Claims
- 1. A circuit for heating an energy storage device comprising:a first switching device connected to the energy storage device; a second switching device connected to the energy storage device; and an inductor disposed between the first and second switching devices; wherein the first and second switching devices each include a transistor connected to the energy storage device and connected to the inductor and the first and second switching devices each include a diode connected in parallel with the transistor.
- 2. A device for circulating energy for performing a heating function comprising:an energy storage device comprising a plurality of energy storage cells; a first switching circuit connected to the energy storage device; a second switching circuit connected to the energy storage device; and an inductor connected between the first and second switching circuits; wherein the first and second switching circuits are alternately switched between a current conducting state and a non-conducting state for transferring energy back and forth between the energy device and the inductor; wherein the first and second switching circuits each include a transistor connected to the energy storage device and connected to the inductor and the first and second switching circuits each include a diode connected in parallel with the transistor.
- 3. A device for equalizing the energy potential within the cells of an energy storage device comprising:at least a first storage cell and a second storage cell contained within the energy storage device; a first switching circuit connected across the first storage cell; a second switching circuit connected across the second storage cell; and an inductor connected between the first and second switching circuits; the first and second switching circuits being alternately switched between a current conducting state and a non-conducting state for transferring energy between the first storage cell, the inductor, and the second storage cell, wherein the first and second switching circuits are alternately switched until a net energy transferred between the first storage cell and the second storage cell approaches zero; wherein the first and second switching circuits each include a transistor connected to the energy storage device and connected to the inductor and the first and second switching circuits each include a diode connected in parallel with the transistor.
- 4. A circuit for heating an energy storage device comprising:a first switching device connected to the energy storage device; a second switching device connected to the energy storage device; an inductor disposed between the first and second switching devices; and a frequency modulation circuit for alternately switching the first and second switching devices between a conducting state and a non-conducting state.
- 5. A device for circulating energy for performing a heating function comprising:an energy storage device comprising a plurality of energy storage cells; a first switching circuit connected to the energy storage device; a second switching circuit connected to the energy storage device; and an inductor connected between the first and second switching circuits; wherein the first and second switching circuits are alternately switched between a current conducting state and a non-conducting state for transferring energy back and forth between the energy device and the inductor; and a frequency modulation circuit for alternately switching the first and second switching circuits between a conducting state and a non-conducting state.
- 6. A device for equalizing the energy potential within the cells of an energy storage device comprising:at least a first storage cell and a second storage cell contained within the energy storage device; a first switching circuit connected across the first storage cell; a second switching circuit connected across the second storage cell; and an inductor connected between the first and second switching circuits; the first and second switching circuits being alternately switched between a current conducting state and a non-conducting state for transferring energy between the first storage cell, the inductor, and the second storage cell, wherein the first and second switching circuits are alternately switched until a net energy transferred between the first storage cell and the second storage cell approaches zero; a frequency modulation circuit for alternately switching the first and second switching circuits between a conducting state and a non-conducting state.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of United States patent application Ser. No. 09/070,331, filed Apr. 30, 1998, now U.S. Pat. No. 5,990,661.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
This invention was made with Government support under NREL subcontract number ZAN-6-16334-01, prime contract number DE-AC36-83CH10093 issued by the Department of Energy. The government has certain rights in this invention.
US Referenced Citations (21)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09/070331 |
Apr 1998 |
US |
Child |
09/400779 |
|
US |