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    • 6. 发明申请
    • FLAT-PLATE PHOTOVOLTAIC MODULE
    • 平板光伏模块
    • WO2009092111A8
    • 2010-08-26
    • PCT/US2009031597
    • 2009-01-21
    • TENKSOLAR INCMEYER DALLAS W
    • MEYER DALLAS W
    • H01L31/042
    • H01L31/02008H01L31/02021H01L31/035281H01L31/048H01L31/049H01L31/0547H02S40/32H02S40/42Y02E10/52
    • One example embodiment includes a PV module comprising a conductive backsheet, a non-conductive layer disposed on the conductive backsheet, a plurality of PV cells arranged in rows and collectively generating a first power output characterized by a first voltage, and a power conversion device. Each of the rows can include two or more PV cells. The PV cells within each row can be connected to each other in parallel. The rows can be connected in series. A top row can be connected to the conductive backsheet. The power conversion device can be redundantly connected to a bottom row and to the conductive backsheet to form a complete circuit. The power conversion device can convert the first power output to a second power output characterized b a second voltage that is larger than the first voltage. The power conversion device can also maintain peak power of the PV cells.
    • 一个示例实施例包括PV模块,其包括导电底片,设置在导电底片上的非导电层,排列成行并共同产生以第一电压为特征的第一功率输出的多个PV电池以及功率转换装置。 每行可以包括两个或更多个PV电池。 每行中的PV电池可以并联连接。 这些行可以串联连接。 顶排可以连接到导电底片。 电力转换装置可以冗余地连接到底行和导电底片以形成完整的电路。 功率转换装置可以将第一功率输出转换成特征为b的第二功率输出,其大于第一电压的第二电压。 电力转换装置还可以保持PV电池的峰值功率。
    • 7. 发明申请
    • FLAT-PLATE PHOTOVOLTAIC MODULE
    • 平板式光伏模块
    • WO2009092111A3
    • 2009-11-19
    • PCT/US2009031597
    • 2009-01-21
    • TENKSOLAR INCMEYER DALLS W
    • MEYER DALLS W
    • H01L31/042
    • H01L31/02008H01L31/02021H01L31/035281H01L31/048H01L31/049H01L31/0547H02S40/32H02S40/42Y02E10/52
    • One example embodiment includes a PV module comprising a conductive backsheet, a non-conductive layer disposed on the conductive backsheet, a plurality of PV cells arranged in rows and collectively generating a first power output characterized by a first voltage, and a power conversion device. Each of the rows can include two or more PV cells. The PV cells within each row can be connected to each other in parallel. The rows can be connected in series. A top row can be connected to the conductive backsheet. The power conversion device can be redundantly connected to a bottom row and to the conductive backsheet to form a complete circuit. The power conversion device can convert the first power output to a second power output characterized b a second voltage that is larger than the first voltage. The power conversion device can also maintain peak power of the PV cells.
    • 一个示例实施例包括PV模块,其包括导电背板,设置在导电背板上的非导电层,多个排列成行且共同产生以第一电压为特征的第一功率输出的PV电池,以及功率转换装置。 每个行可以包括两个或更多个PV电池。 每行内的光伏电池可以并联连接。 行可以串联连接。 顶行可以连接到导电底片。 功率转换装置可以冗余地连接到底部行和导电背板以形成完整的电路。 功率转换装置可以将第一功率输出转换成以大于第一电压的第二电压为特征的第二功率输出。 功率转换装置还可以保持PV电池的峰值功率。
    • 8. 发明申请
    • REDUNDANT ELECTRICAL ARCHITECTURE FOR PHOTOVOLTAIC MODULES
    • 光伏模块的冗余电子结构
    • WO2009092110A2
    • 2009-07-23
    • PCT/US2009031596
    • 2009-01-21
    • TENKSOLAR INCMEYER DALLAS W
    • MEYER DALLAS W
    • H01L31/042
    • H01L31/02008H01L31/02021Y02E10/50
    • One example embodiment includes a PV module comprising a conductive backsheet, a substantially transparent front plate, a plurality of PV cells, a plurality of conductive spacers, and a power conversion device. The PV cells can be disposed between the conductive backsheet and the front plate and can be arranged in a plurality of rows. The PV cells within each row can be connected to each other in parallel and the rows can be connected in series. The PV cells can be interconnected between the conductive spacers. The power conversion device can be redundantly connected to the PV cells via a last conductive spacer connected to a last row. The power conversion device can substantially maintain a maximum peak power of the PV module and can convert a lower voltage collectively generated by the PV cells to a predetermined stepped up voltage greater than or equal to 12 volts.
    • 一个示例实施例包括PV模块,该PV模块包括导电背板,基本透明的前板,多个PV电池,多个导电垫片和电力转换装置。 PV电池可以布置在导电底片和前板之间并且可以布置成多行。 每行内的光伏电池可以并联连接,行可以串联连接。 PV电池可以在导电垫片之间互连。 功率转换装置可以通过连接到最后一行的最后一个导电隔离物冗余地连接到PV电池。 功率转换装置可以基本上保持PV模块的最大峰值功率,并且可以将由PV电池共同生成的较低电压转换为大于或等于12伏的预定升高电压。