会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明专利
    • Manufacturing apparatus for solid electrolytic capacitor
    • 固体电解电容器的制造装置
    • JP2007234855A
    • 2007-09-13
    • JP2006054543
    • 2006-03-01
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • SHIRAGAMI MASAKIKUROSHIMA TOSHIYATAKAHASHI SEITA
    • H01G13/00H01G9/028
    • PROBLEM TO BE SOLVED: To provide a manufacturing apparatus for a solid electrolytic capacitor for stably forming a uniform solid electrolytic layer and having excellent productivity and maintainability.
      SOLUTION: This apparatus comprises a bonding unit for sticking an anode electrode 5 to an anode body 1, a supply unit for sending the anode body 1 into a polymerizing solution 4 in a polymerization tank 3, and cathode electrodes 7 provided at both ends of the anode body 1 in the widthwise direction thereof in a non-contact state in the polymerizing solution 4. A voltage is applied to the anode electrode 5 and the cathode electrodes 7 from a power supply 13 in the polymerizing solution 4 to carry out electrolytic polymerization to form the solid electrolytic layer, so that good circulation of the polymerizing solution 4 and improved productivity can be achieved. The uniform solid electrolytic layer can be formed because the formation and the adhesion of an electrically conductive polymer to the inner wall of the polymerization tank 3, and the change of the effective area of the cathode electrodes 7, are suppressed. Further, because ends of the cathode electrodes 7 are connected by an electrically conductive plate 8 and are supported outside the polymerization tank 3, the removal of the cathode electrodes 7 are facilitated so that the maintainability can be improved.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种用于固体电解电容器的制造装置,用于稳定地形成均匀的固体电解质层并且具有优异的生产率和可维护性。 解决方案:该装置包括用于将阳极电极5粘附到阳极体1的接合单元,用于将阳极体1输送到聚合槽3中的聚合溶液4的供给单元和设置在聚合槽3中的阴极电极7 阳极体1的宽度方向的端部在聚合溶液4中处于非接触状态。从聚合溶液4中的电源13向阳极电极5和阴极电极7施加电压,以进行 电解聚合形成固体电解质层,从而可以实现聚合溶液4的良好循环和提高的生产率。 可以形成均匀的固体电解质层,因为导电聚合物与聚合槽3的内壁的形成和粘附以及阴极电极7的有效面积的变化被抑制。 此外,由于阴极电极7的端部通过导电板8连接并被支撑在聚合槽3的外部,因此便于去除阴极电极7,从而可以提高维护性。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Device for manufacturing solid electrolytic capacitor
    • 用于制造固体电解电容器的装置
    • JP2007281153A
    • 2007-10-25
    • JP2006104846
    • 2006-04-06
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • KUROSHIMA TOSHIYASHIRAGAMI MASAKI
    • H01G13/00
    • H01G9/0036H01G9/15
    • PROBLEM TO BE SOLVED: To provide a device for manufacturing a solid electrolyte capacitor with excellent productivity and workability, capable of stably forming a solid electrolytic layer with excellent quality.
      SOLUTION: The device includes: a supply for supplying a positive electrode body 1 with a positive electrode 3 stuck thereto to a polymeric liquid 7; negative electrodes 8 arranged at both the ends of the positive electrode body 1 in the polymeric liquid 7. The positive electrode 3 to be used is obtained by defining aluminum foil as a base material, and forming a conductive thin film layer on the surface. Power feeding rollers for applying a voltage on the positive electrode 3 are arranged at two places before immersing the positive electrode body 1 in the polymeric liquid 7 and after pulling-out the body 1 from the liquid 7. Power feeding pins 5a with a diagonally notched distal end are implanted on the peripheral surface of the power feeding roller 5 to be arranged after pulling-out. Thus, the power feeding pins 5a are stuck to the positive electrode 3, where the solid electrolytic film is formed on the surface after electrolytic polymerization, so as to destroy the solid electrolytic film, and also the broken surface of the base material is expressed so as to secure conductivity. Thus, the electrolytic polymerization with excellent quality is performed by stable power feeding.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种制造具有优异的生产率和可加工性的固体电解电容器的装置,能够以优异的质量稳定地形成固体电解质层。 解决方案:该装置包括:用于将正电极体1与粘附到其上的正极3供应到聚合物液体7的供应源; 在聚合物液体7中配置在正极体1的两端的负极8.所使用的正极3是通过将铝箔定义为基材而形成的,在表面形成导电性薄膜层。 在将正极体1浸渍在聚合物液体7中之后,从液体7拔出主体1之后,在两个位置配置在正极3上施加电压的供电辊。供电销5a具有对角线切口 远端植入供电辊5的外周表面,以便在拉出之后被布置。 因此,供电销5a粘附在正电极3上,在正电极3上,在电解聚合后的表面上形成固体电解质膜,以破坏固体电解质膜,并且基材的破损表面也被表示为 以确保电导率。 因此,通过稳定的供电来进行质量优异的电解聚合。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • SOLID-ELECTROLYTE-LAYER FORMING APPARATUS FOR SOLID ELECTROLYTIC CAPACITOR
    • JP2001057322A
    • 2001-02-27
    • JP23109999
    • 1999-08-18
    • MATSUSHITA ELECTRIC IND CO LTD
    • YOSHIDA MORIHIROTERADA MITSUOSHIRAGAMI MASAKIUENO MOTONOBUNAKAJIMA HIDEO
    • H01G13/00
    • PROBLEM TO BE SOLVED: To realize a low-temperature atmosphere through a simple configuration and create at a low price a small-sized solid-electrolyte-layer forming apparatus, by coupling a Peltier element to the bottom surface of a metallic plate having on the top surface thereof at predetermined intervals a plurality of formed groove portions, and by driving the Peltier element through the driving portion thereof. SOLUTION: On a metallic plate 2 formed out of an aluminum plate, there are provided at predetermined intervals a plurality of groove portions 2a of the space portions for fitting thereinto sintered bodies 1. To the bottom surface of the metallic plate 2, a Peltier element 5 having a heat radiating fin 5a is coupled. When a switching on a driving source, the Peltier element 5, a fan 8, and a cooling portion 9 are driven, and the top-surface side of the Peltier element 5 is cooled to lower its temperature. Further, the temperature of the lower-portion side of the Peltier element 5 rises to begin a heat radiation via the heat radiating fin 5a. Therefore, since the temperature of a lower chamber 7 is lowered, the temperature of the metallic plate 2 is also lowered to lower the temperature of the insides of the groove portions 2a too. As a result, a solid-electrolyte layer exhibiting as largely as possible the performance of a functional macromolecule can be formed.
    • 9. 发明专利
    • Coating device
    • 涂装装置
    • JP2003062503A
    • 2003-03-04
    • JP2001255694
    • 2001-08-27
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • SHIRAGAMI MASAKIKANEMITSU YASUOHIROTA KIYOSHI
    • B05C5/00
    • PROBLEM TO BE SOLVED: To provide a coating device capable of thinly coating various coating material with excellent accuracy and high production efficiency.
      SOLUTION: In the coating device for coating the coating material 10 filled in a device body 1 by pressurizing inside of the device body to an object to be coated 11 through a discharge part 4, a cavity 6 connected with the discharge part 4, a nozzle 7 tapered in cross section rectangularly inclining from the lower edge of the cavity 6, and an attachment 5 provided with a liquid sump 8 arranged in a reverse direction to the coating direction from the edge of the nozzle 7 to the object to be coated 11, are constituted by installing at the edge of the discharge part 4. Thus, coating is able to be applied in the state that the edge of the nozzle 7 is in contact with the object to be coated 11 and a coated film with uniform thickness is able to be stably obtained as the coating material 10 is filled in the liquid sump 8.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供能够以高精度和高生产效率薄涂各种涂料的涂布装置。 解决方案:在用于通过排出部分4将装置主体内部加压到待涂覆物体11上的涂覆材料10涂覆在涂布装置中,与排出部分4连接的空腔6,喷嘴 7是从空腔6的下边缘呈矩形倾斜的截面为锥形的,以及设置有与从喷嘴7的边缘到被涂物11的涂布方向相反的方向设置的液槽8的附件5, 通过安装在排出部分4的边缘构成。因此,可以在喷嘴7的边缘与待涂覆物体11接触的状态下施加涂层,并且能够均匀厚度的涂膜 当涂料10填充在液体贮槽8中时,稳定地得到。
    • 10. 发明专利
    • APPARATUS FOR MANUFACTURING SOLID ELECTROLYTIC CAPACITOR
    • JP2001210568A
    • 2001-08-03
    • JP2000019816
    • 2000-01-28
    • MATSUSHITA ELECTRIC IND CO LTD
    • TERADA MITSUOUENO MOTONOBUSHIRAGAMI MASAKI
    • H01G13/00
    • PROBLEM TO BE SOLVED: To provide an apparatus for manufacturing a solid electrolytic capaci tor, of small size and low cost and having high productivity, which solves the problem where facility has become large and productivity is poor, due to the polymerization process being a belt conveyor method. SOLUTION: An apparatus comprises an anodizing body 1, which forms a dielectric oxide film on the outside surface of an anodic electrode, a polymerization body 2 which forms a solid electrolyte layer on the film, a cathode layer forming part 3 which forms a cathode layer on the solid electrolyte layer, a fitting part 4 which joins the anode and cathode terminal to a capacitor element, and a molding part 5 which covers a capacitor element with an outer covering resin. It is constituted of several polymerization tanks, arranging the polymerization parts 2 in the sequence of a non-straight line form and cleaning cells in one location or more between each polymerization tanks. This cleaning cell and several polymerization cells have the identical structure. Thus, by making the apparatus miniaturized through unitizing it, the entire line stoppage is dispensed with, and improvements in operating ratio, yield, and productivity can be made.