Claims
- 1. An electrochemical power source comprising:
a. a reservoir means, said reservoir means containing an electrolytic solution and a propelling means; b. a reaction chamber, said reaction chamber comprising a housing containing electrode means for generation of an electrical current responsive to a chemical reaction between said electrode means and said electrolytic solution; c. a conduit means, said conduit means being located between said reservoir means and said reaction chamber and being adapted to convey said electrolytic solution from the reservoir means to the reaction chamber; wherein said electrolytic solution is conveyed as a response to said propelling means.
- 2. The electrochemical power source of claim 1, wherein said propelling means is a temperature based system.
- 3. The electrochemical power source of claim 2, wherein the temperature based system is a second electric production means.
- 4. The electrochemical power source of claim 3, wherein the second electric production means comprises a resistor means layer.
- 5. The electrochemical power source of claim 2, wherein the temperature based system is a chemically based system.
- 6. The electrochemical power source of claim 1, wherein the propelling means comprises an expandable material.
- 7. The electrochemical power source of claim 1, wherein the propelling means is a pressure device sensitive to the overall location of the device to create a gradient.
- 8. The electrochemical power source of claim 1, wherein the electrode means are a plurality of electrode means.
- 9. The electrochemical power source of claim 1, wherein the conduit means comprises a valve means, a tube means or a combination of valve and tube means.
- 10. The electrochemical power source of claim 1, wherein the electrochemical power source is a micro-battery.
- 11. A method of generating an electrical current comprising:
a. providing a reservoir means said reservoir means containing an electrolytic solution and a propelling means; b. providing a reaction chamber, said reaction chamber containing electrode means contained within a housing said housing adapted to receive said electrolytic solution; c. providing a propelling means to move said electrolytic solution from said reservoir means into said reaction chamber to contact said electrodes and generate electric current.
- 12. The method of claim 11, including providing a propelling means that is a thermally based system.
- 13. The method of claim 12, including providing a second electric production means.
- 14. The method of claim 13, including providing as the second electric production means a resistor means layer.
- 15. The method of claim 12, including providing a chemically actuated thermal system.
- 16. The method of claim 11, including providing an expandable material as the propelling means.
- 17. The method of claim 11, including providing a pressure responsive system to the overall device to produce a fluid impelling gradient.
- 18. The method of claim 11, including providing a plurality of electrode means.
- 19. The method of claim 11, including providing a conduit means to convey the electrolytic solution between said reservoir means and said reaction chamber means selected from the group consisting of valve means, tubing means and combinations thereof.
- 20. The method of claim 11, including providing means that define the electric current generating means as a micro-battery.
STATEMENT OF GOVERNMENT INTEREST
[0001] The work that led to this invention has been supported in part by a grant from the U.S. Army, Space and Missile Defense command through Grant DASG60-00-C-0089. Thus, the United States Government may have certain rights to this invention.