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    • 8. 发明申请
    • METHOD OF MANUFACTURING ELECTRICAL CONTACTS OF A SILICON SOLAR CELL STRUCTURE
    • 制造硅太阳能电池结构的电气接触方法
    • WO2011117797A1
    • 2011-09-29
    • PCT/IB2011/051164
    • 2011-03-21
    • ROTH & RAU AGBOEHME, RicoANDRAULT, YoannBUECHEL, ArthurPAPET, Pierre
    • BOEHME, RicoANDRAULT, YoannBUECHEL, ArthurPAPET, Pierre
    • H01L31/0224C25D5/02
    • C25D5/02C25D7/12H01L31/022425H01L31/022466H01L31/1884Y02E10/50
    • The present invention relates to a method of manufacturing at least one electrical contact of a silicon solar cell structure comprising the steps of: providing a silicon substrate (11); forming at least one silicon layer (12, 13) on at least one side of the silicon substrate, wherein the silicon substrate and the silicon layer are doped in such a way that a p-n junction is formed between the silicon substrate and the silicon layer; forming at least one transparent conductive oxide (TCO) layer (14, 15) on the at least one silicon layer; forming a metal oxide or carbide layer (16) on the TCO layer, wherein the metal oxide or carbide layer has a lower conductance than the TCO layer; patterning the metal oxide or carbide layer by laser patterning; and forming at least one metal contact (17) on the patterned metal oxide or carbide layer by single- sided electroplating or by metal printing and firing.
    • 本发明涉及一种制造硅太阳能电池结构的至少一个电接触的方法,包括以下步骤:提供硅衬底(11); 在所述硅衬底的至少一侧上形成至少一个硅层(12,13),其中所述硅衬底和所述硅层以在所述硅衬底和所述硅层之间形成p-n结的方式被掺杂; 在所述至少一个硅层上形成至少一个透明导电氧化物(TCO)层(14,15); 在所述TCO层上形成金属氧化物或碳化物层(16),其中所述金属氧化物或碳化物层具有比所述TCO层低的导电性; 通过激光图案化图案化金属氧化物或碳化物层; 以及通过单面电镀或通过金属印刷和烧制在图案化的金属氧化物或碳化物层上形成至少一个金属接触(17)。
    • 9. 发明申请
    • SOLAR INSTALLATION
    • 太阳能系统
    • WO2010006460A3
    • 2010-07-08
    • PCT/CH2009000253
    • 2009-07-14
    • SOLAR WINGS AGBUECHEL ARTHURBAUMGARTNER FRANZBARTHOLET ROLAND
    • BUECHEL ARTHURBAUMGARTNER FRANZBARTHOLET ROLAND
    • F24J2/54
    • F24J2/5424F24J2/4638F24J2/523F24J2/5241F24J2/541F24J2002/5286F24J2002/5458F24J2002/5468H02S20/10H02S20/32Y02E10/47
    • The invention relates to a solar installation (11) comprising a plurality of solar panels (19) that are suspended in a row between two supporting cables (15, 16). Anchor points (13, 14), at which both of the supporting cables (15, 16) are directly or indirectly anchored, is provided at least in front of and after the row of solar panels. A spacer (17) is provided at least between each row of solar panels (19) and the anchor points (13, 14), said spacers (17) maintaining the supporting cables (15, 16) at a predetermined distance in relation to each other in the region of the rows of solar panels (19). At least one of the spacers (17) is mounted on a support (25) so as to be pivotable about a swivel axis (23), and a pivoting device (27) is provided to secure the spacer (17) and the support (25) at a specific pivoting angle in relation to each other. At least one intermediate fastening device is provided.
    • 本发明涉及一种具有一排两个支撑部件(15,16)悬置太阳能面板(19)之间的多个太阳能装置(11)。 至少前和太阳能电池板的行之后形成,其中,两个支承部(15,16)被直接或间接地锚定的相应的锚固点(13,14)。 至少太阳能电池板的行(19)和所述锚定点之间(13,14)是在给定的(17)设置在相应的间隔件,所述间隔(17),在太阳能电池板的排(19)的区域中的载流线(15,16) 保持彼此的距离。 至少一个间隔件(17)枢转地安装在支撑件(25)围绕枢转轴线(23),和在一定的转动角度彼此有一个枢转装置(27),用于隔离物的定义(17)和支撑件(25)尚未。 的至少一个被布置在所述紧固之间。
    • 10. 发明申请
    • SOLAR CELL MODULE AND METHOD OF ENCAPSULATING SAME
    • 太阳能电池模块及其封装方法
    • WO2006108314A1
    • 2006-10-19
    • PCT/CH2006/000201
    • 2006-04-10
    • UNAXIS BALZERS AGBUECHEL, Arthur
    • BUECHEL, Arthur
    • H01L31/048
    • H01L31/049Y02E10/50
    • A composite solar collection module includes a thin film solar collection cell that is encapsulated between a transparent substrate, such as glass, on one side, and an electrically insulating film on the other. A metallic layer is disposed over the electrically insulating film to provide protection against diffusion of atmospheric species that may harm the thin film solar collection cell. The insulating and metallic layers are dimensioned so that a larger collection cell can be used to collect solar energy over a larger proportion of the available substrate surface area, without causing arcing between the cell edge and the metallic layer edge.
    • 复合太阳能收集模块包括薄膜太阳能收集单元,该薄膜太阳能收集单元封装在一侧的透明基板(例如玻璃)和另一侧上的电绝缘薄膜之间。 金属层设置在电绝缘膜上方,以防止可能损害薄膜太阳能收集池的大气物种的扩散。 绝缘和金属层的尺寸被设计成使得更大的收集单元可用于在可用的基底表面积的较大比例上收集太阳能,而不会在电池边缘和金属层边缘之间产生电弧。