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    • 2. 发明申请
    • Directional Extruded Bead Control
    • 定向挤压珠控制
    • US20100116199A1
    • 2010-05-13
    • US12267069
    • 2008-11-07
    • David K. ForkScott E. Solberg
    • David K. ForkScott E. Solberg
    • B05C1/00
    • H01L21/6715B29C47/0002B29C47/0016B29C47/026B29C47/062B29C47/084B29C47/128B29L2031/06B81B2207/07B81C99/0015
    • A micro-extrusion printhead assembly utilized in a micro-extrusion system to form parallel extruded lines of material on a substrate includes a material feed system for pushing/drawing materials out of extrusion nozzles defined in the printhead assembly, a Z-axis positioning mechanism, and a base. The micro-extrusion printhead includes a layered nozzle structure sandwiched between back and front plate structures. The layered nozzle structure includes stacked plates including top and bottom nozzle plates sandwiching a nozzle outlet plate. According to various embodiments, at least one of the nozzle structure materials of the printhead assembly, the output geometry of the printhead assembly, and the internal conduit geometry of the printhead assembly are modified to cause the bead traveling through the extrusion nozzle to be reliably directed (biased) toward the target substrate as it leaves the printhead nozzle orifice.
    • 用于微挤出系统中的微挤出打印头组件在基板上形成平行的挤出生产线材料包括用于将材料推出/拉出定出在打印头组件中的挤出喷嘴的材料进给系统,Z轴定位机构, 和一个基地。 微挤出打印头包括夹在后板结构和前板结构之间的分层喷嘴结构。 分层喷嘴结构包括堆叠板,其包括夹着喷嘴出口板的顶部和底部喷嘴板。 根据各种实施例,打印头组件的喷嘴结构材料,打印头组件的输出几何形状和打印头组件的内部导管几何形状中的至少一个被修改,以使得通过挤出喷嘴行进的珠子被可靠地定向 (偏压)朝着目标基板离开打印头喷嘴孔。
    • 7. 发明申请
    • Solar Cell With Structured Gridline Endpoints And Vertices
    • 具有结构化网格线端点和顶点的太阳能电池
    • US20120052191A1
    • 2012-03-01
    • US12873473
    • 2010-09-01
    • David K. ForkScott E. Solberg
    • David K. ForkScott E. Solberg
    • B05D5/12B05C9/00
    • H01L31/022425B05C5/0212B05C5/0254B05C5/027B05C5/0291H01L31/18Y02E10/50
    • A micro-extrusion printhead assembly utilized in a micro-extrusion system to form parallel extruded lines of material on a substrate includes a material feed mechanism for pushing/drawing materials out of dispensing orifices defined in the printhead assembly, a Z-axis positioning mechanism, and a base. A production method utilizes the micro-extrusion system to directly print endpoint structures at the end of each gridline, and by extruding these gridlines immediately after forming the busbars. In accordance with an embodiment of the invention, the micro-extrusion system is controlled to manipulate the printhead speed and/or gridline material extrusion pressure at the beginning, middle and end of each gridline printing process such that teardrop-shaped endpoint structures are formed at the ends of each gridline, whereby each endpoint structure has a substantially greater width than that of the main “central” gridline structure extending between the endpoint structures.
    • 用于微挤出系统中的微挤出打印头组件在基板上形成平行的挤出生产线材料包括用于将材料推出/拉出定出在打印头组件中的分配孔的材料进给机构,Z轴定位机构, 和一个基地。 一种生产方法利用微挤压系统在每个网格线的末端直接打印端点结构,并在形成母线之后立即挤压这些网格线。 根据本发明的实施例,控制微挤压系统以在每个网格线印刷过程的开始,中间和结束处操纵打印头速度和/或网格线材料挤出压力,使得泪珠形端点结构形成在 每个网格线的端部,由此每个端点结构具有比在端点结构之间延伸的主“中心”网格线结构的宽度大得多的宽度。
    • 8. 发明申请
    • Solar Cell With Co-Planar Backside Metallization
    • 太阳能电池与共平面背面金属化
    • US20100139754A1
    • 2010-06-10
    • US12331284
    • 2008-12-09
    • Kenta NakayashikiDavid K. ForkScott E. Solberg
    • Kenta NakayashikiDavid K. ForkScott E. Solberg
    • H01L31/00H01L21/00
    • H01L31/022425H01L31/068H01L31/0682H01L31/18Y02E10/547
    • A solar cell includes two backside metallization materials that are simultaneously extrusion deposited on a semiconductor substrate such that both a back surface field (BSF) metal layer (e.g., Al) and a solder pad metal structure (e.g., AgAl) are coplanar and non-overlapping, and the two metals abut each other to form a continuous metal layer that extends over the backside surface of the substrate. In one embodiment, the solder pad metal is formed directly on the backside surface of the substrate, either by co-extruding the two materials in the form of a continuous sheet, or by depositing spaced apart structures that are then flattened to contact each other by way of an air jet device. In another embodiment, the solder pad metal is disposed over a thin layer of the BSF metal (i.e., either disposed directly on the BSF metal, or disposed on an intervening barrier layer) using a co-extrusion head.
    • 太阳能电池包括两个背面金属化材料,其同时挤出沉积在半导体衬底上,使得后表面场(BSF)金属层(例如,Al)和焊盘金属结构(例如,AgAl)都是共面和非平面的, 并且两个金属彼此邻接以形成在衬底的背面延伸的连续金属层。 在一个实施例中,焊盘金属直接形成在衬底的背面上,或者通过将两种材料以连续片材的形式共挤出,或者通过沉积间隔开的结构,然后被平坦化以相互接触,从而通过 喷气装置的方式。 在另一个实施例中,使用共挤出头将焊垫金属设置在BSF金属的薄层上(即,直接设置在BSF金属上,或者设置在中间阻挡层上)。
    • 9. 发明授权
    • Solar cell with structured gridline endpoints vertices
    • 具有结构化网格线端点顶点的太阳能电池
    • US08704086B2
    • 2014-04-22
    • US12873709
    • 2010-09-01
    • David K. ForkScott E. Solberg
    • David K. ForkScott E. Solberg
    • H01L31/0224
    • H01L21/6715H01L31/022425Y02E10/50
    • An H-pattern solar cell structure includes at least one busbar disposed in a first direction on an upper surface of a semiconductor substrate, and parallel gridlines formed on the semiconductor substrate such that each gridline extends over and contacts each busbar, wherein each gridline includes a central gridline portion and at least one endpoint structure disposed on at least one end thereof, the endpoint structure having a nominal width that is at least 1.5 times the width of the central gridline portion. The gridlines are co-extruded with a sacrificial material such that a base portion of each gridline forms a flattened structure with sacrificial material formed thereon. The endpoint structures are formed such that Each central gridline portion forms a raised vertex portion extending upward from the upper surface of each busbar.
    • H图案太阳能电池结构包括在半导体衬底的上表面上沿第一方向布置的至少一个母线和形成在半导体衬底上的并联栅格线,使得每个栅格线延伸并接触每个母线,其中每个栅格线包括 中央网格线部分和至少一个端点结构,其设置在其至少一个端部上,该端点结构的标称宽度为中心网格线部分的宽度的至少1.5倍。 网格线与牺牲材料共挤出,使得每个网格线的基部形成其上形成有牺牲材料的扁平结构。 端点结构形成为使得每个中心网格线部分形成从每个母线的上表面向上延伸的凸起的顶点部分。