对于第一单元部分(19)具有180°的取向并且使得第一单元部分(19)的发射极焊盘布置(13)与相邻的第二单元部分(21)的基底焊接焊盘布置(15)对准, ,反之亦然。 简单的线性带状连接条(25)可以用于通过焊接到下面对齐的发射极和基极焊盘设置(13,15)上来互连电池部分(19,21)。 互连方法可以使用标准的带状连接器条(25),同时减少弯曲以及减少串联电阻损耗。