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    • 1. 发明授权
    • Solid electrolytic condenser with enhanced volumetric efficiency
    • 具有提高体积效率的固体电解电容器
    • US08411417B2
    • 2013-04-02
    • US12761434
    • 2010-04-16
    • Jae Kwang KimKwan Hyeong KimJun Suk JungJae Yik HowangChong Hoon PakJae Jun Park
    • Jae Kwang KimKwan Hyeong KimJun Suk JungJae Yik HowangChong Hoon PakJae Jun Park
    • H01G4/228H01G9/00
    • H01G9/08H01G9/008Y10T29/417
    • A solid electrolytic condenser includes a condenser element, an anode wire including one end inserted into the condenser element, a cathode drawing layer formed on outer side of the condenser element, terminal reinforcements arranged respectively under opposite side portions of a bottom surface of the condenser element, a liquid epoxy resin filled in spaces between the terminal reinforcements and between the bottom surface of the condenser element and top surfaces of the terminal reinforcements, a molding part surrounding the condenser element while exposing the other end of the anode wire, an end portion of the cathode drawing layer, and bottom surfaces of the terminal reinforcements, and anode and cathode terminals formed by a plating layer provided on the bottom surfaces of the terminal reinforcements and on opposite side surfaces of the molding part. The liquid epoxy resin includes fillers of a smaller size than those in the molding part.
    • 固体电解电容器包括电容器元件,包括插入到电容器元件中的一端的阳极线,形成在电容器元件的外侧的阴极引出层,分别设置在电容器元件的底面的相对侧部的端子加强件 填充在端子增强件之间的空间中以及在电容器元件的底表面和端子加强件的顶表面之间的空间中的液体环氧树脂,在暴露阳极线的另一端的同时围绕电容器元件的模制部件, 阴极引出层,端子加强件的底面以及由端子加强件的底面上的镀层形成的阳极和阴极端子以及模制部件的相对侧面。 液体环氧树脂包括比成型部件小的填料。
    • 2. 发明申请
    • SOLID ELECTROLYTIC CONDENSER AND METHOD FOR PREPARING THE SAME
    • 固体电解凝结剂及其制备方法
    • US20110038102A1
    • 2011-02-17
    • US12761434
    • 2010-04-16
    • Jae Kwang KIMKwan Hyeong KimJun Suk JungJae Yik HowangChong Hoon PakJae Jun Park
    • Jae Kwang KIMKwan Hyeong KimJun Suk JungJae Yik HowangChong Hoon PakJae Jun Park
    • H01G9/00
    • H01G9/08H01G9/008Y10T29/417
    • Disclosed is a solid electrolytic condenser and method for manufacturing the same. The solid electrolytic condenser includes: a condenser element whose inner has an anode polarity; an anode wire whose one end portion is inserted into the condenser element; a cathode drawing layer formed at one side of an external surface of the condenser element; terminal reinforcements coupled to the both-side portions of a bottom surface of the condenser element; a liquid epoxy resin (EMC) filled between the terminal reinforcements to seal the bottom surface of the condenser element; a molding part for surrounding an outer circumferential surface of the condenser element, the modeling part formed in such a manner that a protruded end portion of the anode wire, an end portion of the cathode drawing layer, and the bottom surface of the terminal reinforcement can be exposed; and anode and cathode terminals formed by a plating layer provided on the bottom surface of the terminal reinforcements and the both-side portion of the molding part. Accordingly, it is possible to reduce manufacturing costs, and to improve mechanical reliability on a portion where terminals are formed through buffering operation of terminal reinforcements.
    • 公开了一种固体电解冷凝器及其制造方法。 固体电解冷凝器包括:内部具有阳极极性的聚光元件; 阳极线,其一端插入聚光元件; 阴极拉丝层,形成在所述聚光元件的外表面的一侧; 耦合到所述电容器元件的底表面的两侧部分的端子增强件; 填充在端子增强件之间以密封冷凝器元件的底表面的液体环氧树脂(EMC); 用于围绕所述聚光元件的外周面的成型部,所述造型部形成为使得所述阳极线的突出端部,所述阴极拉伸层的端部和所述端子加强件的底面能够 被暴露 以及阳极和阴极端子,其由设置在端子加强件的底表面上的镀层和模制部件的两侧部分形成。 因此,可以降低制造成本,并且通过端子增强件的缓冲操作来提高形成端子的部分的机械可靠性。