Claims
- 1. A power converter for supplying power to a resonant load, comprising:
a single stage resonant energy transfer and PFC circuit for delivering power to the load while maintaining a high power factor; an energy storage device selectively coupled to an input of the power converter and the load for selectively storing input energy and supplying energy to the load; and the resonant energy transfer and PFC circuit being operable to draw a sinusoidal input current substantially in phase with an input voltage to obtain the high power factor.
- 2. The power converter of claim 1, wherein the energy storage device is a capacitor.
- 3. The power converter according to claim 1, wherein the single stage resonant power converter and PFC circuit is composed of three switches.
- 4. The power converter of claim 3, wherein two of the switches are arranged in a switching half-bridge across an input to the power converter.
- 5. The power converter according to claim 4, further comprising a switch connected between the switching half-bridge and the energy storage device.
- 6. The power converter according to claim 1, further comprising a single inductor.
- 7. The power converter according to claim 6, wherein the inductor is coupled between the switching half-bridge and the load.
- 8. The power converter according to claim 3, wherein the switches are operable to supply constant power to the load.
- 9. The power converter according to claim 1, wherein the sesonant load comprises a fluorescent lamp.
- 10. A power converter circuit for use with a rectified line input, comprising:
a switching half-bridge coupled to the rectified line input for drawing a sinusoidal current from the rectified line input in phase with an input voltage; a shunt switch coupled to the half-bridge for shunting current to or from the switching half-bridge; and an energy storage device coupled to the shunt switch for storing or releasing energy related to current shunted by the shunt switch.
- 11. The power converter according to claim 10, wherein the energy storage device is a capacitor.
- 12. The power converter according to claim 10, further comprising a resonant output stage coupled to the switching half-bridge.
- 13. The power converter according to claim 12, wherein the resonant output stage further comprises a lamp.
- 14. The power converter according to claim 10, further comprising a piezoelectric transformer coupled to the switching half-bridge.
- 15. The power converter according to claim 14, further comprising a resistive load coupled to the piezoelectric transformer, thereby forming an AC-to-DC converter.
- 16. The power converter according to claim 10, wherein the half-bridge and shunt switches are operable to achieve constant load power.
- 17. The power converter according to claim 16, wherein the half-bridge and shunt switches are operable to achieve constant load power in accordance with the following equations:
- 18. A method for operating a power converter circuit composed of a switching half-bridge coupled to a power converter input and a shunt switch coupled to the half-bridge and an energy storage device, comprising:
switching the half-bridge and shunt switches to achieve constant power delivered to a load; and switching the half-bridge and shunt switches to draw sinusoidal current from the power converter input in phase with an input voltage to thereby achieve a high power factor.
- 19. The method according to claim 18, further comprising operating the half-bridge and shunt switches according to the following equations:
- 20. The method according to claim 18, further comprising switching a switch in the half-bridge to supply current to the load and draw a sinusoidal current from the input to achieve high power factor.
- 21. The method according to claim 18, further comprising switching a switch in the half-bridge to obtain a recirculation path for load current.
- 22. The method according to claim 18, further comprising switching the shunt switch to transfer energy between the energy storage device, the input and the load.
- 23. The electronic ballast according to claim 3, wherein the switches are MOSFETs.
- 24. The power converter according to claim 10, wherein the switches are MOSFETs.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is based on and claims benefit of U.S. Provisional Application No. 60/450,572 filed Feb. 27, 2003, entitled NEW SINGLE-STAGE PFC AND BALLAST CONTROL CIRCUIT/GENERAL PURPOSE CONVERTER, to which a claim of priority is hereby made and which is hereby incorporated by reference into the present application in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
|
60450572 |
Feb 2003 |
US |