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    • 42. 发明授权
    • Solid electrolytic capacitors and method for manufacturing the same
    • 固体电解电容器及其制造方法
    • US06515848B1
    • 2003-02-04
    • US09626125
    • 2000-07-26
    • Katsuhiro YoshidaKunihiko SimizuToshihiko Nishiyama
    • Katsuhiro YoshidaKunihiko SimizuToshihiko Nishiyama
    • H01G902
    • H01G9/0032H01G9/0036H01G9/028H01G9/15H01G11/48H01G11/56Y02E60/13
    • The present invention relates to solid electrolytic capacitors with low ESRs in the high frequency range and methods for manufacturing the same. The solid electrolytic capacitor induce a porous anode body made of a valve action metal and on the surface of which body a dielectric oxide layer is formed; and a chemically polymerized layer made of conductive polymers which are formed by chemical oxide polymerization on the dielectric oxide layer which are located on the surfaces inside pores of the porous anode body; and an electrolytic polymerized layer made of conductive polymers which are formed by electrolytic polymerization on the dielectric oxide layer which are located on the external surface of the porous anode body; wherein the dielectric oxide layer and the electrolytic polymerized layer are in contact with each other and the chemically polymerized layer and the electrolytic polymerized layer are electrically connected with each other near the contacting parts.
    • 本发明涉及高频范围内的低ESR的固体电解电容器及其制造方法。 固体电解电容器诱导由阀作用金属制成的多孔阳极体,并在其表面上形成电介质氧化物层; 以及由导电聚合物制成的化学聚合层,其通过位于多孔阳极体的孔内表面上的电介质氧化物层上的化学氧化物聚合形成; 以及由位于所述多孔质阳极体的外表面的所述电介质氧化物层上的电解聚合形成的导电性聚合物构成的电解聚合层; 其中电介质氧化物层和电解聚合层彼此接触,化学聚合层和电解聚合层在接触部分附近彼此电连接。
    • 47. 发明授权
    • Transfer switch
    • 转接开关
    • US4590387A
    • 1986-05-20
    • US680491
    • 1984-12-11
    • Katsuhiro YoshidaHiroshi Horiguchi
    • Katsuhiro YoshidaHiroshi Horiguchi
    • H01H51/20H01H3/28H01H33/38H01H50/00H01H50/32H01H50/64H02J9/04H02J9/00
    • H01H50/644H02J9/04H01H2300/018H01H51/20Y10T307/615
    • This transfer switch has movable contactors moving to connect a load side fixed contactor alternatively to two different current source side fixed contactors. The movable contactors are operatively connected with a control shaft moving along either inclined path of a substantially V-shaped guide groove and the current source selected by the movable contactor is determined by which inclined path of the guide groove the control shaft follows. The inclined path along which the control shaft moves is determined by the direction of the inclination of a point plate closing the inclined path by inclining to either side. The control shaft rises along either of the inclined paths of the guide groove as operatively connected with a rotating motion against a returning spring by a manual or electric operation of an operating lever. When the operating lever is in the original position, the control shaft will be positioned in the middle of the guide groove and the movable contactors will be in neutral positions. The operating lever engages a latch at the end of the rotation. This latch can be manually or electrically disengaged with the operating lever. The point plate is energized by a spring so as to normally incline in one direction. The inclining direction can be reversed manually or electrically.
    • 该转换开关具有移动以将负载侧固定接触器交替连接到两个不同电流源侧固定接触器的可动接触器。 活动接触器与沿着大致V形导向槽的倾斜路径移动的控制轴可操作地连接,并且由可动接触器选择的电流源由控制轴跟随的引导槽的哪个倾斜路径确定。 控制轴移动的倾斜路径由倾斜到任一侧的倾斜路径的倾斜方向决定。 控制轴沿着引导槽的任一倾斜路径升高,通过操作杆的手动或电动操作与通过复位弹簧的旋转运动可操作地连接。 当操作杆处于原始位置时,控制轴将位于导向槽的中间,活动接触器处于中立位置。 操作杆在旋转结束时接合闩锁。 该闩锁可以与操作杆手动或电动脱离。 点板由弹簧激励,以便在一个方向上正常倾斜。 倾斜方向可以手动或电动反转。