Claims
- 1. A power converter, comprising:
a first circuit converting an AC input voltage to a first predetermined DC output voltage; a second circuit converting a DC input voltage to a second predetermined DC output voltage; a third circuit receiving said first and second predetermined DC voltages and, in response thereto, providing a selectable DC output voltage at a first output, wherein said selectable DC output voltage is established as a function a removable program module; and a fourth circuit coupled to said first output and providing a second DC output voltage at a second output, whereby said second DC voltage output is independent of, and substantially lower than said selectable DC output voltage.
- 2. The power converter of claim 1 further comprising a fifth circuit comprising a filter circuit adapted to filter said first and second predetermined DC output voltages and provide a respective first and second filtered DC output voltage at a common node.
- 3. The power converter of claim 1 wherein said first circuit comprises a AC-to-DC flyback converter, wherein said AC-to-DC flyback converter is adapted to provide a DC output voltage of between 15 VDC and 24 VDC.
- 4. The power converter of claim 1 wherein said second circuit comprises a DC-to-DC boost converter, wherein said DC-to-DC boost converter is adapted to provide a DC output voltage of between 15 VDC and 24 VDC.
- 5. The power converter of claim 1 wherein said third circuit includes a feedback circuit coupled to said first circuit and said second circuit, said feedback circuit regulating the first and second predetermined DC voltages generated by said first and second circuits.
- 6. The power converter of claim 5 wherein said feedback circuit comprises a single loop.
- 7. The power converter of claim 1 wherein said fourth circuit comprises a DC-to-DC buck converter providing said second DC output voltage, said DC- to-DC buck converter providing said second DC output voltage of between 3 VDC and 15 VDC.
- 8. The power converter of claim 1 wherein said first and second predetermined DC output voltages are substantially the same and are provided to a common node.
- 9. The power converter of claim 1 wherein said first and second predetermined DC output voltages of said respective first and second circuit are established via said removable program module, wherein said removable program module comprises a key adapted to be removably coupled to said power converter.
- 10. The power converter of claim 1 wherein said removable program module comprises a key having a resistor, wherein said first and second DC output voltage are a function of the value of said resistor.
- 11. The power converter of claim 10 wherein said key establishes an output voltage function.
- 12. The power converter of claim 10 wherein said key establishes an output current limiting function.
- 13. The power converter of claim 1 wherein said first circuit is adapted to receive an AC input voltage having a range of 90 VAC to 265 VAC.
- 14. The power converter of claim 1 wherein said second circuit is adapted to receive a DC input voltage having a range of 11 VDC to 16 VDC.
- 15. The power converter of claim 1 wherein said first and second predetermined DC output voltages are programmable as a function of the program module.
- 16. The power converter of claim 1 wherein said fourth circuit comprises a second removable program module, wherein said second DC output voltage at said second output is a function of said different associated second removable program modules.
- 17. The power converter of claim 1 wherein said fifth circuit further includes a protection circuit, said protection circuit provides an over-voltage protection function.
- 18. The power converter of claim 1 wherein the first circuit and the second circuit receive their respective AC input voltage and DC input voltages at a common single connector.
- 19. A method of generating at least two independently selectable DC output voltages in response to either an AC input voltage or a DC input voltage, comprising the steps of:
converting the received AC or DC input voltage to a first selectable DC output voltage; receiving said first selectable DC output voltage and generating a second DC output voltage which is independent of and substantially lower than said first selectable DC output voltage.
- 20. The method of claim 19 further comprising the step of selectively establishing the voltage magnitude of said first selectable DC output voltage using a removable program module.
- 21. The method of claim 19 wherein said first selectable DC output voltage is provided by an AC-to-DC flyback converter in response to an AC input voltage.
- 22. The method of claim 19 wherein said first selectable DC output voltage is provided by a DC/DC boost converter in response to a DC input voltage.
- 23. The method of claim 19 wherein comprising the step of filtering said first selectable DC output voltage via a filter circuit, said filter circuit providing a filtered DC output voltage of between 15 VDC and 25 VDC.
- 24. The method of claim 23 wherein said filter circuit output is coupled to a DC-to-DC buck converter, wherein said DC-to-DC buck converter is adapted to provide the second separate and independent DC output voltage of between 3 VDC and 15 VDC.
- 25. The method of claim 19 wherein said removable program module comprises a key having a set of resistors, wherein said first selectable DC output voltage is a function of the value of one of said resistors.
- 26. The method of claim 25 wherein said key establishes an output voltage function.
- 27. The method of claim 25 wherein said key establishes an output current limiting function.
- 28. The method of claim 19 wherein said AC input voltage can have a range of 90 VAC to 265 VAC.
- 29. The method of claim 19 wherein said DC input voltage can have a range of 11 VDC to 16 VDC.
- 30. A power converter, comprising:
a first circuit converting an AC input voltage to a first predetermined DC output voltage; a second circuit converting a DC input voltage to a second predetermined DC output voltage; and an third circuit receiving said first and second predetermined DC voltages and, in response thereto, providing a selectable DC output voltage at a first output, wherein said selectable DC output voltage is established as a function a removable program module.
- 31. The power converter of claim 30 wherein said first and second predetermined DC output voltages are substantially the same and are provided to a common node.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application is related to and claims priority from commonly assigned U.S. patent application Ser. No. 10/005,961 filed Dec. 3, 2001, the teachings of which are incorporated herein by reference.