$\require{mediawiki-texvc}$

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.

Nitrided niobium powders and niobium electrolytic capacitors 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B22F-001/00
출원번호 US-0071537 (1998-05-04)
발명자 / 주소
  • Fife James A.
출원인 / 주소
  • Cabot Corporation
인용정보 피인용 횟수 : 77  인용 특허 : 23

초록

A nitrogen containing niobium powder is disclosed as well as electrolytic capacitors formed from the niobium powders. Methods to reduce DC leakage in a niobium anode are also disclosed.

대표청구항

[ What is claimed is:] [1.] Niobium powder having a nitrogen content of at least about 300 ppm, wherein said niobium powder has a BET surface area of at least about 1.0 m.sup.2 /g. [21.] A capacitor prepared from a formulation comprising the niobium powder of claim 1.

이 특허에 인용된 특허 (23)

  1. Fry ; Stanley S., Columbium powder and method of making the same.
  2. Fife James A. (Douglassville PA), Cylindrical metal fibers made from tantalum, columbium, and alloys thereof.
  3. Hhn Reinhard (Langelsheim DEX) Behrens Dieter (Goslar DEX), Electrodes of sintered tantalum powder of fine grain size and process of production.
  4. Fife James A. (Thornbury PA GB2) Knudson David A. (Gilbertsville PA) Kumar Prabhat (Allentown PA) Pathare Viren (Allentown PA), Extruded capacitor electrode and method of making the same.
  5. Behrens Dieter (Bad Harzburg DEX), Fine-grained, high-purity earth acid metal powders, a process for their production and their use.
  6. Fife James A. (Thornbury Bristol GBX), Flaked tantalum powder.
  7. Hard Robert A. (Oley PA), Method for deoxidizing tantalum material.
  8. Kumar Prabhat (Allentown PA), Method of making powders and products of tantalum and niobium.
  9. Chang Hongtu (Norristown PA), Method of producing high surface area, low metal impurity.
  10. Schiele Edward K. (Gurnee IL), Platelet-containing tantalum powders.
  11. Albrecht Wolf-Wigand (Bad Harzburg DEX) Hoppe Axel (Bad Harzburg DEX) Papp Uwe (Goslar DEX) Wolf Rdiger (Vienenburg DEX), Process for improving the flowability and increasing the bulk density of high-surface area valve metal powders.
  12. Chang Hongju (Wayne PA), Process for making an improved tantalum powder and high capacitance low leakage electrode made therefrom.
  13. Albrecht, Wolf-Wigand; Hoppe, Axel; Papp, Uwe; Wolf, Rudiger, Process for producing valve-metal anodes for electrolytic capacitors.
  14. Hhn Reinhard (Langelsheim DEX) Behrens Dieter (Goslar DEX), Process for the preparation of tantalum and niobium powders of improved efficiency.
  15. Albrecht, Wolf-Wigand; Hoppe, Axel; Papp, Uwe; Wolf, Rudiger, Process for treating the surface of valve metals with chalcogens.
  16. Albrecht Wolf-Wigand (Bad Harzburg DEX) Papp Uwe (Goslar DEX), Production of highly capacitive agglomerated valve metal powder and valve metal electrodes for the production of electro.
  17. Murayama Tomohiro (Fukuoka JPX) Kanetake Yasuo (Kyoto JPX), Solid electrolytic capacitor and manufacturing method thereof.
  18. Bates Victor T. (Kenosha WI) Fry Stanley S. (North Chicago IL) Hakko James B. (Waukegan IL), Tantalum metal powder.
  19. Fife James A. (Douglessville PA) Getz Marlyn F. (Barto PA), Tantalum powder.
  20. Getz Marlyn F. (Barto PA) Maggio Michael J. (Boyertown PA) Hitch Billy F. (Boyertown PA), Tantalum powder composition.
  21. Bergman Roger M. (Sanatoga PA) Mosheim Charles E. (Hereford Township ; Berks County PA), Tantalum powder process.
  22. Vartanian Haig (Newton MA), Tantalum powder reclaiming.
  23. Albrecht Wolf-Wigand (Bad Harzburg DEX) Papp Uwe (Goslar DEX) Behrens Dieter (Bad Harzburg DEX), Valve metal powder doped with boron.

이 특허를 인용한 특허 (77)

  1. Karnik, Tomas, Anode for a solid electrolytic capacitor containing a non-metallic surface treatment.
  2. Naito, Kazumi; Tamura, Katsutoshi, Capacitor.
  3. Naito, Kazumi; Tamura, Katsutoshi, Capacitor.
  4. Reichert, Karlheinz; Schnitter, Christoph, Capacitor powder.
  5. Melody, Brian John; Kinard, John Tony; Wheeler, David Alexander; Lessner, Philip Michael, Capacitor prepared from a non-aqueous electrolyte.
  6. Ning, Gang, Cathode coating for a wet electrolytic capacitor.
  7. Koenitzer,John W.; Qiu,Yongjian, Controlled oxygen addition for metal material.
  8. Karnik, Tomas, Doped ceramic powder for use in forming capacitor anodes.
  9. Naito, Kazumi, Electrode for capacitor and capacitor using the same.
  10. Breznova, Hana; Biler, Martin, Electrolytic capacitor anode treated with an organometallic compound.
  11. Iijima, Hitoshi, Fine particle recovery methods for valve metal powders.
  12. Habecker, Kurt A.; Fife, James A., High capacitance niobium powders and electrolytic capacitor anodes.
  13. Habecker, Kurt A.; Fife, James A., High capacitance niobium powders and electrolytic capacitor anodes.
  14. Kurt A. Habecker ; James A. Fife, High capacitance niobium powders and electrolytic capacitor anodes.
  15. Kenji Araki JP, Manufacturing method of solid electrolytic capacitor.
  16. Naito, Kazumi, Metal foil consisting of alloy of earth-acid metal, and capacitor provided with the same.
  17. McCracken, Colin; Grant, Nigel Patrick, Method of forming anode bodies for solid state capacitors.
  18. Fife, James A., Method of making a capacitor anode of a pellet of niobium oxide.
  19. Habecker, Kurt A.; Fife, James A., Method of making niobium and other metal powders.
  20. Habecker,Kurt A.; Fife,James A., Method of making niobium and other metal powders.
  21. Kurt A. Habecker ; James A. Fife, Method of making niobium and other metal powders.
  22. Fife,James A., Method to partially reduce calcined niobium metal oxide and oxygen reduced niobium oxides.
  23. Reed, David M.; Venigalla, Sridhar; Kitchell, Ricky W.; Krause, Stephen J.; Enman, Heather L.; Schultz, Dorran L.; Kerchner, Jeffrey A., Methods of making a niobium metal oxide and oxygen reduced niobium oxides.
  24. Reed, David M.; Venigalla, Sridhar; Kitchell, Ricky W.; Krause, Stephen J.; Enman, Heather L.; Schultz, Dorran L.; Kerchner, Jeffrey A., Methods of making a niobium metal oxide and oxygen reduced niobium oxides.
  25. Fife, James A., Methods to make capacitors containing a partially reduced niobium metal oxide.
  26. James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  27. Jonathon L. Kimmel ; Ricky W. Kitchell ; James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  28. Jonathon L. Kimmel ; Ricky W. Kitchell. ; James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  29. Kimmel, Jonathon L.; Kitchell, Ricky W.; Fife, James A., Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  30. Kimmel, Jonathon L.; Redd, Randall V., Modified oxygen reduced valve metal oxides.
  31. Kimmel,Jonathon L.; Redd,Randall V., Modified oxygen reduced valve metal oxides.
  32. Asami, Tadamasa; Yoshida, Katsuhiro; Shimizu, Kunihiko; Kono, Takashi, Nb solid electrolytic capacitor and method for preparing the same.
  33. Ning,Gang, Neutral electrolyte for a wet electrolytic capacitor.
  34. Nishioka,Masaaki; Naito,Kazumi; Kabe,Isao, Niobium for capacitor and capacitor using sintered body of the niobium.
  35. Oda,Yukio; Mizusaki,Yujiro, Niobium or tantalum powder and method for production thereof, and solid electrolytic capacitor.
  36. Naito, Kazumi; Nagato, Nobuyuki, Niobium powder for capacitor, sintered body thereof and capacitor using the sintered body.
  37. Naito,Kazumi; Nagato,Nobuyuki, Niobium powder for capacitor, sintered body thereof and capacitor using the sintered body.
  38. Naito,Kazumi; Nagato,Nobuyuki, Niobium powder for capacitor, sintered body thereof and capacitor using the sintered body.
  39. Naito, Kazumi, Niobium powder, sintered body thereof and capacitor using same.
  40. Naito, Kazumi, Niobium powder, sintered body thereof and capacitor using the same.
  41. Omori, Kazuhiro; Naito, Kazumi, Niobium powder, sintered body thereof, and capacitor using the same.
  42. Naito, Kazumi; Nagato, Nobuyuki, Niobium powder, sintered body using the powder, and capacitor using the same.
  43. Fife James A. ; Liu Jane Jia ; Steele Roger W., Niobium powders and niobium electrolytic capacitors.
  44. James A. Fife ; Jane Jia Liu ; Roger W. Steele, Niobium powders and niobium electrolytic capacitors.
  45. Naito, Kazumi; Shimojima, Atsushi, Niobium sintered body for capacitor and process for producing same.
  46. Naito, Kazumi; Shimojima, Atsushi, Niobium sintered body for capacitor and replace with process for producing same.
  47. Naito, Kazumi; Kabe, Isao, Niobium sintered body, production method therefor, and capacitor using the same.
  48. Schnitter, Christoph; Reichert, Karlheinz, Niobium-based capacitor anode.
  49. Fife, James A., Nitrided niobium powders and niobium electrolytic capacitors.
  50. Fife, James A., Nitrided niobium powders and niobium electrolytic capacitors.
  51. Yuan,Shi, Nitrided valve metal material and method of making same.
  52. Yuan,Shi, Nitrided valve metal material and method of making same.
  53. Rao, Bhamidipaty K. D. P.; Yuan, Shi, Nitrided valve metals and processes for making the same.
  54. Rao, deceased,Bhamidipaty K. D. P., Nitrided valve metals and processes for making the same.
  55. Oda, Yukio; Horio, Isayuki, Nitrogen containing metal powder, production process therefor, and porous sintered body and solid electrolytic capacitor using same.
  56. Oda,Yukio; Izumi,Tomoo; Noguchi,Yoshikazu, Nitrogen-containing metal powder, production process thereof, and porous sintered body and solid electrolytic capacitor using the metal powder.
  57. Oda,Yukio; Izumi,Tomoo; Noguchi,Yoshikazu, Nitrogen-containing metal powder, production process thereof, and porous sintered body and solid electrolytic capacitor using the metal powder.
  58. Melody, Brian John; Kinard, John Tony; Wheeler, David Alexander; Lessner, Philip Michael, Non-aqueous electrolytes and method for anodizing.
  59. Brian John Melody ; John Tony Kinard ; David Alexander Wheeler ; Philip Michael Lessner, Non-aqueous electrolytes for anodizing.
  60. Kimmel, Jonathon L.; Kitchell, Ricky W., Oxygen reduced niobium oxides.
  61. Reed, David M.; Venigalla, Sridhar; Kerchner, Jeffrey A., Phase formation of oxygen reduced valve metal oxides and granulation methods.
  62. Bates, James Steven; Pease, Robert Hazen, Planar anode for use in a wet electrolytic capacitor.
  63. Biler, Martin; Sita, Zdenek, Polymer based solid state capacitors and a method of manufacturing them.
  64. Naito, Kazumi; Nagato, Nobuyuki, Powder for capacitor, sintered body and capacitor using the sintered body.
  65. Jones, Brady A.; McCracken, Colin; Fife, James; Margerison, Ian; Karnik, Tomas, Powder modification in the manufacture of solid state capacitor anodes.
  66. Naito, Kazumi, Powdered niobium, sintered body thereof, capacitor using the sintered body and production method of the capacitor.
  67. Yuri L. Pozdeev-Freeman, Sintered Tantalum and Niobium capacitor pellets doped with Nitrogen, and method of making the same.
  68. Breznova, Hana; Biler, Martin, Sintered anode pellet etched with an organic acid for use in an electrolytic capacitor.
  69. Breznova, Hana; Biler, Martin, Sintered anode pellet treated with a surfactant for use in an electrolytic capacitor.
  70. Tripp, Terrance B.; Cox, Barbara L., Tantalum and tantalum nitride powder mixtures for electrolytic capacitors substrates.
  71. Tripp, Terrance B.; Cox, Barbara L., Tantalum and tantalum nitride powder mixtures for electrolytic capacitors substrates.
  72. Mizusaki, Yujiro; Iijima, Hitoshi; Noguchi, Yoshikazu, Tantalum powder and methods of manufacturing same.
  73. Fife,James Allen; Sebald,Zebbie Lynn; Ning,Gang, Wet electrolytic capacitor.
  74. Fife,James Allen; Ning,Gang; Sebald,Zebbie Lynn; Bates,James Steven; Pease,Robert Hazen, Wet electrolytic capacitor containing a cathode coating.
  75. Jones, Brady; Ning, Gang; Rawal, Bharat, Wet electrolytic capacitor containing a plurality of thin powder-formed anodes.
  76. Fife,James A.; Ning,Gang; Jones,Brady, Wet electrolytic capacitors.
  77. Fife,James A.; Ning,Gang; Jones,Brady, Wet electrolytic capacitors.
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