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Cell for a metal-air battery 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-012/06
출원번호 US-0275588 (1994-07-15)
발명자 / 주소
  • Harats Yehuda (Jerusalem ILX) Dechovich Boris (Jerusalem ILX) Korall Menachem (Jerusalem ILX)
출원인 / 주소
  • Electric Fuel (E.F.L.) Ltd. (Jerusalem ILX 03)
인용정보 피인용 횟수 : 42  인용 특허 : 0

초록

A modular cell for a multi-cell metal-air battery system, comprises a relatively flat cell housing having two major surfaces and accommodating a pair of oppositely disposed, spaced-apart, air-permeable, liquid-impermeable cathodes in the form of air electrodes defining between themselves a space ope

대표청구항

A modular cell for a multi-cell metal-air battery system, comprising: a relatively flat cell housing having two major surfaces and accommodating a pair of oppositely disposed, spaced-apart, air-permeable, liquid-impermeable cathodes in the form of air electrodes defining between themselves a space o

이 특허를 인용한 특허 (42)

  1. Pedicini Christopher S. ; Gray Gary E. ; Kurle Wayne, Air manager control using cell load characteristics as auto-reference.
  2. Pedicini Christopher S. ; Gray Gary E., Air manager control using cell voltage as auto-reference.
  3. Molloy, Kevin; Thompson, John A.; Yonjan, Bikram; Yoppolo, Robert, Air manager system for metal air battery.
  4. Faris, Sadeg M.; Tsai, Tsepin, Appliance with refuelable and rechargeable metal-air fuel cell battery power supply unit integrated therein.
  5. Gary M. Searle, Battery.
  6. Searle, Gary M., Battery.
  7. Shrim Yaron,ILX ; Schneider Vladimir,ILX ; Gutkin Alex,ILX ; Gilon Yoel,ILX, Cell for a metal-air battery.
  8. Pedicini Christopher S. ; Witzigrueter John D., Diffusion controlled air vent and recirculation air manager for a metal-air battery.
  9. Pedicini Christopher S. (Marietta GA), Diffusion controlled air vent for a metal-air battery.
  10. 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.
  11. 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.
  12. Faris, Sadeg M.; Tsai, Tsepin; Yao, Wenbin; Li, Lin-Feng; Tzeng, George Tzong-Chyi; Rabin, Michael; Morris, William, Fuel cell support and electrical interconnector.
  13. Tsai, Tsepin; Yao, Wayne; Li, Lin-Feng; Tzeng, George; Rabin, Michael; Morris, William; Faris, Sadeg M., Fuel cell support and electrical interconnector.
  14. Faris, Sadeg M.; Tsai, Tsepin; Yao, Wayne; Chang, Yuen-Ming, Fuel containment and recycling system.
  15. Faris,Sadeg M.; Tsai,Tsepin; Yao,Wenbin; Chang,Yuen Ming, Fuel containment and recycling system.
  16. Simpson, Maria; Duffy, Torrence L.; Simpson, Charles, High-volume-manufacture fuel cell arrangement and method for production thereof.
  17. Friesen, Cody A.; Krishnan, Ramkumar; Mihalka, Michael; Friesen, Grant; Goodfellow, Andrew, Immersible gaseous oxidant cathode for electrochemical cell system.
  18. Friesen, Cody; Krishnan, Ramkumar; Mihalka, Michael; Friesen, Grant; Goodfellow, Andrew, Immersible gaseous oxidant cathode for electrochemical cell system.
  19. 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.
  20. Robert Payne ; Gary Searle ; Vance Rogers Shepard, Jr., Metal-air battery.
  21. Payne Robert ; Searle Gary ; Shepard ; Jr. Vance Rogers, Metal-air battery container.
  22. 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).
  23. Faris, Sadeg M.; Chang, Yuen-Ming; Tsai, Tsepin; Yao, Wayne, Metal-air fuel cell battery system employing metal-fuel cards.
  24. 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.
  25. Sadeg M. Faris, Metal-air fuel cell battery system having means for bi-directionally transporting metal-fuel tape and managing metal-fuel available therealong.
  26. 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.
  27. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery systems employing means for discharging and recharging metal-fuel cards.
  28. Lin, Wen-Pin, Metal-air fuel cell module.
  29. 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.
  30. Yang, De-Qian; Yang, Yu-Qiang, Metal-gas cell battery with soft pocket.
  31. 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.
  32. Morris William F. ; Tsai Tsepin, Movable anode fuel cell battery.
  33. William F. Morris ; Tsepin Tsai, Movable anode fuel cell battery.
  34. Smith, Brendan; Bendert, Richard; Bronczyk, Steve, Multi-cell battery assembly.
  35. Faris, Sadeg M.; Tsai, Tsepin, Refuelable and rechargeable metal-air fuel cell battery power supply unit for integration into an appliance.
  36. Shinji Hamada JP; Noriyuki Fujioka JP; Shuhei Marukawa JP; Toyohiko Eto JP, Structure for connecting a plurality of battery modules to constitute a battery pack.
  37. Chan, Alistair K.; Hyde, Roderick A.; Kare, Jordin T.; Wood, Jr., Lowell L., System and method of altering temperature of an electrical energy storage device or an electrochemical energy generation device using microchannels.
  38. Chan, Alistair K.; Hyde, Roderick A.; Kare, Jordin T.; Wood, Jr., Lowell L., System and method of operating an electrical energy storage device or an electrochemical energy generation device using thermal conductivity materials based on mobile device states and vehicle states.
  39. Chan, Alistair K.; Hyde, Roderick A.; Kare, Jordin T.; Wood, Jr., Lowell L., System and method of operating an electrical energy storage device or an electrochemical energy generation device, during charge or discharge using microchannels and high thermal conductivity materials.
  40. Chan, Alistair K.; Hyde, Roderick A.; Kare, Jordin T.; Wood, Jr., Lowell L., System for altering temperature of an electrical energy storage device or an electrochemical energy generation device using microchannels based on states of the device.
  41. Chan, Alistair K.; Hyde, Roderick A.; Kare, Jordin T.; Wood, Jr., Lowell L., System for operating an electrical energy storage device or an electrochemical energy generation device using microchannels based on mobile device states and vehicle states.
  42. 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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