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    • 12. 发明申请
    • METHODS AND DEVICES FOR LARGE-SCALE SOLAR INSTALLATIONS
    • 大规模太阳能安装的方法和设备
    • US20080041434A1
    • 2008-02-21
    • US11465787
    • 2006-08-18
    • Paul AdrianiMartin Roscheisen
    • Paul AdrianiMartin Roscheisen
    • H01L31/042B23K3/00
    • H01L31/02013B23K31/02B23K2101/18H01L31/048H02S40/36Y02E10/50
    • Methods and devices are provided for improved large-scale solar installations. In one embodiment, a junction-box free photovoltaic module is used comprising of a plurality of photovoltaic cells and a module support layer providing a mounting surface for the cells. The module has a first electrical lead extending outward from one of the photovoltaic cells, the lead coupled to an adjacent module without passing the lead through a junction box. The module may have a second electrical lead extending outward from one of the photovoltaic cells, the lead coupled to another adjacent module without passing the lead through a junction box. Without junction boxes, the module may use connectors along the edges of the modules which can substantially reduce the amount of wire or connector ribbon used for such connections.
    • 提供了改进的大型太阳能装置的方法和装置。 在一个实施例中,使用无接线盒的光伏模块,其包括多个光伏电池和为电池提供安装表面的模块支撑层。 模块具有从一个光伏电池向外延伸的第一电引线,引线耦合到相邻的模块,而不使引线通过接线盒。 该模块可以具有从一个光伏电池向外延伸的第二电引线,该引线耦合到另一个相邻的模块,而不使引线通过接线盒。 没有接线盒,模块可以使用沿着模块边缘的连接器,其可以显着地减少用于这种连接的线或连接器带的数量。
    • 16. 发明授权
    • Method of packaging solar modules
    • 太阳能组件封装方法
    • US07658055B1
    • 2010-02-09
    • US11537657
    • 2006-10-01
    • Paul AdrianiMartin Roscheisen
    • Paul AdrianiMartin Roscheisen
    • B65B5/10B65B23/00
    • B65B23/20B65D85/48
    • Methods and devices are provided for reducing wasted space and capacity in solar module assemblies. In one embodiment, the method comprises mounting a plurality of modules onto at least one support rail to define a solar assembly segment wherein the solar assembly segment has a length of no more than about half the interior length of the shipping container used to ship the segment. The solar modules each have a weight less than about 20 kg and a length between about 1660 mm and about 1666 mm, and a width between about 700 mm and about 706 mm. In one embodiment, the length of the solar modules is limited by the longest support beam that may fit in a shipping container, which in one example is about 11,720 mm. The modules are also limited so that they can be limited to weighing no more than about 20 kg. In one embodiment, the module may be sized to provide at least 80 watts of power at AM 1.5 G. In another embodiment, the module may be sized to provide at least 90 watts of power at AM 1.5 G. In another embodiment, the module may be sized to provide at least 100 watts of power at AM 1.5 G. In another embodiment, the module may be sized to provide at least 110 watts of power at AM 1.5 G.
    • 提供了减少太阳能模块组件浪费的空间和容量的方法和装置。 在一个实施例中,该方法包括将多个模块安装在至少一个支撑轨道上以限定太阳能组件段,其中太阳能组件段的长度不超过用于运送段的运输容器的内部长度的大约一半 。 太阳能模块各自具有小于约20kg的重量和约1660mm至约1666mm之间的长度以及约700mm至约706mm之间的宽度。 在一个实施例中,太阳能模块的长度受到可以装配在运输容器中的最长支撑梁的限制,在一个示例中为约11,720mm。 模块也受到限制,因此它们可以限制在不超过约20kg的重量。 在一个实施例中,模块的尺寸可以设定为在AM1.5G提供至少80瓦的功率。在另一个实施例中,模块的尺寸可以设定为在AM1.5G提供至少90瓦的功率。在另一实施例中,模块 尺寸可以设定为在AM1.5G提供至少100瓦的功率。在另一个实施例中,模块的尺寸可以设定为在AM1.5G提供至少110瓦的功率。