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    • 3. 发明授权
    • Method and apparatus for electro-deposition of metal
    • 用于电沉积金属的方法和装置
    • US06814847B1
    • 2004-11-09
    • US10009895
    • 2002-07-08
    • John CutmoreDavid Bailey
    • John CutmoreDavid Bailey
    • C25D100
    • C25C7/08C25C7/06C25D21/12
    • A method and apparatus for maintaining electro-deposition of metal on a cathode in an electrolytic cell. The cell comprises a metal anode, a cathode, an electrolytic bath and a main power supply to apply an electric potential across the anode and cathode resulting in a forward current and deposition of metal from said anode to the cathode. An auxiliary power supply is also provided for connection to the cell. In cases where the mains power supply falls below a predetermined value, the auxiliary power supply maintains a predetermined direction and quantity of current flow in the cell. The auxiliary power supply may be continuous or activated only when the current flow and/or direction of current falls below said predetermined value.
    • 一种用于在电解池中的阴极上维持金属电沉积的方法和装置。 电池包括金属阳极,阴极,电解槽和主电源,以在阳极和阴极上施加电位,导致金属从正极流到阴极的正向电流和沉积。 还提供用于连接到电池的辅助电源。 在主电源低于预定值的情况下,辅助电源维持电池中的预定方向和电流量。 只有当电流和/或电流方向低于所述预定值时,辅助电源可以是连续的或激活的。
    • 7. 发明授权
    • Production of bevelled galvanic structures
    • 生产斜面电偶结构
    • US06383357B1
    • 2002-05-07
    • US09117619
    • 1998-12-29
    • Andreas Maciossek
    • Andreas Maciossek
    • C25D100
    • H01L21/2885C25D1/003C25D1/10G02B26/0833G02B26/0841G03F7/00H05K3/241
    • A three-dimensional formed metallic structure with varying thickness including sloping flanks is formed on a substrate. A conductive layer is applied to the substrate initially, in the form of laterally spaced electrically isolated conductive islands. A cathodic potential is connected to at least one of the islands, leaving others unconnected, and deposition proceeds due to the cathodic potential. As metallic material is deposited and builds up, it eventually contacts adjacent islands, thereby coupling the cathodic potential to a wider area where deposition commences. Deposition is thickest at the at least one island initially coupled to the cathodic potential and thinner progressing away, forming flanks that are linearly sloped, curved or similarly formed by thickness variations the vary proceeding away from the initially coupled island or islands.
    • 在基板上形成包括倾斜侧面的具有变化厚度的三维形成的金属结构。 导电层最初以横向隔开的电隔离导电岛的形式施加到基底。 阴极电势连接到岛中的至少一个,留下其他岛不连接,并由于阴极电位而进行沉积。 随着金属材料的沉积和堆积,其最终接触相邻的岛,从而将阴极电位耦合到较大的沉积开始区域。 沉积在最初耦合到阴极电位的至少一个岛上是最厚的,并且更薄地向外延伸,形成线性倾斜,弯曲或类似地由最初耦合的岛或岛离开的厚度变化形成的侧面。
    • 8. 发明授权
    • Microfabrication process for making microstructures having high aspect ratio
    • 用于制造具有高纵横比的微结构的微加工方法
    • US06251248B1
    • 2001-06-26
    • US09422092
    • 1999-10-15
    • Ching-Bin Lin
    • Ching-Bin Lin
    • C25D100
    • C25D1/00C25D1/20
    • A microfabrication process for making a microstructure product comprises: micromachining a polymer substrate for forming a three-dimensional microstructure pattern with deep cavities; shrinking and minimizing the diameter or width of each cavity of the microstructure pattern by steadily swelling the polymer, which is prefixed on a cathode of an electroforming system, by saturating the electrolyte solution into the polymer; electroforming in the electroforming system electrically connected with an anode and the cathode for filling metal in the cavities in the polymer; and desorption of the electrolyte from the polymer to shrink the polymer to be separated from an electroformed microstructure product, and demolding for obtaining the microstructure product having a high aspect ratio of 100 or even higher. The diameter or width of each cavity is shrunk to be smaller, thereby increasing the aspect ratio of the microstructure product.
    • 用于制造微结构产品的微加工方法包括:微加工聚合物基材以形成具有深空腔的三维微结构图案; 通过使电解质溶液饱和到聚合物中,使聚合物稳定地膨胀并在电铸系统的阴极上预先固定,从而使微结构图案的每个空腔的直径或宽度最小化; 在与阳极和阴极电连接的电铸系统中电铸在聚合物中的空腔中填充金属; 并从聚合物中解吸电解质以收缩待分离的电铸微结构产品的聚合物,以及脱模以获得具有100或更高的高纵横比的微结构产品。 每个空腔的直径或宽度收缩较小,从而增加微结构产品的纵横比。
    • 10. 发明授权
    • Corner insert for edge strips used with modified electrodes for electrolytic processes
    • 与用于电解过程的改性电极一起使用的边缘条的角插入件
    • US06551475B2
    • 2003-04-22
    • US09978798
    • 2001-10-15
    • Michael P. DwyerManuel G. SantoyoDavid WatsonStephen R. Lopez
    • Michael P. DwyerManuel G. SantoyoDavid WatsonStephen R. Lopez
    • C25D100
    • C25C7/02
    • A corner insert for edge strips used with modified electrodes for electrolytic processes. An electrode that is at least partially submerged in an electrolyte is protected by edge strips to prevent depositions and metallic bridges. The edge strips are typically mitered to abut one another at the corners of the electrode and it is difficult to seal this junction. One solution is to remove the corners of the electrode, provide non-mitered edge strips, and close the gap at the corner with an insert adapted to seal to the additional edges of the electrode created by removing the comers. Another solution is to provide a corner insert having one or more anchors for anchoring the corner insert to the electrode and to respective adjacent edge strips, the corner insert sealing against the edge strips and against opposite sides of the electrode whether or not the corner portion has been removed. Yet another solution is to omit an edge strip at the bottom edge of the electrode, and provide an edge strip insert having an anchor for anchoring the edge strip insert to the electrode and to an edge strip which receives the anchor, the edge strip insert for sealingly seating against the edge strip and against opposite sides of the electrode whether or not the corner portion has been removed.
    • 用于边缘条的角插入件,用于电解工艺的改性电极。 至少部分浸没在电解质中的电极被边缘条保护以防止沉积和金属桥。 边缘条通常在电极的角部倾斜以彼此邻接,并且难以密封该接合部。 一种解决方案是去除电极的角部,提供非倾斜的边缘条,并且用适于密封到通过移除拐角而产生的电极的附加边缘的插入件来封闭拐角处的间隙。 另一种解决方案是提供具有一个或多个锚固件的角插入件,用于将拐角插入物固定到电极和相应的相邻边缘条,角插入件密封抵靠边缘条并抵靠电极的相对侧,不管拐角部分是否具有 已被删除 另一种解决方案是在电极的底部边缘处省略边缘条带,并且提供边缘条插入物,其具有锚固件,用于将边缘条插入件固定到电极和接收锚固件的边缘条,边缘条插入件用于 密封地抵靠边缘条并抵靠电极的相对侧,而不管拐角部分是否被去除。