SOLAR ENERGY COLLECTION SYSTEM
    5.
    发明申请
    SOLAR ENERGY COLLECTION SYSTEM 审中-公开
    太阳能收集系统

    公开(公告)号:US20120186626A1

    公开(公告)日:2012-07-26

    申请号:US13014319

    申请日:2011-01-26

    IPC分类号: H01L31/052

    摘要: A solar energy collection system includes a reference member, a support member rotatably mounted relative to the reference member, and a drive system operatively coupled between the reference member and the support member. The drive system includes a linear actuator having a fixed portion operatively connected to the reference member and a strut portion that is selectivity extendable relative to the fixed portion. The strut portion includes an end section. A first connector member is operatively connected between the reference member and the end section of the strut portion, and a second connector member is operatively connected between the support member and the end section of the strut portion. Selective extension and retraction of the strut portion relative to the fixed portion selectively shifts the support member along a desired path.

    摘要翻译: 太阳能收集系统包括参考构件,相对于参考构件可旋转地安装的支撑构件和可操作地联接在参考构件和支撑构件之间的驱动系统。 驱动系统包括线性致动器,其具有可操作地连接到参考构件的固定部分和相对于固定部分选择性延伸的支柱部分。 支柱部分包括端部。 第一连接器构件可操作地连接在参考构件和支柱部分的端部之间,并且第二连接器构件可操作地连接在支撑构件和支柱部分的端部之间。 支柱部分相对于固定部分的选择性延伸和缩回选择性地沿着期望的路径移动支撑构件。

    Grid-line-free contact for a photovoltaic cell
    6.
    发明授权
    Grid-line-free contact for a photovoltaic cell 有权
    光伏电池的无栅极接触

    公开(公告)号:US08115097B2

    公开(公告)日:2012-02-14

    申请号:US12621685

    申请日:2009-11-19

    IPC分类号: H01L31/18 H01L31/00

    摘要: Electrical contact to the front side of a photovoltaic cell is provided by an array of conductive through-substrate vias, and optionally, an array of conductive blocks located on the front side of the photovoltaic cell. A dielectric liner provides electrical isolation of each conductive through-substrate via from the semiconductor material of the photovoltaic cell. A dielectric layer on the backside of the photovoltaic cell is patterned to cover a contiguous region including all of the conductive through-substrate vias, while exposing a portion of the backside of the photovoltaic cell. A conductive material layer is deposited on the back surface of the photovoltaic cell, and is patterned to form a first conductive wiring structure that electrically connects the conductive through-substrate vias and a second conductive wiring structure that provides electrical connection to the backside of the photovoltaic cell.

    摘要翻译: 与光伏电池正面的电接触由导电贯穿衬底通孔的阵列以及可选地位于光伏电池正面的导电块的阵列提供。 电介质衬垫提供每个导电贯穿衬底通孔与光伏电池的半导体材料的电隔离。 在光伏电池的背面上的电介质层被图案化以覆盖包括所有导电贯穿衬底通孔的连续区域,同时暴露光伏电池的背面的一部分。 导电材料层沉积在光伏电池的背表面上,并被图案化以形成第一导电布线结构,其电连接导电贯穿衬底通孔和第二导电布线结构,该第二导电布线结构提供与光伏背面的电连接 细胞。

    GRID-LINE-FREE CONTACT FOR A PHOTOVOLTAIC CELL
    7.
    发明申请
    GRID-LINE-FREE CONTACT FOR A PHOTOVOLTAIC CELL 有权
    光伏电池的免网格联系人

    公开(公告)号:US20100218816A1

    公开(公告)日:2010-09-02

    申请号:US12621685

    申请日:2009-11-19

    IPC分类号: H01L31/00 H01L31/18

    摘要: Electrical contact to the front side of a photovoltaic cell is provided by an array of conductive through-substrate vias, and optionally, an array of conductive blocks located on the front side of the photovoltaic cell. A dielectric liner provides electrical isolation of each conductive through-substrate via from the semiconductor material of the photovoltaic cell. A dielectric layer on the backside of the photovoltaic cell is patterned to cover a contiguous region including all of the conductive through-substrate vias, while exposing a portion of the backside of the photovoltaic cell. A conductive material layer is deposited on the back surface of the photovoltaic cell, and is patterned to form a first conductive wiring structure that electrically connects the conductive through-substrate vias and a second conductive wiring structure that provides electrical connection to the backside of the photovoltaic cell.

    摘要翻译: 与光伏电池正面的电接触由导电贯穿衬底通孔的阵列以及可选地位于光伏电池正面的导电块的阵列提供。 电介质衬垫提供每个导电贯穿衬底通孔与光伏电池的半导体材料的电隔离。 在光伏电池的背面上的电介质层被图案化以覆盖包括所有导电贯穿衬底通孔的连续区域,同时暴露光伏电池的背面的一部分。 导电材料层沉积在光伏电池的背表面上,并被图案化以形成第一导电布线结构,其电连接导电贯穿衬底通孔和第二导电布线结构,该第二导电布线结构提供与光伏背面的电连接 细胞。

    Grid-line-free contact for a photovoltaic cell
    8.
    发明授权
    Grid-line-free contact for a photovoltaic cell 有权
    光伏电池的无栅极接触

    公开(公告)号:US08669466B2

    公开(公告)日:2014-03-11

    申请号:US13364171

    申请日:2012-02-01

    IPC分类号: H01L31/18 H01L31/02

    摘要: Electrical contact to the front side of a photovoltaic cell is provided by an array of conductive through-substrate vias, and optionally, an array of conductive blocks located on the front side of the photovoltaic cell. A dielectric liner provides electrical isolation of each conductive through-substrate via from the semiconductor material of the photovoltaic cell. A dielectric layer on the backside of the photovoltaic cell is patterned to cover a contiguous region including all of the conductive through-substrate vias, while exposing a portion of the backside of the photovoltaic cell. A conductive material layer is deposited on the back surface of the photovoltaic cell, and is patterned to form a first conductive wiring structure that electrically connects the conductive through-substrate vias and a second conductive wiring structure that provides electrical connection to the backside of the photovoltaic cell.

    摘要翻译: 与光伏电池正面的电接触由导电贯穿衬底通孔的阵列以及可选地位于光伏电池正面的导电块的阵列提供。 电介质衬垫提供每个导电贯穿衬底通孔与光伏电池的半导体材料的电隔离。 在光伏电池的背面上的电介质层被图案化以覆盖包括所有导电贯穿衬底通孔的连续区域,同时暴露光伏电池的背面的一部分。 导电材料层沉积在光伏电池的背表面上,并被图案化以形成第一导电布线结构,其电连接导电贯穿衬底通孔和第二导电布线结构,该第二导电布线结构提供与光伏背面的电连接 细胞。

    GRID-LINE-FREE CONTACT FOR A PHOTOVOLTAIC CELL
    9.
    发明申请
    GRID-LINE-FREE CONTACT FOR A PHOTOVOLTAIC CELL 有权
    光伏电池的无线联系

    公开(公告)号:US20120125433A1

    公开(公告)日:2012-05-24

    申请号:US13364171

    申请日:2012-02-01

    IPC分类号: H01L31/0224 H01L31/18

    摘要: Electrical contact to the front side of a photovoltaic cell is provided by an array of conductive through-substrate vias, and optionally, an array of conductive blocks located on the front side of the photovoltaic cell. A dielectric liner provides electrical isolation of each conductive through-substrate via from the semiconductor material of the photovoltaic cell. A dielectric layer on the backside of the photovoltaic cell is patterned to cover a contiguous region including all of the conductive through-substrate vias, while exposing a portion of the backside of the photovoltaic cell. A conductive material layer is deposited on the back surface of the photovoltaic cell, and is patterned to form a first conductive wiring structure that electrically connects the conductive through-substrate vias and a second conductive wiring structure that provides electrical connection to the backside of the photovoltaic cell.

    摘要翻译: 与光伏电池正面的电接触由导电贯穿衬底通孔的阵列以及可选地位于光伏电池正面的导电块的阵列提供。 电介质衬垫提供每个导电贯穿衬底通孔与光伏电池的半导体材料的电隔离。 在光伏电池的背面上的电介质层被图案化以覆盖包括所有导电贯穿衬底通孔的连续区域,同时暴露光伏电池的背面的一部分。 导电材料层沉积在光伏电池的背表面上,并被图案化以形成第一导电布线结构,其电连接导电贯穿衬底通孔和第二导电布线结构,该第二导电布线结构提供与光伏背面的电连接 细胞。

    Solar concentrator cooling by vortex gas circulation
    10.
    发明授权
    Solar concentrator cooling by vortex gas circulation 有权
    太阳能集中器通过涡流气体循环冷却

    公开(公告)号:US08941000B2

    公开(公告)日:2015-01-27

    申请号:US13365306

    申请日:2012-02-03

    IPC分类号: H01L31/052

    摘要: A convective method is employed to cool a solar concentrator device. The convective method employs formation of a vortex gas circulation inside an enclosure of the solar concentrator device, which is bounded by at least one light-path altering component, sidewalls, and a back panel. Optionally, a heat sink assembly can be provided within the enclosure. Internal convention through the vortex gas circulation transfers the heat generated at a photovoltaic cell to all surfaces of the solar concentrator device to facilitate radiative and/or convective cooling at the outside surfaces of the enclosure.

    摘要翻译: 采用对流方法来冷却太阳能集中器装置。 对流方法采用在太阳能集中器装置的外壳内形成涡流气体循环,太阳能集中器装置由至少一个光路改变部件,侧壁和后面板限定。 可选地,可以在外壳内提供散热器组件。 通过涡流气体循环的内部惯例将在光伏电池处产生的热量转移到太阳能集中器装置的所有表面,以便于在外壳的外表面处进行辐射和/或对流冷却。