Claims
- 1. A power converter, comprising:
a symmetrical half-bridge converter including a transformer having a primary winding and first and second secondary windings, a primary circuit coupled to the primary winding, a first rectifier circuit coupled to the first secondary winding, and a second rectifier circuit coupled to the second secondary winding; and first and second buck converters coupled to the half-bridge converter.
- 2. The power converter of claim 1, wherein the primary circuit of the half-bridge converter includes first and second unregulated primary switches.
- 3. The power converter of claim 2, wherein the first and second primary switches each have a duty cycle of less than fifty percent such that the first switch is turned on when a voltage drop across the first switch is substantially zero and such that the second switch is turned on when a voltage drop across the second switch is substantially zero.
- 4. The power converter of claim 3, wherein the first buck converter is coupled to the first rectifier circuit, the second buck converter is coupled to the second rectifier circuit, and outputs of the first and second buck converters are combined to provide a single output.
- 5. The power converter of claim 4, wherein the first rectifier circuit includes a first synchronous rectifier.
- 6. The power converter of claim 5, wherein the second rectifier circuit includes a second synchronous rectifier.
- 7. The power converter of claim 6, wherein at least one of the first and second synchronous rectifiers is control-driven.
- 8. The power converter of claim 6, wherein at least one of the first and second synchronous rectifiers is self-driven.
- 9. The power converter of claim 5, wherein the second rectifier circuit includes a diode.
- 10. The power converter of claim 4, wherein:
the first rectifier circuit includes a diode; and the second rectifier circuit includes a diode.
- 11. The power converter of claim 4, wherein the first buck converter includes:
first and second rectifying devices coupled to the first rectifier circuit of the half-bridge converter; a first inductor having a first terminal coupled to both the first and second rectifying devices of the first buck converter; and a capacitor coupled to a second terminal of the first inductor.
- 12. The power converter of claim 11, wherein at least one of the first and second rectifying devices includes a synchronous rectifier.
- 13. The power converter of claim 11, wherein the second buck converter includes:
third and fourth rectifying devices coupled to the second rectifier circuit of the half-bridge converter; and a second inductor having a first terminal coupled to both the third and fourth rectifying devices of the second buck converter and having a second terminal coupled to the capacitor of the first buck converter.
- 14. The power converter of claim 3, wherein:
the first buck converter is coupled to both the first and second rectifier circuits and wherein the first buck converter is for producing a first output voltage; and the second buck converter is coupled to both the first and second rectifier circuits and wherein the second buck converter is for producing a second output voltage.
- 15. The power converter of claim 14, wherein:
the first rectifier circuit of the half-bridge converter circuit includes a first synchronous rectifier; and the second rectifier circuit of the half-bridge converter circuit includes a second synchronous rectifier.
- 16. The power converter of claim 15, wherein the first and second synchronous rectifiers are self-driven.
- 17. The power converter of claim 16, further comprising a first gate drive circuit coupled to the first synchronous rectifier.
- 18. The power converter of claim 17, wherein the first gate drive circuit includes a FET.
- 19. The power converter of claim 17, further comprising a second gate drive circuit coupled to the second synchronous rectifier.
- 20. The power converter of claim 16, wherein:
the first buck converter includes first and second rectifying devices, a first inductor having a first terminal coupled to both the first and second rectifying devices, and a first capacitor coupled to a second terminal of the first inductor; and the second buck converter includes third and fourth rectifying devices, a second inductor having a first terminal coupled to both the third and fourth rectifying devices, and a second capacitor coupled to a second terminal of the second inductor.
- 21. The power converter of claim 20, wherein:
the first rectifying device of the first buck converter includes a first switch; and the second rectifying device of the first buck converter includes a second switch.
- 22. The power converter of claim 21, wherein the first buck converter includes a first edge-synchronized control circuit coupled to the first and second switches of the first buck converter.
- 23. The power converter of claim 22, wherein:
the third rectifying device of the second buck converter includes a third switch; the fourth rectifying device of the second buck converter includes a fourth switch; and the second buck converter includes a second edge-synchronized control circuit coupled to the third and fourth switches.
- 24. The power converter of claim 23, further comprising:
a primary control circuit for controlling the first and second primary switches; and a synchronization circuit coupled between the primary control circuit and the first and second edge-synchronized control circuits.
- 25. The power converter of claim 24, wherein the synchronization circuit includes:
a first transistor having first and second terminals defining a conduction path therebetween and having a control terminal, wherein the control terminal is coupled to a synchronization output terminal of the primary control circuit; a second transistor having first and second terminals defining a conduction path therebetween and having a control terminal, wherein the control terminal is coupled to the first terminal of the first transistor and the first terminal of the second transistor is coupled to the first and second edge-synchronized control circuits; and a first capacitor coupled between the first terminal of the first transistor and the control terminal of the second transistor.
- 26. The power converter of claim 25, wherein:
the first terminal of the first transistor of the synchronization circuit is coupled to a primary ground; and the second terminal of the second transistor of the synchronization circuit is coupled to a secondary ground; the synchronization circuit further includes a second capacitor coupled between primary ground and secondary ground.
- 27. The power converter of claim 1, further comprising:
a second symmetrical half-bridge converter coupled in parallel with the half-bridge converter; and third and fourth buck converters coupled to the second symmetrical half-bridge converter.
- 28. The power converter of claim 27, wherein outputs of the first, second, third, and fourth buck converters are coupled together.
- 29. A power converter, comprising:
a first power conversion stage including a transformer, at least two unregulated primary switches coupled to the transformer, a first rectifier circuit coupled to the transformer, and a second rectifier circuit coupled to the transformer; and a second power conversion stage coupled to the first and second rectifier circuits of the first power conversion stage, the second power conversion stage including first and second buck converters.
- 30. The power converter of claim 29, wherein the first power converter stage includes a circuit selected from the group consisting of a half-bridge converter circuit, a full-bridge converter circuit, and a push-pull converter circuit.
- 31. The power converter of claim 29, wherein the first and second primary switches have a duty cycle of less than fifty percent such that the first switch is turned on when a voltage drop across the first switch is substantially zero and such that the second switch is turned on when a voltage drop across the second switch is substantially zero.
- 32. The power converter circuit of claim 29, wherein:
the transformer includes first and second secondary windings; the first rectifier circuit is coupled to the first secondary winding; and the second rectifier circuit is coupled to the second secondary winding.
- 33. The power converter of claim 32, wherein the first buck converter is coupled to an output of the first rectifier circuit, the second buck converter is coupled an output of the second rectifier circuit, and outputs of the first and second buck converters are combined to provide a single output.
- 34. The power converter of claim 32, wherein:
the first buck converter is coupled to the first and second rectifier circuits and is for producing a first output voltage; and the second buck converter is coupled to the first and second rectifier circuits and is for producing a second output voltage.
- 35. The power converter of claim 34, wherein the first rectifier circuit includes a self-driven synchronous rectifier and the second rectifier circuit includes a second self-driven synchronous rectifier.
- 36. The power converter of claim 35, further comprising:
a first gate drive circuit coupled to the first synchronous rectifier; and a second gate drive circuit coupled to the second synchronous rectifier.
- 37. The power converter of claim 35, wherein at least one of the first and second gate drive circuits includes a FET.
- 38. The power converter of claim 34, wherein:
the first buck converter includes a first edge-synchronized control circuit; and the second buck converter includes a second edge-synchronized control circuit.
- 39. The power converter of claim 38, further comprising:
a primary control circuit for controlling the at least two unregulated primary switches; and a synchronization circuit coupled between the primary control circuit and the first and second edge-synchronized control circuits.
- 40. The power converter of claim 39, wherein the synchronization circuit includes:
a first transistor having first and second terminals defining a conduction path therebetween and having a control terminal, wherein the control terminal is coupled to a synchronization output terminal of the primary control circuit; a second transistor having first and second terminals defining a conduction path therebetween and having a control terminal, wherein the control terminal is coupled to the first terminal of the first transistor and the first terminal of the second transistor is coupled to the first and second edge-synchronized control circuits; and a first capacitor coupled between the first terminal of the first transistor and the control terminal of the second transistor.
- 41. The power converter of claim 40, wherein:
the first terminal of the first transistor of the synchronization circuit is coupled to a primary ground; and the second terminal of the second transistor of the synchronization circuit is coupled to a secondary ground; the synchronization circuit further includes a second capacitor coupled between primary ground and secondary ground.
- 42. The power converter of claim 29, wherein:
the transformer includes a secondary winding; the first rectifier circuit includes a first synchronous rectifier having a control terminal coupled a first terminal of the secondary winding of the transformer; and the second rectifier circuit includes a second synchronous rectifier having a control terminal coupled a second terminal of the secondary winding of the transformer.
- 43. The power converter of claim 29, wherein:
the transformer includes a secondary winding; the first rectifier circuit includes a first diode having a cathode terminal coupled to a first terminal of the secondary winding of the transformer; and the second rectifier circuit includes a second diode having a cathode terminal coupled to a second terminal of the secondary winding of the transformer.
- 44. A power converter, comprising:
a symmetrical half-bridge converter including a transformer having a primary winding and first and second secondary windings, a primary circuit coupled to the primary winding, a first rectifier circuit coupled to the first secondary winding, and a second rectifier circuit coupled to the second secondary winding; and a first buck converter coupled to the first and second rectifier circuits of the half-bridge converter.
- 45. The power converter of claim 44, wherein the primary circuit of the half-bridge converter includes first and second unregulated primary switches.
- 46. The power converter of claim 45, wherein the first and second primary switches have a duty cycle of less than fifty percent such that the first switch is turned on when a voltage drop across the first switch is substantially zero and such that the second switch is turned on when a voltage drop across the second switch is substantially zero.
- 47. The power converter of claim 46, wherein:
the first rectifier circuit includes a first synchronous rectifier; and the second rectifier circuit includes a second synchronous rectifier.
- 48. The power converter of claim 46, wherein:
the first rectifier circuit includes a first diode; and the second rectifier circuit includes a second diode.
- 49. A power converter, comprising:
a symmetrical half-bridge converter including a transformer having a primary winding and a secondary winding, and a primary circuit coupled to the primary winding; and first and second buck converters coupled to the secondary winding of the transformer.
- 50. The power converter of claim 49, wherein the primary circuit of the half-bridge converter includes first and second unregulated primary switches.
- 51. The power converter of claim 50, wherein the first and second primary switches have a duty cycle of less than fifty percent such that the first switch is turned on when a voltage drop across the first switch is substantially zero and such that the second switch is turned on when a voltage drop across the second switch is substantially zero.
- 52. The power converter of claim 51, wherein:
the first buck converter includes first and second rectifying devices coupled to the secondary winding of the transformer, a first inductor having a first terminal coupled to both the first and second rectifying devices, and a capacitor coupled to a second terminal of the first inductor; and the second buck converter includes third and fourth rectifying devices coupled to the secondary winding of the transformer, a second inductor having a first terminal coupled to both the third and fourth rectifying devices and having a second terminal coupled to the first capacitor.
- 53. The power converter of claim 52, wherein:
at least one of the first and second rectifying devices includes a synchronous rectifier; and at least one of the third and fourth rectifying devices includes a synchronous rectifier.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. § 119(e) to provisional U.S. patent application Ser. No. 60/194,511, filed Apr. 4, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60194511 |
Apr 2000 |
US |