METHODS FOR MANUFACTURING THREE-DIMENSIONAL METAMATERIAL DEVICES WITH PHOTOVOLTAIC BRISTLES
    2.
    发明申请
    METHODS FOR MANUFACTURING THREE-DIMENSIONAL METAMATERIAL DEVICES WITH PHOTOVOLTAIC BRISTLES 审中-公开
    用光伏玻璃制造三维金属材料器件的方法

    公开(公告)号:US20140264998A1

    公开(公告)日:2014-09-18

    申请号:US13866387

    申请日:2013-04-19

    IPC分类号: H01L31/18

    摘要: Various stamping methods may reduce defects and increase throughput for manufacturing metamaterial devices. Metamaterial devices with an array of photovoltaic bristles, and/or vias, may enable each photovoltaic bristle to have a high probability of photon absorption. The high probability of photon absorption may lead to increased efficiency and more power generation from an array of photovoltaic bristles. Reduced defects in the metamaterial device may decrease manufacturing cost, increase reliability of the metamaterial device, and increase the probability of photon absorption for a metamaterial device. The increase in manufacturing throughput and reduced defects may reduce manufacturing costs to enable the embodiment metamaterial devices to reach grid parity.

    摘要翻译: 各种冲压方法可以减少制造超材料装置的缺陷并提高生产量。 具有光伏刷毛阵列和/或通孔的超材料装置可以使得每个光伏刷毛具有高的光子吸收概率。 光子吸收的高概率可能导致从光伏刷毛阵列增加的效率和更多的发电。 超材料装置中减少的缺陷可能降低制造成本,增加超材料装置的可靠性,并增加超材料装置的光子吸收的可能性。 制造产量的增加和缺陷的减少可能降低制造成本,使得实施例的超材料装置达到电网平价。

    METHODS FOR MANUFACTURING THREE-DIMENSIONAL METAMATERIAL DEVICES WITH PHOTOVOLTAIC BRISTLES
    6.
    发明申请
    METHODS FOR MANUFACTURING THREE-DIMENSIONAL METAMATERIAL DEVICES WITH PHOTOVOLTAIC BRISTLES 审中-公开
    用光伏玻璃制造三维金属材料器件的方法

    公开(公告)号:US20140261648A1

    公开(公告)日:2014-09-18

    申请号:US13830295

    申请日:2013-03-14

    IPC分类号: H01L31/0352 H01L31/18

    摘要: A metamaterial of an array of photovoltaic bristles may enable each photovoltaic bristle to have a high probability of photon absorption. The high probability of photon absorption may lead to increased efficiency and more power generation from an array of photovoltaic bristles. A completed photovoltaic device may benefit from further total efficiency gains by implementing a corrugated structure in the metamaterial and/or an assembled solar panel of metamaterials. Various methods to manufacture these metamaterial devices may include utilize stamping methods, photolithographic techniques, etching techniques, deposition techniques, as well as the creation of vias to form arrays of photovoltaic bristles for the metamaterial photovoltaic devices.

    摘要翻译: 光伏刷毛阵列的超材料可以使每个光伏刷毛具有高的光子吸收概率。 光子吸收的高概率可能导致从光伏刷毛阵列增加的效率和更多的发电。 通过在超材料和/或超材料的组装太阳能电池板中实施波纹结构,完整的光伏器件可以从更多的总效率增益中获益。 用于制造这些超材料装置的各种方法可以包括使用冲压方法,光刻技术,蚀刻技术,沉积技术,以及形成用于超材料光伏器件的光伏刷毛阵列的通路。