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Metal-air battery power supply 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/04
출원번호 US-0243912 (1988-09-13)
발명자 / 주소
  • Cheiky Michael C. (Santa Barbara CA)
출원인 / 주소
  • Dreisbach Electromotive, Inc. (Santa Barbara CA 02)
인용정보 피인용 횟수 : 74  인용 특허 : 1

초록

A metal-air battery power supply for powering a device includes an enclosed container having an air inlet, an air outlet, and an array of connected metal-air battery cells therein. The container is sealed during non-use. When a power switch is turned on, the air inlet and air outlet are opened. At t

대표청구항

A metal-air battery power supply for powering a device, comprising: an enclosed power supply container, including: an air inlet for allowing air to flow into the power supply container; an air outlet for allowing air to flow out of the power supply container; baffle means for alternately opening and

이 특허에 인용된 특허 (1)

  1. Beal Daniel W. (East Hartford CT) Scheffler Glenn W. (Tolland CT), Augmented air supply for fuel cell power plant during transient load increases.

이 특허를 인용한 특허 (74)

  1. John D. Witzigreuter, Air delivery system with volume-changeable plenum for metal-air battery.
  2. Witzigreuter John D., Air distributors for metal-air cells.
  3. Pedicini Christopher S. ; Gray Gary E. ; Kurle Wayne, Air manager control using cell load characteristics as auto-reference.
  4. Pedicini Christopher S. ; Gray Gary E., Air manager control using cell voltage as auto-reference.
  5. Vu, Viet H.; Cheeseman, Paul G.; Syvertsen, Marc L.; Thompson, John A.; Pedicini, Christopher S.; Witzigreuter, John D., Air manager for metal-air cells.
  6. Molloy, Kevin; Thompson, John A.; Yonjan, Bikram; Yoppolo, Robert, Air manager system for metal air battery.
  7. Christopher S. Pedicini ; Dennis P. Sieminski ; Gary E. Gray ; John D. Witzigreuter, Air manager systems for batteries utilizing a diaphragm or bellows.
  8. Pedicini, Christopher S., Air managing systems and methods for gas depolarized power supplies utilizing a diaphragm.
  9. John D. Witzigreuter ; Jeffrey E. Young, Air mover for a battery utilizing a variable volume enclosure.
  10. Dunigan Francis X. ; Berdich Edward C. ; Draper Peter M., Apparatus for sensing oxygen concentration.
  11. Faris, Sadeg M.; Tsai, Tsepin, Appliance with refuelable and rechargeable metal-air fuel cell battery power supply unit integrated therein.
  12. Sadeg M. Faris ; Tsepin Tsai ; Thomas J. Legbandt ; Wayne Yao ; Muguo Chen, Cathode belt structure for use in a metal-air fuel cell battery system and method of fabricating the same.
  13. Faris Sadeg M. ; Tsai Tsepin ; Legbandt Thomas J. ; Yao Wayne ; Chen Muguo, Cathode cylinder for use in metal-air fuel cell battery systems and method of fabricating the same.
  14. Faris Sadeg M. ; Tsai Tsepin ; Legbandt Thomas J. ; Yao Wayne ; Chen Muguo, Cathode cylinder for use in metal-air fuel cell battery systems and method of fabricating the same.
  15. Tinker Lawrence A. ; Bentz R. Dennis, Cylindrical metal-air battery with a cylindrical peripheral air cathode.
  16. Sieminski Dennis P. ; Schmieder Daniel J., Device and a method allowing multiple batteries to share a common load.
  17. Pedicini Christopher S. ; Witzigrueter John D., Diffusion controlled air vent and recirculation air manager for a metal-air battery.
  18. Pedicini Christopher S. (Marietta GA), Diffusion controlled air vent for a metal-air battery.
  19. Tinker, Lawrence A.; Witzigreuter, John D., Electrical device with removable enclosure for electrochemical cell.
  20. Faris Sadeg M. ; Tsai Tsepin, Electrical power generation system having means for managing the discharging and recharging of metal fuel contained within a network of metal-air fuel cell battery subsystems.
  21. Tsai, Tsepin; Faris, Sadeg M., Electro-chemical power generation systems employing arrays of electronically-controllable discharging and/or recharging cells within a unitary support structure.
  22. Tsepin Tsai ; Sadeg M. Faris, Electro-chemical power generation systems employing arrays of electronically-controllable discharging and/or recharging cells within a unity support structure.
  23. Schumm, Jr.,Brooke, Fluid regulating microvalve assembly for fluid consuming cells.
  24. William A. Fuglevand ; Shiblihanna I. Bayyuk ; Greg Lloyd ; Peter D. Devries ; David R. Lott ; John P. Scartozzi, Fuel cell power systems and methods of controlling a fuel cell power system.
  25. William A. Fuglevand ; Jonathan Dodge, Fuel cell power systems, direct current voltage converters, fuel cell power generation methods, power conditioning methods and direct current power conditioning methods.
  26. Faris, Sadeg M.; Tsai, Tsepin; Yao, Wenbin; Li, Lin-Feng; Tzeng, George Tzong-Chyi; Rabin, Michael; Morris, William, Fuel cell support and electrical interconnector.
  27. Faris, Sadeg M.; Tsai, Tsepin; Yao, Wayne; Chang, Yuen-Ming, Fuel containment and recycling system.
  28. Faris,Sadeg M.; Tsai,Tsepin; Yao,Wenbin; Chang,Yuen Ming, Fuel containment and recycling system.
  29. Dennis Paul Sieminski ; Leonard J. Hope, Geometry change diffusion tube for metal-air batteries.
  30. Wilk, Michael D.; Stone, Kevin T.; Quintana, Nino Adrian Villegas, High-power ultracapacitor energy storage pack and method of use.
  31. Wilk,Michael D.; Stone,Kevin T.; Quintana,Nino Adrian Villegas, High-power ultracapacitor energy storage pack and method of use.
  32. Faris Sadeg M. ; Tsai Tsepin ; Legbandt Thomas J. ; Yao Wayne ; Chen Muguo, Ionically-conductive belt structure for use in a metal-air fuel cell battery system and method of fabricating the same.
  33. Christopher S. Pedicni, Load responsive air door for an electrochemical cell.
  34. Sadeg M. Faris ; Tsepin Tsai ; Thomas J. Legbandt ; Wayne Yao ; Muguo Chen, METAL-AIR FUEL CELL BATTERY SYSTEM EMPLOYING HYDROSTATIC FORCES TO ENABLE SIMULTANEOUS TRANSPORT OF METAL-FUEL TAPE, MOVABLE CATHODE STRUCTURE, AND IONICALLY-CONDUCTIVE MEDIUM THERETHROUGH DURING SYS.
  35. Sadeg M. Faris ; Tsepin Tsai, METAL-AIR FUEL CELL BATTERY SYSTEMS HAVING A METAL-FUEL CARD STORAGE CARTRIDGE, INSERTABLE WITHIN A FUEL CARTRIDGE INSERTION PORT, CONTAINING A SUPPLY OF SUBSTANTIALLY PLANAR DISCRETE METAL-FUEL CARD.
  36. Faris, Sadeg M., Metal air cell incorporating ionic isolation systems.
  37. Huang, Wen C., Metal-air battery system with programmed-timing activation.
  38. Sieminski Dennis P. ; Brammer David A. ; Champion Edward R., Metal-air battery with a reactant air pathway.
  39. Liu, Jean; Huang, Wayne, Metal-air battery with an extended service life.
  40. Huang,Wen C., Metal-air battery with programmed-timing activation.
  41. Faris, Sadeg M.; Tsai, Tsepin, Metal-air fuel cell battery (FCB) electrical power producing module with multi-element cathode structure and insertable metal-fuel card(s).
  42. Sadeg M. Faris ; Tsepin Tsai ; Thomas J. Legbandt ; Wayne Yao ; Muguo Chen, Metal-air fuel cell battery system employing a plurality of moving cathode structures for improved volumetric power density.
  43. Faris, Sadeg M.; Chang, Yuen-Ming; Tsai, Tsepin; Yao, Wayne, Metal-air fuel cell battery system employing metal-fuel cards.
  44. Faris Sadeg M. ; Chang Yuen-Ming ; Tsai Tsepin ; Yao Wayne, Metal-air fuel cell battery system employing substantially planar metal-fuel cards of rigid construction insertable into a power generation bay of the system.
  45. Sadeg M. Faris, Metal-air fuel cell battery system having means for bi-directionally transporting metal-fuel tape and managing metal-fuel available therealong.
  46. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery system having means for controlling discharging and recharging parameters for improved operating efficiency.
  47. Faris Sadeg M., Metal-air fuel cell battery system having means for discharging and recharging metal-fuel cards supplied from a cassette-type storage device.
  48. Faris, Sadeg M.; Tsai, Tsepin, Metal-air fuel cell battery system having means for recording and reading operating parameters during discharging and recharging modes of operation.
  49. Tsepin Tsai ; Sadeg M. Faris, Metal-air fuel cell battery system with multiple cells and integrated apparatus for producing power signals with stepped-up voltage levels by selectively discharging the multiple cells.
  50. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery systems employing means for discharging and recharging metal-fuel cards.
  51. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery systems having mechanism for extending the path length of metal-fuel tape during discharging and recharging modes of operation.
  52. Faris, Sadeg M.; Tsai, Tsepin, Metal-air fuel cell battery systems having mechanism for extending the path length of metal-fuel tape during discharging and recharging modes of operation.
  53. Sadeg M. Faris ; Yuen-Ming Chang ; Tsepin Tsai ; Wayne Yao, Metal-fuel card with a plurality of metal-fuel elements and corresponding contact apertures, and electro-chemical electric power generation devices employing same.
  54. Ramsey ; Jr. John W. (Wichita Falls TX), Metal/air battery cell and assembly therefor.
  55. Sadeg M. Faris ; Tsepin Tsai, Method of and system for producing and supplying electrical power to an electrical power consuming device using a metal-air fuel cell battery (FCB) module and a supply of metal-fuel cards.
  56. Sherman, Faiz Feisal; Gartstein, Vladimir; Quiram, Daniel Jonathan, Microvalve for controlling fluid flow.
  57. Sherman, Faiz Feisal; Gartstein, Vladimir; Quiram, Daniel Jonathan, Microvalve for controlling fluid flow.
  58. Sherman, Faiz Feisal; Gartstein, Vladimir; Quiram, Daniel Jonathan, Microvalve for controlling fluid flow.
  59. Sherman,Faiz Feisal; Gartstein,Vladimir; Quiram,Daniel Jonathan, Microvalve for controlling fluid flow.
  60. Sherman,Faiz Feisal; Gartstein,Vladimir; Quiram,Daniel Jonathan, Microvalve for controlling fluid flow.
  61. Morris William F. ; Tsai Tsepin, Movable anode fuel cell battery.
  62. William F. Morris ; Tsepin Tsai, Movable anode fuel cell battery.
  63. Takashi Oda JP; Tatsuhito Horiuchi JP, Power supply apparatus.
  64. Colborn, Jeffrey A., Power system including heat removal unit for providing backup power to one or more loads.
  65. Pedicini Christopher S ; Witzigreuter John D. ; Gray Gary E., Primary metal-power source and ventilation system for the same.
  66. Stuhler Walter,DEX ; Stenger Herbert,DEX ; Keim Martin,DEX, Process for operation of a PEM fuel cell unit.
  67. Faris, Sadeg M.; Tsai, Tsepin, Refuelable and rechargeable metal-air fuel cell battery power supply unit for integration into an appliance.
  68. Ein-Eli, Yair; MacDonald, Digby Donald, Silicon-air batteries.
  69. Ein-Eli, Yair; MacDonald, Digby Donald, Silicon-air batteries.
  70. Gray, Gary Edward; Witzigreuter, John Douglas; Pedicini, Christopher Steven, Synthetic jet for admitting and expelling reactant air.
  71. Faris Sadeg M. ; Chang Yuen-Ming ; Tsai Tsepin ; Yao Wenbin, System and method for producing electrical power using metal-air fuel cell battery technology.
  72. Wilk, Michael D.; Stone, Kevin T., Ultracapacitor energy storage cell pack and methods of assembling and cooling the same.
  73. Pedicni Christopher S., Uniform shell for a metal-air battery stack.
  74. Golovin Neal ; Koehly Chris ; Pearson Kendall R. ; Brose Daniel J. ; Burns Walter F., Water recovery using a bi-directional air exchanger for a metal-air battery.
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