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Solid electrolytic capacitor 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01G-009/028
  • H01G-009/052
  • H01G-009/00
  • H01G-009/032
  • H01G-009/15
출원번호 US-0198717 (2014-03-06)
등록번호 US-9324503 (2016-04-26)
발명자 / 주소
  • Biler, Martin
  • Petrzilek, Jan
출원인 / 주소
  • AVX Corporation
대리인 / 주소
    Dority & Manning, P.A.
인용정보 피인용 횟수 : 0  인용 특허 : 97

초록

A capacitor for use in relatively high voltage environments is provided. The solid electrolyte is formed from a plurality of pre-polymerized particles in the form of a dispersion. In addition, the anode is formed such that it contains at least one longitudinally extending channel is recessed therein

대표청구항

1. A solid electrolytic capacitor comprising: an anode that comprises a sintered porous anode body extending in a longitudinal direction, wherein the anode body contains a sidewall positioned between a proximal end and an opposing distal end, wherein a longitudinally extending channel is recessed in

이 특허에 인용된 특허 (97)

  1. Hossick Schott,Joachim; Norton,John D.; Rorvick,Anthony W.; May,Steve J., Advanced valve metal anodes with complex interior and surface features and methods for processing same.
  2. Reuter, Knud; Nikanorov, Valery A.; Bazhenov, Vassily M., Alkylenedioxythiophene dimers and trimers.
  3. Reuter, Knud; Karbach, Alexander; Ritter, Helmut; Wrubbel, Noelle, Alkylenedioxythiophenes and poly(alkylenedioxythiophenes) containing mesogenic groups.
  4. Poltorak, Jeffrey; Qiu, Yongjian; Guerrero, Christian; Thornton, Lance Paul; Hahn, Randy S.; Bates, Jr., James C.; Prymak, John, Anodes with corner and edge modified designs.
  5. Stephenson Donald H. ; Cymerman Martin D. ; Muffoletto Barry C., Anodized tantalum pellet for an electrolytic capacitor.
  6. Bishop Ian H.,GBX ; Masheder David,GBX, Binder removal.
  7. Gardner Edward P. (4595 Laguna Pl. ; #335 Boulder CO 80303), Capacitor.
  8. Maeda Takahiro,JPX ; Yanagi Shouichi,JPX ; Kuriyama Chojiro,JPX, Capacitor element for solid electrolytic capacitor, device and process for making the same.
  9. Webber Dean A. ; Van Voorhis John E., Capacitor having textured pellet and method for making same.
  10. Dreissig, Dirk; Rawal, Bharat, Cathode for use in a wet capacitor.
  11. Ushio,Yoshihiro; Yokoi,Kiyotaka; Miyaishi,Manabu; Yasui,Masakazu, Ceramic container and battery and electric double layer capacitor using the same.
  12. Galvagni John (Myrtle Beach SC), Compact surface mount solid state capacitor and method of making same.
  13. Uehara Hideaki,JPX ; Yoshikawa Toru,JPX ; Hu Yan,JPX ; Sasaki Shouichi,JPX ; Yano Yasuhiro,JPX ; Doudou Takafumi,JPX, Composition for forming electrolyte for solid electrolytic capacitor and solid electrolytic capacitor.
  14. Osako,Katsuhisa; Shioi,Naoto; Itoh,Daisuke; Gotoh,Hideyuki; Matsuba,Yorishige; Tateyama,Kazuki; Ukita,Yasunari; Segawa,Masao; Kikuchi,Takuo, Conductive adhesive agent with ultrafine particles.
  15. Wessling,Bernhard; Kirchmeyer,Stephan; Gehrmann,Dietrich, Dispersible polymer powders.
  16. Umemoto, Takashi; Nakahara, Yasuo; Nonoue, Hiroshi; Nemoto, Masaaki, Electric double layer capacitor with a sealing plate fitted inside a container.
  17. Kulkarni Sudhir (Myrtle Beach SC), Electrical components, such as capacitors, and methods for their manufacture.
  18. Kida, Tomohiko; Onodera, Hideharu; Watanabe, Shunji; Tahara, Kensuke; Nakamura, Yoshibumi, Electrochemical cell.
  19. Merker,Udo; Wussow,Klaus; Jonas,Friedrich, Electrolyte capacitors having a polymeric outer layer and process for their production.
  20. Ribble,Bruce A.; Davis,Thomas T.; Hall,Wallace Ken, Electrolytic capacitor.
  21. Strange Thomas F. ; Lunsmann Paul,AUX, Electrolytic capacitor and method of manufacturing.
  22. Fife James A., Electrolytic capacitor anode of valve metal oxide.
  23. Green ; Jr. Gilbert E. (Bennington VT), Electrolytic capacitor with a hermetic seal.
  24. Merker,Udo; Wussow,Klaus; Jonas,Friedrich, Electrolytic capacitors with a polymeric outer layer.
  25. Merker,Udo; Wussow,Klaus, Electrolytic capacitors with a polymeric outer layer and process for the production thereof.
  26. Hahn,Randy S.; Kinard,John T.; Poltorak,Jeffery P.; Zediak,Eric, Fluted anode with improved capacitance and capacitor comprising same.
  27. Hahn,Randy S.; Qiu,Yongjian, Fluted anode with minimal density gradients and capacitor comprising same.
  28. Satterfield, Jr.,James W.; Thornton,Lance Paul; Poltorak,Jeffrey P.; Hahn,Randy; Qiu,Yongjian, Fluted anode with minimal density gradients and capacitor comprising same.
  29. Fukaumi Takashi,JPX ; Nishiyama Toshihiko,JPX ; Kobayashi Atsushi,JPX ; Ohi Masashi,JPX ; Tsuchida Eishun,JPX ; Yamamoto Kumihisa,JPX ; Takeoka Shinji,JPX ; Fujishima Yoshitaka,JPX, Heat resistant conducting polymer, solid electrolytic capacitor using the same and method for fabricating such capacito.
  30. Rawal, Bharat; Ning, Gang; Jones, Brady; Sebald, Zebbie Lynn; Zednicek, Stanislav; Sita, Zdenek, Hermetically sealed capacitor assembly.
  31. Hemphill, Ralph Jason; Strange, Thomas Flavian, High capacitance anode and system and method for making same.
  32. Bhattacharyya Bidyut K. (Phoenix AZ) Tanahashi Shigeo (Kagoshima JPX), High performance and high capacitance package with improved thermal dissipation.
  33. Freeman, Yuri; Qiu, Yongjian; Hussey, Steven C.; Lessner, Philip M., High voltage and high efficiency polymer electrolytic capacitors.
  34. Dreissig, Dirk H.; Galvagni, John, High voltage electrolytic capacitors.
  35. Qiu, Yongjian; Hahn, Randy S.; Brenneman, Keith R., High voltage solid electrolytic capacitors using conductive polymer slurries.
  36. Michael J. O'Phelan ; Luke J. Christenson ; James M. Poplett ; Robert R. Tong, High-energy capacitors for implantable defibrillators.
  37. O'Phelan,Michael J.; Christenson,Luke J.; Poplett,James M.; Tong,Robert R., High-energy electrolytic capacitors for implantable defibrillators.
  38. Irie Taka (San Diego CA) Nomura Aki (San Diego CA), Leadless ceramic package with improved solderabilty.
  39. Chacko, Antony P., Low temperature curable conductive adhesive and capacitors formed thereby.
  40. Galvagni John (Surfside Beach SC) Brown Sonja (Myrtle Beach SC) Christian Kevin (Myrtle Beach SC) Qui Yong-Jian (Myrtle Beach SC), Manufacturing method for solid state capacitor and resulting capacitor.
  41. Salisbury Ian (S. Devon GB2), Mass production method for the manufacture of surface mount solid state capacitor and resulting capacitor.
  42. Chikusa, Yasuo; Tamakoshi, Hideaki, Method for producing an aqueous dispersion containing a complex of poly(3,4-dialkoxythiophene) and a polyanion.
  43. Goad, David; Nesselbeck, Neal; Hahl, Jason, Method of forming valve metal anode pellets for capacitors using forced convection of liquid electrolyte during anodization.
  44. Fife, James A., Method of making a capacitor anode of a pellet of niobium oxide.
  45. Sakata Koji (Tokyo JPX) Kobayashi Atsushi (Tokyo JPX) Fukami Takashi (Tokyo JPX), Method of manufacturing solid electrolytic capacitor.
  46. Strange,Thomas F.; Hemphill,R. Jason; Jiang,Xiaofei, Method of producing an anode for an electrolytic capacitor.
  47. Jonas,Friedrich; Wussow,Klaus; Reuter,Knud, Methods of stabilizing thiophene derivatives.
  48. Fife, James A., Methods to make capacitors containing a partially reduced niobium metal oxide.
  49. James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  50. James A. Fife, Methods to partially reduce a niobium metal oxide oxygen reduced niobium oxides.
  51. Kimmel, Jonathon L.; Redd, Randall V., Modified oxygen reduced valve metal oxides.
  52. Kimmel,Jonathon L.; Redd,Randall V., Modified oxygen reduced valve metal oxides.
  53. Heuer,Helmut Werner; Wehrmann,Rolf, Multifunctional 3,4-alkylenedioxythiophene derivatives and electrically conductive polymers containing them.
  54. Thomas,Oliver; Schnitter,Christoph, Niobium suboxide powder.
  55. Kimmel, Jonathon L.; Kitchell, Ricky W., Oxygen reduced niobium oxides.
  56. Hasegawa Miki (Kyoto JPX), Package-type solid electrolytic capacitor.
  57. Jonas, Friedrich; Guntermann, Udo, Polymer coatings having improved resistance to solvents.
  58. Jonas Friedrich (Aachen DEX) Krafft Werner (Leverkusen DEX), Polythiophene dispersions, their production and their use.
  59. Reuter,Knud; Merker,Udo; Jonas,Friedrich, Polythiophenes having alkyleneoxythia thiophene units in electrolyte capacitors.
  60. Jonas Friedrich (Aachen DEX) Heywang Gerhard (Bergisch Gladbach DEX) Schmidtberg Werner (Leverkusen DEX) Heinze Jrgen (Freiburg DEX) Dietrich Michael (Freiburg DEX), Polythiophenes, process for their preparation and their use.
  61. Poltorak,Jeffrey P., Powder compaction press for capacitor anodes.
  62. Shunji Watanabe JP; Tsugio Sakai JP, Power source element.
  63. Reuter,Knud, Preparation of 2,2'-di(3,4-ethylenedioxythiophene)s.
  64. Morita, Yoshiyuki; Chikusa, Yasuo; Miyanishi, Kyoko; Kirchmeyer, Stephan; Loevenich, Wilfried, Process for producing aqueous dispersion of composite of poly(3,4-dialkoxythiophene) with polyanion.
  65. Schnitter,Christoph, Process for producing niobium suboxide.
  66. Jonas, Friedrich, Process for the preparation of 3, 4-alkylenedioxythiophene-2,5-dicarboxylic acid derivatives.
  67. Gunter Rauchschwalbe DE; Friedrich Jonas DE, Process for the preparation of dialkylthiophenes and alkylenedioxythiophenes.
  68. Reuter, Knud; Kirchmeyer, Stephan, Process for the preparation of neutral polyethylenedioxythiophene, and corresponding polyethylenedioxythiophenes.
  69. Groenendaal, Lambertus; Jonas, Friedrich; Cloots, Tom; Louwet, Frank, Process for the preparation of water-soluble π-conjugated polymers.
  70. Merker,Udo, Process for the producing of electrolytic capacitors.
  71. Merker, Udo; Lövenich, Wilfried; Wussow, Klaus; Tillmann, Ralph, Process for the production of electrolyte capacitors.
  72. Merker, Udo; Lövenich, Wilfried; Wussow, Klaus, Process for the production of electrolyte capacitors of high nominal voltage.
  73. Brassat, Lutz; Kirchmeyer, Stephan, Process for the purification of thiophenes.
  74. Fife, James A.; Sebald, Zebbie L., Protective coating for electrolytic capacitors.
  75. Bernard Walter J. (Williamstown MA) Millard Richard J. (Williamstown MA), Reducing the oxygen content of tantalum.
  76. Merker, Udo; Kirchmeyer, Stephan; Wussow, Klaus, Retarding oxidants for preparing conductive polymers.
  77. Brailey, Paul, Semiconductor package.
  78. Yuri L. Pozdeev-Freeman, Sintered Tantalum and Niobium capacitor pellets doped with Nitrogen, and method of making the same.
  79. Schnitter,Christoph; W��tting,Gerhard, Sintered bodies based on niobium suboxide.
  80. Liu, Yanming; Goad, David; Muffoletto, Barry, Sintered valve metal powders for implantable capacitors.
  81. Inoue Hirohumi,JPX ; Honda Nobuhiro,JPX, Solid electrolyte capacitor.
  82. Jonas Friedrich (Aachen DEX) Heywang Gerhard (Bergisch-Gladbach DEX) Schmidtberg Werner (Leverkusen DEX), Solid electrolytes, and electrolyte capacitors containing same.
  83. Ishizuka, Hidetoshi; Mizutani, Toshiyuki; Funahashi, Minoru; Echigo, Tadayuki, Solid electrolytic capacitor.
  84. Sakata Koji (Tokyo JPX) Kobayashi Atsushi (Tokyo JPX) Fukaumi Takashi (Tokyo JPX) Nishiyama Toshihiko (Tokyo JPX) Arai Satoshi (Tokyo JPX), Solid electrolytic capacitor and method for manufacturing the same.
  85. Sakata Koji (Toyama JPX) Minamoto Maki (Shiga JPX) Fukaumi Takashi (Tokyo JPX) Nishiyama Toshihiko (Tokyo JPX) Arai Satoshi (Toyama JPX) Taniguchi Hiromichi (Tokyo JPX), Solid electrolytic capacitor and process for production thereof.
  86. Biler, Martin, Solid electrolytic capacitor containing a conductive polymer.
  87. Sakata Koji,JPX ; Aoki Yuji,JPX ; Nishiyama Toshihiko,JPX ; Arai Satoshi,JPX ; Nagashima Syuichi,JPX, Solid electrolytic capacitor with conductive polymer as solid electrolyte and method for fabricating the same.
  88. Nishiyama Toshihiko (Tokyo JPX) Fukaumi Takashi (Tokyo JPX) Arai Satoshi (Tokyo JPX) Taniguchi Hiromichi (Tokyo JPX) Kobayashi Atsushi (Tokyo JPX), Solid electrolytic capacitor with conductive polymer as solid electrolyte and method of manufacturing the same.
  89. Kudoh Yasuo,JPX ; Akami Kenji,JPX ; Kojima Toshikuni,JPX ; Matsuya Yasue,JPX ; Shimada Hiroshi,JPX ; Hayashi Chiharu,JPX, Solid electrolytic capacitors comprising a conductive layer made of a polymer of pyrrole or its derivative.
  90. Ishizuka,Hidetoshi; Funahashi,Minoru; Mizutani,Toshiyuki; Ueda,Akira; Yamada,Katsuharu, Stacked solid electrolytic capacitor.
  91. Blohm Margaret L. (Schenectady NY) Pickett James E. (Schenectady NY) VanDort Paul C. (Clifton Park NY), Substituted 3,4-polymethylenedioxythiophenes, and polymers and electro responsive devices made therefrom.
  92. Merker,Udo; Reuter,Knud; Lerch,Klaus, Substituted poly(alkylenedioxythiophenes) as solid electrolytes in electrolytic capacitors.
  93. Zhuang, Weidong, Surface mountable hermetically sealed package.
  94. Gaffney, Kevin M.; Casby, Kurt J.; Hossick-Schott, Joachim; Norton, John D.; Rodgers, Angela M; Hulting, Karen J, Tantalum anodes for high voltage capacitors employed by implantable medical devices and fabrication thereof.
  95. Sturmer John (N. Berwick ME) Cadwallader John Y. (Saco ME), Tantalum capacitor and method of making same.
  96. Galvagni ; John L., Tantalum chip capacitor.
  97. Mizusaki, Yujiro; Iijima, Hitoshi; Noguchi, Yoshikazu, Tantalum powder and methods of manufacturing same.
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