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    • 52. 发明授权
    • Electrode formation system for solar cell and electrode formation method for solar cell
    • 太阳能电池用电极形成系统及太阳能电池电极形成方法
    • US08997646B2
    • 2015-04-07
    • US13582881
    • 2011-03-18
    • Tetsuya TanakaYuji Otake
    • Tetsuya TanakaYuji Otake
    • B05C17/04B41M1/12H01L31/18B41F15/08H01L31/0224
    • H01L31/18B41F15/0881H01L31/022425Y02E10/50
    • An electrode formation method for a solar cell to form an electrode of a base member, includes a screen printing process and a baking process. The screen printing process includes: mounting a metal mask on a surface of the base member, wherein the metal mask includes a covering portion configured to cover a part of a surface of the base member, opening portions configured to allow parts of the base member to be exposed therefrom, and bridge portions disposed along a direction intersecting with a longitudinal direction of circuit patterns between the opening portions; and supplying a paste to an upper surface of the metal mask by a squeegee head of a cartridge type, while relatively sliding a squeegee on the upper surface of the metal mask such that the squeegee travels relatively to the metal mask. In the baking process, the paste is baked to form the electrode.
    • 用于形成基底部件的电极的太阳能电池的电极形成方法包括丝网印刷工艺和烘烤处理。 丝网印刷方法包括:将金属掩模安装在基底构件的表面上,其中金属掩模包括构造成覆盖基底构件的表面的一部分的覆盖部分,构造成允许基底构件的部分 以及沿着与开口部之间的电路图案的纵向相交的方向设置的桥接部; 以及通过盒式刮墨头将糊状物提供到金属掩模的上表面,同时相对地在刮板的上表面上滑动刮板,使得刮板相对于金属掩模行进。 在烘烤过程中,将糊料烘烤以形成电极。
    • 54. 发明授权
    • Method of depositing viscous material on a substrate
    • 在基材上沉积粘性物质的方法
    • US08776684B2
    • 2014-07-15
    • US13852522
    • 2013-03-28
    • Illinois Tool Works Inc.
    • Dennis G. Doyle
    • B41L13/18B41F35/00B41F15/40H05K7/02H05K3/12B41M1/12B41F15/12
    • H05K7/02B41F15/12B41M1/12B41P2235/24H05K3/1216
    • A combination stencil printer and dispenser includes a frame, a stencil coupled to the frame, a substrate support coupled to the frame to support a substrate in a print position, and a print head coupled to the frame to deposit and print viscous material over the stencil. In one embodiment, the combination stencil printer and dispenser further includes a cleaning assembly coupled to the frame to wipe excess viscous material from a bottom surface of the stencil. The combination stencil printer and dispenser further includes a dispenser mounted on the cleaning assembly to dispense viscous material on the substrate when the substrate is in the print position. In other embodiments, the dispenser can be mounted on a movable stencil or on an independent gantry provided within the combination stencil printer and dispenser.
    • 组合模版印刷机和分配器包括框架,联接到框架的模板,联接到框架以支撑基板处于打印位置的基板支撑件,以及联接到框架以将粘性材料沉积并印刷在模板上的打印头 。 在一个实施例中,组合模版印刷机和分配器还包括联接到框架的清洁组件以从模板的底表面擦拭多余的粘性材料。 组合模版印刷机和分配器还包括安装在清洁组件上的分配器,以在基板处于打印位置时将粘性材料分配在基板上。 在其他实施例中,分配器可以安装在可移动模板上或设置在组合模版印刷机和分配器内的独立的支架上。
    • 56. 发明授权
    • Screen printing apparatus and screen painting method
    • 丝网印刷设备和丝网印刷方法
    • US08567313B2
    • 2013-10-29
    • US13170537
    • 2011-06-28
    • Tetsuya TanakaSeiichi Miyahara
    • Tetsuya TanakaSeiichi Miyahara
    • B41M1/12B05C17/06
    • H05K3/1233B41F15/26B41P2215/114B41P2215/14H05K2203/0264
    • To provide a screen printing apparatus and a screen printing method which can enhance a plate separating property after a printing operation regardless of a type of a mask, thereby suppressing occurrence of printing failure. A screen printing apparatus includes mask supporting means 6 for supporting a mask 2 from the rear surface thereof, holding means 20 for holding a printing medium 3, posture changing means 30 for changing a posture of the printing medium 3 held by the holding means 20 between a parallel posture parallel to the mask 2 and a tilted posture tilted about the mask 2, and lifting means for lifting the holding means 20 so as to contact and separate the surface of the printing medium 3 with or from the rear surface of the mask 2. Here, the printing medium 3 having been subjected to a pattern printing operation is separated from the mask 2 from one end of the printing medium to the other end thereof. Accordingly, it is possible to enhance a separating property between the printing medium 3 and the mask 2, thereby suppressing occurrence of printing failure.
    • 为了提供丝网印刷装置和丝网印刷方法,其可以在印刷操作之后增强印版分离性能,而与掩模类型无关,从而抑制印刷失败的发生。 丝网印刷装置包括用于从其后表面支撑掩模2的掩模支撑装置6,用于保持打印介质3的保持装置20,用于改变由保持装置20保持的打印介质3的姿势的姿势改变装置30, 平行于掩模2的平行姿势和围绕掩模2倾斜的倾斜姿势;以及提升装置,用于提升保持装置20,以便与打印介质3的表面接触和分离与面罩2的后表面 这里,已经进行图案印刷操作的打印介质3从掩模2从打印介质的一端分离到其另一端。 因此,可以提高打印介质3和掩模2之间的分离性,从而抑制印刷失败的发生。
    • 60. 发明授权
    • Method for the production and control of plates for electronics and related apparatus
    • 电子及相关设备用板的生产和控制方法
    • US08256375B2
    • 2012-09-04
    • US12256767
    • 2008-10-23
    • Andrea Baccini
    • Andrea Baccini
    • B05C13/00B05C13/02B05C21/00B05C11/00B05C11/11B05C17/06B05C17/04B41M1/12B41L13/18B41L27/00B65H1/00
    • G05B19/41875G05B2219/37575G05B2219/45031H01L21/67288Y02P80/40Y02P90/22
    • A method for the production and control of plates for electronics comprising a first step in which a plate is positioned, by means of positioning means, in a loading station; a second step in which the plate is disposed in a deposition station associated with a unit for depositing metal, or other material, in which the metal is deposited on the plate, in order to generate on the plates metal tracks, according to a pre-determined and desired topological disposition; a third step in which the plate is disposed in an exit station and a detection means is activated so as to detect the presence of defects in the plate; and a fourth step in which the plate is discharged from the exit station. In the first step the detection means is activated to identify defects in the plate disposed in the loading station. In the second step the deposition unit is activated in order to deposit the metal on the plate when in the first step the detection means has not detected any defect in the plate.
    • 一种用于生产和控制用于电子器件的板的方法,包括第一步骤,其中通过定位装置将板定位在装载站中; 第二步骤,其中板被布置在与用于沉积金属的单元相关联的沉积站中,或者其中金属沉积在板上的其它材料,以便在板上金属轨道上产生, 确定和期望的拓扑处置; 第三步骤,其中板被设置在出口站中,并且检测装置被激活以便检测板中的缺陷的存在; 以及第四步骤,其中板从出口站排出。 在第一步骤中,检测装置被激活以识别设置在装载站中的板中的缺陷。 在第二步骤中,当在第一步骤中检测装置未检测到板中的任何缺陷时,沉积单元被激活以便将金属沉积在板上。