Claims
- 1. A non-hermetically sealed, electrochemical power source, comprising:
a first electrode; a second electrode; a separator between the first electrode and the second electrode; and a membrane in fluid communication with an environment external to the battery, the second electrode being between the separator and the membrane,
wherein the membrane comprises a first portion having a density different than a second portion of the membrane.
- 2. The power source of claim 1, further comprising a container having an air access opening, wherein the first portion is adjacent to the air access opening and has a density higher than the second portion.
- 3. The power source of claim 2, wherein the second portion is farther from the air access opening than the first portion is from the air access opening.
- 4. The power source of claim 2, wherein the first portion is aligned with the air access opening.
- 5. The power source of claim 2, wherein the first portion has an area greater than the area of the air access opening.
- 6. The power source of claim 1, wherein the membrane is permeable to a gas.
- 7. The power source of claim 1, wherein the first and second portions are integrally formed as one component.
- 8. The power source of claim 1, wherein the membrane comprises polytetrafluoroethylene.
- 9. The power source of claim 1, wherein the power source comprises a metal-air cell.
- 10. The power source of claim 1, further comprising a container having a plurality of air access openings, wherein the membrane has uniform mass transport resistance to a gas flowing through the air access openings.
- 11. A non-hermetically sealed, electrochemical power source, comprising:
a first electrode; a second electrode; a separator between the first electrode and the second electrode; and a membrane in fluid communication with an environment external to the battery, the second electrode being between the separator and the membrane,
wherein the membrane comprises a first portion having a porosity different than a second portion of the membrane.
- 12. The power source of claim 11, further comprising a container having an air access opening, wherein the first portion is adjacent to the air access opening and has a porosity lower than the second portion.
- 13. The power source of claim 12, wherein the second portion is farther from the air access opening than the first portion is from the air access opening.
- 14. The power source of claim 12, wherein the first portion is aligned with the air access opening.
- 15. The power source of claim 12, wherein the first portion has an area greater than the area of the air access opening.
- 16. The power source of claim 11, wherein the membrane is permeable to a gas.
- 17. The power source of claim 11, wherein the first and second portions are integrally formed as one component.
- 18. The power source of claim 11, wherein the membrane comprises polytetrafluoroethylene.
- 19. The power source of claim 11, wherein the power source comprises a metal-air cell.
- 20. The power source of claim 11, further comprising a container having a plurality of air access openings, wherein the membrane has uniform mass transport resistance to a gas flowing through the air access openings.
- 21. A non-hermetically sealed, electrochemical power source, comprising:
a first electrode; a second electrode; a separator between the first electrode and the second electrode; and a material in fluid communication with an environment external to the battery, the second electrode being between the separator and the material,
wherein gas permeability across a first portion of the material is different than gas permeability across a second portion of the material.
- 22. The power source of claim 21, further comprising a container having an air access opening, wherein the first portion is adjacent to the air access opening and has a gas permeability lower than the second portion.
- 23. The power source of claim 22, wherein the second portion is farther from the air access opening than the first portion is from the air access opening.
- 24. The power source of claim 22, wherein the first portion is aligned with the air access opening.
- 25. The power source of claim 22, wherein the first portion has an area greater than the area of the air access opening.
- 26. The power source of claim 21, wherein the material is permeable to a gas.
- 27. The power source of claim 21, wherein the first and second portions are integrally formed as one component.
- 28. The power source of claim 21, wherein the material comprises polytetrafluoroethylene.
- 29. The power source of claim 21, wherein the power source comprises a metal-air cell.
- 30. The power source of claim 21, further comprising a container having a plurality of air access openings, wherein the material has uniform mass transport resistance to a gas flowing through the air access openings.
- 31. A non-hermetically sealed, electrochemical power source, comprising:
a first electrode; a second electrode; a separator between the first electrode and the second electrode; and a membrane in fluid communication with an environment external to the battery, the second electrode being between the separator and the membrane,
wherein the membrane comprises a first portion having a mass transport resistance different than a second portion of the membrane.
- 32. The power source of claim 31, further comprising a container having an air access opening, wherein the first portion is adjacent to the air access opening and has a mass transport resistance higher than the second portion.
- 33. The power source of claim 32, wherein the second portion is farther from the air access opening than the first portion is from the air access opening.
- 34. The power source of claim 32, wherein the first portion is aligned with the air access opening.
- 35. The power source of claim 32, wherein the first portion has an area greater than the area of the air access opening.
- 36. The power source of claim 31, wherein the membrane is permeable to a gas.
- 37. The power source of claim 31, wherein the first and second portions are integrally formed as one component.
- 38. The power source of claim 31, wherein the membrane comprises polytetrafluoroethylene.
- 39. The power source of claim 31, wherein the power source comprises a metal-air cell.
- 40. The power source of claim 31, further comprising a container having a plurality of air access openings, wherein the membrane has uniform mass transport resistance to a gas flowing through the air access openings.
- 41. A non-hermetically sealed, electrochemical power source, comprising:
a first electrode; a second electrode; a separator between the first electrode and the second electrode; and
wherein the separator comprises a first portion having a mass transport resistance different than a second portion of the separator.
- 42. The power source of claim 41, further comprising a container having an air access opening, wherein the first portion is adjacent to the air access opening and has a mass transport resistance higher than the second portion.
- 43. The power source of claim 42, wherein the second portion is farther from the air access opening than the first portion is from the air access opening.
- 44. The power source of claim 42, wherein the first portion is aligned with the air access opening.
- 45. The power source of claim 42, wherein the first portion has an area greater than the area of the air access opening.
- 46. The power source of claim 41, wherein the first and second portions are integrally formed as one component.
- 47. The power source of claim 41, wherein the power source comprises a metal-air cell.
- 48. A battery cartridge, comprising:
a housing having a plurality of air access openings configured to selectably control flow of a gas into the housing; and an electrochemical cell in the housing, the cell having a top surface adjacent to the air access openings and a side surface,
wherein the openings are positioned over the side surface of the cell, and the housing is free of openings completely over the top surface of the cell.
- 49. The cartridge of claim 48, comprising two adjacent electrochemical cells in the cartridge, the cells defining a gap therebetween, wherein the openings are only positioned over the side surfaces of the cells and over the gap.
- 50. The cartridge of claim 48, comprising two adjacent electrochemical cells in the cartridge, the cells defining a gap therebetween, wherein the openings are only positioned over the side surfaces of the cells or over the gap.
- 51. The cartridge of claim 48, wherein the openings are off-centered away from the cell.
- 52. The cartridge of claim 48, wherein the openings are centered over the side surface of the cell.
- 53. A battery, comprising:
a cathode having an interior surface and an exterior surface, the cathode defining a cavity and two open ends; a separator disposed adjacent to the interior surface of the cathode; an anode disposed adjacent to the separator and inside the cavity; an air-permeable, liquid-impermeable barrier layer disposed adjacent to the exterior surface of the cathode, the barrier layer defining an exterior surface of the battery; two end members connected to the open ends of the cathode; and an anode current collector extending through the two end members.
- 54. The battery of claim 53, wherein the cathode comprises a current collector, and the battery further comprises a conductive tab connected to the current collector.
- 55. The battery of claim 54, wherein the current collector is connected together to form a seam, and the conductive tab is connected to the current collector along the seam.
- 56. The battery of claim 55, further comprising a sealant disposed over the conductive tab.
- 57. The battery of claim 53, wherein the barrier layer comprises polytetrafluoroethylene.
- 58. The battery of claim 53, wherein the end members are configured to mate with the cathode and align with the cathode along a longitudinal axis of the battery.
- 59. The battery of claim 53, further comprising a conductive tab connected to the anode current collector.
- 60. The battery of claim 53, wherein the end members and the cathode are connected by a sealant.
- 61. The battery of claim 53, wherein the end members comprise an electrically-insulating material.
- 62. The battery of claim 53, wherein the cathode has a substantially rectangular cross section.
- 63. The battery of claim 53, wherein the cathode has a substantially square cross section.
- 64. The battery of claim 53, wherein the cathode has a substantially triangular cross section.
- 65. The battery of claim 53, wherein the cathode has a substantially circular cross section.
- 66. The battery of claim 53, wherein the battery is dimensioned to fit inside a housing adapted to manage air flow into and out of the housing.
- 67. The battery of claim 53, wherein the battery is a metal-air battery.
CLAIM OF PRIORITY
[0001] This application claims priority under 35 USC §119(e) to U.S. Provisional Patent Application Serial No. 60/265,822, filed on Feb. 1, 2001, and entitled “Battery”, the entire contents of which are hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60265288 |
Feb 2001 |
US |