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    • 4. 发明申请
    • SOLAR PANEL MODULE AND METHOD FOR MANUFACTURING SUCH A SOLAR PANEL MODULE
    • 太阳能面板模块和制造太阳能面板模块的方法
    • WO2011084053A2
    • 2011-07-14
    • PCT/NL2011/050004
    • 2011-01-05
    • STICHTING ENERGIEONDERZOEK CENTRUM NEDERLANDVan Roosmalen, Johannes Adrianus MariaBronsveld, Paula Catharina Petronella
    • Van Roosmalen, Johannes Adrianus MariaBronsveld, Paula Catharina Petronella
    • H01L27/142
    • H01L31/022441H01L31/03529H01L31/0475H01L31/0747Y02E10/50
    • A solar panel module includes a transparent carrier and semi-conductor substrate portions that have a front surface and a rear surface. The front surface is arranged for capturing radiation energy. The semiconductor substrate portions are arranged adjacent to each other on the transparent carrier and are separated from each other by a groove. Each semiconductor substrate portion is attached with the front surface to the transparent carrier. Each groove includes a side wall of each of the adjacent semiconductor substrate portions. The front surface of each semiconductor substrate portion is provided with a doped layer of a first conductivity type. Each semiconductor substrate portion includes a first electric contact for minority charge carriers and a second electric contact for majority charge carriers in the semiconductor substrate portion. The first electric contact is arranged on at least the rear surface of the semiconductor substrate portion as a heterostructure of a first type. The hetero junction of the first type includes an intrinsic semiconductor layer on the semiconductor substrate portion and a semiconductor layer of a second conductivity type, opposite to the first conductivity type,on top of the intrinsic semiconductor layer.
    • 太阳能电池板模块包括具有前表面和后表面的透明载体和半导体衬底部分。 前表面设置用于捕获辐射能量。 半导体基板部分在透明载体上彼此相邻布置并且通过凹槽彼此分离。 每个半导体衬底部分与前表面连接到透明载体上。 每个凹槽包括每个相邻半导体衬底部分的侧壁。 每个半导体衬底部分的前表面设置有第一导电类型的掺杂层。 每个半导体衬底部分包括用于少数电荷载流子的第一电接触和用于半导体衬底部分中的多数电荷载流子的第二电接触。 第一电触点设置在半导体衬底部分的至少后表面上,作为第一类型的异质结构。 第一类型的异质结在本征半导体层的顶部包括半导体衬底部分上的本征半导体层和与第一导电类型相反的第二导电类型的半导体层。
    • 5. 发明申请
    • SOLAR CELL AND ASSEMBLY OF A PLURALITY OF SOLAR CELLS
    • 太阳能电池和大量太阳能电池组装
    • WO2011031156A1
    • 2011-03-17
    • PCT/NL2010/050584
    • 2010-09-14
    • STICHTING ENERGIEONDERZOEK CENTRUM NEDERLANDVAN ROOSMALEN, Johannes Adrianus Maria
    • VAN ROOSMALEN, Johannes Adrianus Maria
    • H01L31/0224H01L31/05H01L31/068
    • H01L31/02245H01L31/022433H01L31/0516Y02E10/50
    • The invention relates to a solar cell (1), comprising a front side (10) and rear side (20). In use, the front side (10) is turned towards the light, on account of which charge carriers accumulate on the front side (10) and charge carriers of an opposite type accumulate on the rear side (20). The front side (10) is provided with a first pattern (13) of conductive elements (51, 52) which are connected to first contact points (15) on the rear side (20) by means of a number of vias (14) in the solar cell. The rear side (20) is provided with a second pattern of conductive elements (22) which are connected to second contact points (21) on the rear side (20). The first and second contact points (15, 21) are situated along a number of lines (30). The first contact points (15) are situated on a first side of the lines (30) and the second contact points (21) are situated on a second side of the lines (30).
    • 本发明涉及一种包括前侧(10)和后侧(20)的太阳能电池(1)。 在使用中,前侧(10)由于哪个电荷载体积聚在前侧(10)而朝向光转向,并且相反类型的电荷载体积聚在后侧(20)上。 前侧(10)设置有通过多个通孔(14)连接到后侧(20)上的第一接触点(15)的导电元件(51,52)的第一图案(13) 在太阳能电池中。 后侧(20)设置有连接到后侧(20)上的第二接触点(21)的导电元件(22)的第二图案。 第一和第二接触点(15,21)沿着多条线(30)设置。 第一接触点(15)位于线(30)的第一侧上,第二接触点(21)位于线(30)的第二侧。
    • 7. 发明申请
    • SOLAR PANEL MODULE AND METHOD FOR MANUFACTURING SUCH A SOLAR PANEL MODULE
    • 太阳能电池组件和用于制造这种太阳能电池组件的方法
    • WO2011084053A3
    • 2011-12-29
    • PCT/NL2011050004
    • 2011-01-05
    • STICHTING ENERGIEVAN ROOSMALEN JOHANNES ADRIANUS MARIABRONSVELD PAULA CATHARINA PETRONELLA
    • VAN ROOSMALEN JOHANNES ADRIANUS MARIABRONSVELD PAULA CATHARINA PETRONELLA
    • H01L27/142H01L31/0224H01L31/0352
    • H01L31/022441H01L31/03529H01L31/0475H01L31/0747Y02E10/50
    • A solar panel module includes a transparent carrier and semi-conductor substrate portions that have a front surface and a rear surface. The front surface is arranged for capturing radiation energy. The semiconductor substrate portions are arranged adjacent to each other on the transparent carrier and are separated from each other by a groove. Each semiconductor substrate portion is attached with the front surface to the transparent carrier. Each groove includes a side wall of each of the adjacent semiconductor substrate portions. The front surface of each semiconductor substrate portion is provided with a doped layer of a first conductivity type. Each semiconductor substrate portion includes a first electric contact for minority charge carriers and a second electric contact for majority charge carriers in the semiconductor substrate portion. The first electric contact is arranged on at least the rear surface of the semiconductor substrate portion as a heterostructure of a first type. The hetero junction of the first type includes an intrinsic semiconductor layer on the semiconductor substrate portion and a semiconductor layer of a second conductivity type, opposite to the first conductivity type,on top of the intrinsic semiconductor layer.
    • 太阳能板模块包括透明载体和具有前表面和后表面的半导体衬底部分。 前表面被布置用于捕获辐射能量。 半导体衬底部分在透明载体上彼此相邻地布置并且通过凹槽彼此分开。 每个半导体衬底部分以前表面附着到透明载体。 每个凹槽包括每个相邻半导体衬底部分的侧壁。 每个半导体衬底部分的前表面设置有第一导电类型的掺杂层。 每个半导体衬底部分包括用于少数电荷载流子的第一电触点和用于半导体衬底部分中的多数电荷载流子的第二电触点。 第一电触点作为第一类型的异质结构至少设置在半导体衬底部分的后表面上。 第一类异质结包括在本征半导体层上的半导体衬底部分上的本征半导体层和与第一导电类型相反的第二导电类型的半导体层。