$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Wet electrolytic capacitor containing an improved anode 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01G-009/052
  • H01G-009/00
  • H01G-009/145
  • H01G-009/048
출원번호 US-0710515 (2012-12-11)
등록번호 US-9275799 (2016-03-01)
발명자 / 주소
  • Karnik, Tomas
  • Petrzilek, Jan
  • Biler, Martin
출원인 / 주소
  • AVX Corporation
대리인 / 주소
    Dority & Manning, P.A.
인용정보 피인용 횟수 : 2  인용 특허 : 77

초록

A wet electrolytic capacitor that includes a sintered porous anode body containing a dielectric layer, a fluid electrolyte, and a cathode is provided. At least one longitudinally extending channel is recessed into the anode body. The channel may have a relatively high aspect ratio (length divided by

대표청구항

1. A wet electrolytic capacitor comprising: an anode containing a sintered porous anode body that extends in a longitudinal direction and is coated with a dielectric, wherein the anode body contains a sidewall positioned between a proximal end and an opposing distal end, wherein a longitudinally ext

이 특허에 인용된 특허 (77)

  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. 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.
  3. Stephenson Donald H. ; Cymerman Martin D. ; Muffoletto Barry C., Anodized tantalum pellet for an electrolytic capacitor.
  4. Melody Brian John ; Kinard John Tony ; Wheeler David Alexander, Anodizing electrolyte and its use.
  5. Liu, Yanming; Nesselbeck, Neal; Goad, David; Muffoletto, Barry, Anodizing valve metals by self-adjusted current and power.
  6. Ryan, Timothy J.; Evans, Michael A.; Lenker, Jay A.; Freislinger, Kirsten; Kim, Steven W.; Will, Allan R., Bifurcated intraluminal prostheses construction and methods.
  7. Bishop Ian H.,GBX ; Masheder David,GBX, Binder removal.
  8. Evans David A. (Seekonk MA), Capacitor.
  9. Feger,Christopher R.; Strange,Thomas F., Capacitor anode assembly.
  10. Maeda Takahiro,JPX ; Yanagi Shouichi,JPX ; Kuriyama Chojiro,JPX, Capacitor element for solid electrolytic capacitor, device and process for making the same.
  11. Stevens James I., Capacitor foil with enhanced surface area.
  12. Fayram Timothy A. ; Pless Benjamin D. ; McCall Scott ; Mar Craig, Capacitor for an implantable cardiac defibrillator.
  13. Muffoletto, Barry C.; Shah, Ashish, Capacitor grade powders.
  14. Webber Dean A. ; Van Voorhis John E., Capacitor having textured pellet and method for making same.
  15. Evans David A., Capacitor with spiral anode and planar cathode.
  16. Rorvick, Anthony W.; Hossick-Schott, Joachim; Norton, John D., Capacitors based on valve metal alloys for use in medical devices.
  17. Dreissig, Dirk; Rawal, Bharat, Cathode for use in a wet capacitor.
  18. 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.
  19. Hemphill, Ralph Jason; Graham, Thomas V.; Strange, Thomas F., Creation of porous anode foil by means of an electrochemical drilling process.
  20. Feger, Christopher R.; Strange, Thomas F., Design for capacitor anode assembly.
  21. Melody Brian John ; Kinard John Tony ; Lessner Philip Michael, Differential anodization process for electrolytic capacitor anode bodies.
  22. Mileham, Richard; Stemen, Eric; O'Connor, Laurie; Elliott, William; Spaulding, Joseph E.; Muffoletto, Barry C.; Eberhard, Douglas, Dual anode capacitor interconnect design.
  23. Ribble,Bruce A.; Davis,Thomas T.; Hall,Wallace Ken, Electrolytic capacitor.
  24. Strange Thomas F. ; Lunsmann Paul,AUX, Electrolytic capacitor and method of manufacture.
  25. Strange Thomas F. ; Lunsmann Paul,AUX, Electrolytic capacitor and method of manufacturing.
  26. O'Phelan Michael J. ; Tong Robert R. ; Poplett James M. ; Christenson Luke J. ; Barr Alexander Gordon ; Waytashek Brian V., Electrolytic capacitor and multi-anodic attachment.
  27. Fife James A., Electrolytic capacitor anode of valve metal oxide.
  28. Fishler Matthew G., Electrolytic capacitor with multiple independent anodes.
  29. Merker,Udo; Wussow,Klaus; Jonas,Friedrich, Electrolytic capacitors with a polymeric outer layer.
  30. Beauvais, W. Joseph; Moore, Melissa A.; Stevens, James L.; Strange, Thomas F.; Feger, Christopher R., Electrolytic capacitors with alternate cathode materials for use in pulse discharge applications.
  31. Strange, Thomas F.; Marshall, Timothy R.; Graham, Thomas V., Floating anode DC electrolytic capacitor.
  32. Thomas F. Strange ; Timothy R. Marshall ; Thomas V. Graham, Floating anode DC electrolytic capacitor.
  33. Hahn,Randy S.; Kinard,John T.; Poltorak,Jeffery P.; Zediak,Eric, Fluted anode with improved capacitance and capacitor comprising same.
  34. Hahn,Randy S.; Qiu,Yongjian, Fluted anode with minimal density gradients and capacitor comprising same.
  35. Satterfield, Jr.,James W.; Thornton,Lance Paul; Poltorak,Jeffrey P.; Hahn,Randy; Qiu,Yongjian, Fluted anode with minimal density gradients and capacitor comprising same.
  36. Hemphill, Ralph Jason; Strange, Thomas Flavian, High capacitance anode and system and method for making same.
  37. Michael J. O'Phelan ; Luke J. Christenson ; James M. Poplett ; Robert R. Tong, High energy capacitors for implantable defibrillators.
  38. Michael J. O'Phelan ; Luke J. Christenson ; James M. Poplett ; Robert R. Tong, High-energy capacitors for implantable defibrillators.
  39. O'Phelan, Michael J.; Christenson, Luke J.; Poplett, James M.; Tong, Robert R., High-energy capacitors for implantable defibrillators.
  40. O'Phelan, Michael J.; Christenson, Luke J.; Poplett, James M.; Tong, Robert R., High-energy capacitors for implantable defibrillators.
  41. O'Phelan,Michael J.; Christenson,Luke J.; Poplett,James M.; Tong,Robert R., High-energy electrolytic capacitors for implantable defibrillators.
  42. Holler, Gusztav, Method and apparatus for vehicle rollover prediction and prevention.
  43. John Tony Kinard ; Brian John Melody ; David Alexander Wheeler ; Philip Michael Lessner, Method and electrolyte for anodizing valve metals to high voltage.
  44. Norton, John D.; Hossick Schott, Joachim; Viste, Mark Edward; Melody, Brian John; Kinard, John Tony, Method for fabricating a medical device that includes a capacitor that does not require oxide reformation.
  45. Pless Benjamin D. ; Elias William H. ; Parler Sam ; McCall J. Scott, Method for making anode foil for layered electrolytic capacitor and capacitor made therewith.
  46. Freeman, Yuri; Lessner, Philip Michael, Method for making anodes for electrolytic capacitor with high volumetric efficiency.
  47. Schneider,Clinton W.; Hemphill,R. Jason; Sudduth,Katherine E.; Graham,Thomas V.; Strange,Thomas F., Method for producing an electrode for a capacitor from foil.
  48. Kinard John T. ; Melody Brian I., Method of anodizing a metal anode prepared from very fine metal powder.
  49. Melody, Brian John; Kinard, John Tony; Wheeler, David Alexander, Method of anodizing valve metal derived anode bodies and electrolyte therefore.
  50. Melody,Brian John; Kinard,John Tony; Wheeler,David Alexander, Method of anodizing valve metal derived anode bodies and electrolyte therefore.
  51. Kinard John Tony ; Melody Brian John ; Wheeler David Alexander, Method of anodizing valve metals.
  52. Goad, David; Nesselbeck, Neal; Hahl, Jason, Method of forming valve metal anode pellets for capacitors using forced convection of liquid electrolyte during anodization.
  53. Fife, James A., Method of making a capacitor anode of a pellet of niobium oxide.
  54. Sakata Koji (Tokyo JPX) Kobayashi Atsushi (Tokyo JPX) Fukami Takashi (Tokyo JPX), Method of manufacturing solid electrolytic capacitor.
  55. Tripp,Terrance B.; Melody,Brian John; Kinard,John Tony; Wheeler,David Alexander; Stenzinger,Duane Earl, Method of passing electric current through highly resistive anodic oxide films.
  56. Strange,Thomas F.; Hemphill,R. Jason; Jiang,Xiaofei, Method of producing an anode for an electrolytic capacitor.
  57. Hossick-Schott, Joachim, Methods of anodizing valve metal anodes.
  58. Fife, James A., Methods to make capacitors containing a partially reduced niobium metal oxide.
  59. James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  60. James A. Fife, Methods to partially reduce a niobium metal oxide oxygen reduced niobium oxides.
  61. Kimmel, Jonathon L.; Redd, Randall V., Modified oxygen reduced valve metal oxides.
  62. Kimmel,Jonathon L.; Redd,Randall V., Modified oxygen reduced valve metal oxides.
  63. Thomas,Oliver; Schnitter,Christoph, Niobium suboxide powder.
  64. Liu,Yanming; Muffoletto,Barry; Goad,David, Plasma treatment of anodic oxides for electrolytic capacitors.
  65. Poltorak,Jeffrey P., Powder compaction press for capacitor anodes.
  66. Schnitter,Christoph, Process for producing niobium suboxide.
  67. Groenendaal, Lambertus; Jonas, Friedrich; Cloots, Tom; Louwet, Frank, Process for the preparation of water-soluble π-conjugated polymers.
  68. Strange Thomas Flavian ; Hemphill Ralph Jason, Process for using surface active agents to produce high etch gains for electrolytic capacitor manufacturing.
  69. Schnitter,Christoph; W��tting,Gerhard, Sintered bodies based on niobium suboxide.
  70. Liu, Yanming; Goad, David; Muffoletto, Barry, Sintered valve metal powders for implantable capacitors.
  71. 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.
  72. Biler, Martin, Solid electrolytic capacitor containing a conductive polymer.
  73. 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.
  74. 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.
  75. 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.
  76. 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.
  77. Seitz,Keith; Shah,Ashish; Muffoletto,Barry; Neff,Wolfram; Eberhard,Douglas, Use of poly(alkylene) carbonates in the manufacture of valve metal anodes for electrolytic capacitors.

이 특허를 인용한 특허 (2)

  1. Liu, Yanming; Laforge, Jason, Wet electrolytic capacitor.
  2. Laforge, Jason; Liu, Yanming, Wet electrolytic capacitor for use in a subcutaneous implantable cardioverter-defibrillator.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로