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    • 96. 发明申请
    • BARRIER-LESS METAL SEED STACK AND CONTACT
    • 无障碍金属堆叠和联系
    • WO2015095620A1
    • 2015-06-25
    • PCT/US2014/071320
    • 2014-12-18
    • SUNPOWER CORPORATION
    • AGRAWAL, MukulRIM, SeungCUDZINOVIC, Michael
    • H01L31/0224H01L31/18
    • H01L31/02008H01L31/022441H01L31/03682H01L31/0682H01L31/0745H01L31/0747Y02E10/547
    • Approaches for forming barrier-less seed stacks and contacts are described. In an example, a solar cell includes a substrate and a conductive contact disposed on the substrate. The conductive contact includes a copper layer directly contacting the substrate. In another example, a solar cell includes a substrate and a seed layer disposed directly on the substrate. The seed layer consists essentially of one or more non-diffusion-barrier metal layers. A conductive contact includes a copper layer disposed directly on the seed layer. An exemplary method of fabricating a solar cell involves providing a substrate, and forming a seed layer over the substrate. The seed layer includes one or more non-diffusion-barrier metal layers. The method further involves forming a conductive contact for the solar cell from the seed layer.
    • 描述了形成无障碍种子堆叠和接触的方法。 在一个示例中,太阳能电池包括设置在基板上的基板和导电触头。 导电接触包括直接接触基底的铜层。 在另一示例中,太阳能电池包括基板和直接设置在基板上的籽晶层。 种子层基本上由一个或多个非扩散阻挡金属层组成。 导电接触包括直接设置在籽晶层上的铜层。 制造太阳能电池的示例性方法包括提供衬底,并在衬底上形成晶种层。 种子层包括一个或多个非扩散阻挡金属层。 该方法还包括从种子层形成用于太阳能电池的导电接触。
    • 99. 发明申请
    • SOLAR CELL EMITTER REGION FABRICATION USING SELF-ALIGNED IMPLANT AND CAP
    • 太阳能电池发射极区域使用自对准的植入物和盖
    • WO2015088782A1
    • 2015-06-18
    • PCT/US2014/067497
    • 2014-11-25
    • SUNPOWER CORPORATION
    • WEIDMAN, Timothy
    • H01L31/18H01L31/04
    • H01L31/022433H01L31/02167H01L31/022441H01L31/028H01L31/035272H01L31/03682H01L31/04H01L31/068H01L31/182H01L31/1876Y02E10/546Y02E10/547Y02P70/521
    • Methods of fabricating solar cell emitter regions using self-aligned implant and cap, and the resulting solar cells, are described. In an example, a method of fabricating an emitter region of a solar cell involves forming a silicon layer above a substrate. The method also involves implanting, through a stencil mask, dopant impurity atoms in the silicon layer to form implanted regions of the silicon layer with adjacent non-implanted regions. The method also involves forming, through the stencil mask, a capping layer on and substantially in alignment with the implanted regions of the silicon layer. The method also involves removing the non-implanted regions of the silicon layer, wherein the capping layer protects the implanted regions of the silicon layer during the removing. The method also involves annealing the implanted regions of the silicon layer to form doped polycrystalline silicon emitter regions.
    • 描述了使用自对准植入物和盖子制造太阳能电池发射极区域的方法,以及所得到的太阳能电池。 在一个实例中,制造太阳能电池的发射极区域的方法包括在衬底上形成硅层。 该方法还涉及通过模板掩模注入硅层中的掺杂剂杂质原子以形成具有相邻非注入区域的硅层的注入区域。 该方法还涉及通过模板掩模形成在硅层的注入区域上并基本上与硅层的注入区域基本上对准的覆盖层。 该方法还涉及去除硅层的非注入区域,其中封盖层在去除期间保护硅层的注入区域。 该方法还包括退火硅层的注入区域以形成掺杂的多晶硅发射极区域。
    • 100. 发明申请
    • ALIGNMENT FOR METALLIZATION
    • 金属化对准
    • WO2015048351A1
    • 2015-04-02
    • PCT/US2014/057553
    • 2014-09-25
    • SUNPOWER CORPORATION
    • TU, Xiuwen
    • H01L31/18H01L31/0224
    • H01L31/0201H01L31/0203H01L31/022441H01L31/0516H01L31/18Y02E10/50
    • Forming a metal layer on a solar cell. Forming a metal layer can include placing a patterned metal foil on the solar cell, where the patterned metal foil includes a positive busbar, a negative busbar, a positive contact finger extending from the positive busbar, a negative contact finger extending from the negative busbar, a metal strip, and one or more tabs. The positive and negative busbars and the positive and negative contact fingers can be connected to one another by the metal strip and tabs. Forming the metal layer can further include coupling the patterned metal foil to the solar cell and removing the metal strip and tabs. Removing the metal strip and tabs can separate the positive and negative busbars and contact fingers.
    • 在太阳能电池上形成金属层。 形成金属层可以包括将图案化金属箔放置在太阳能电池上,其中图案化金属箔包括正母线,负母线,从正母线延伸的正接触指,从负母线延伸的负接触指, 金属条,以及一个或多个标签。 正负母线和正负接触指可以通过金属带和接片彼此连接。 形成金属层可以进一步包括将图案化的金属箔耦合到太阳能电池并移除金属条和突片。 拆下金属条和标签可以分离正母线和负母线和接触指。