Claims
- 1. A converter circuit, comprising:
an AC-to-DC converter, comprising a plurality of first power devices; a resonant DC link, comprising at least one auxiliary power device; a DC-to-AC converter, comprising a plurality of second power devices; and DC link lines, coupling the AC-to-DC converter, the resonant link, and the DC-to-AC converter, wherein the auxiliary power device is coupled between the DC link lines.
- 2. The converter of claim 1, wherein the plurality of first power devices comprise:
first power devices selected from the group of MOS-FETs and npn bipolar transistors.
- 3. The converter of claim 2, wherein the plurality of first power devices comprise:
first power diodes, coupled across corresponding first power transistors.
- 4. The converter of claim 3, wherein the first power diodes being coupled across the first power transistors comprises a first power diode being coupled between a source and a drain of a MOS-FET first power transistor.
- 5. The converter of claim 3, wherein the first power devices are coupled pair-wise in series to form a plurality of first arms.
- 6. The converter of claim 5, wherein the AC-to-DC converter comprises at least one of three first arms and simple rectifiers, generating an essentially DC voltage.
- 7. The converter of claim 5, further comprising:
first terminals coupled to corresponding first arms, the first terminals operable to receive AC power from an AC power source.
- 8. The converter of claim 1, wherein the plurality of second power devices comprise:
second power transistors selected from the group of MOS-FETs and npn bipolar transistors.
- 9. The converter of claim 8, wherein the plurality of second power devices comprise:
second power diodes, coupled across corresponding second power transistors.
- 10. The converter of claim 9, wherein the second power diodes being coupled across the second power transistors comprises a second power diode being coupled between a source and a drain of a second MOS-FET power transistor.
- 11. The converter of claim 9, wherein the second power transistors are coupled pair-wise in series to form a plurality of second arms.
- 12. The converter of claim 11, wherein the DC-to-AC converter comprises three second arms.
- 13. The converter of claim 11, further comprising:
second terminals coupled to corresponding second arms, the second terminals operable to provide AC power to a load.
- 14. The converter of claim 1, wherein the DC-to-AC converter comprises:
a resonant capacitor; an equivalent power diode; and an equivalent switch; wherein
the resonant capacitor, the equivalent power diode, and the equivalent switch are coupled: between the DC link lines; and parallel with each other.
- 15. The converter of claim 1, wherein the auxiliary power device of the resonant DC link comprises:
an auxiliary power transistor, selected from the group of MOS-FETs and npn bipolar transistors.
- 16. The converter of claim 15, wherein the auxiliary power device of the resonant DC link comprises:
an auxiliary power diode, coupled across the auxiliary power transistor.
- 17. The converter of claim 1, wherein:
the auxiliary power device is not coupled into the DC link lines.
- 18. The converter of claim 16, wherein the resonant DC link comprises:
a first capacitor, coupled in series with the auxiliary power device; a resonant capacitor, comprising parasitic capacitors of the power devices; an inductance, coupled in parallel with the auxiliary power device and the first capacitor, the inductance forming a resonant circuit with the resonant capacitor; and a second capacitor, coupled in series with the switching LC resonator.
- 19. The converter of claim 18, outputting an output voltage between the DC link lines, wherein the output voltage is essentially clamped to the sum of the voltage across the first capacitor and the voltage across the second capacitor.
- 20. A method of operating a converter circuit, the converter circuit comprising an AC-to-DC converter, a resonant DC link, comprising at least one auxiliary power device, a DC-to-AC converter, and DC link lines, coupling the AC-to-DC converter, the resonant link, and the DC-to-AC converter, wherein the auxiliary power device is coupled between the DC link lines, the method comprising:
switching the auxiliary power device with an essentially zero voltage switching condition.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from provisional U.S. application 60/420,839: “Zero-voltage-switching SRDCL (single-switched resonant DC link) inverter with minimized conduction loss” by In-Hwan Oh, filed Oct. 23, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60420839 |
Oct 2002 |
US |