Claims
- 1. A power converter, comprising:
a power supply circuit providing a regulated DC output voltage and having first and second circuits, said power supply circuit receiving an AC input voltage and a DC input voltage at respective said first and second circuits and providing, in response thereto, a DC output voltage at a first node; and a storage circuit selectively coupled to said power supply circuit, said storage circuit storing a secondary DC input voltage, wherein said storage circuit delivers said secondary DC input voltage to a said power supply circuit whenever said AC and DC input voltages are temporarily removed.
- 2. The power converter of claim 1 wherein said storage circuit includes a battery charger and a re-chargeable battery, said battery charger being coupled to the first node of said power supply circuit, charging said re-chargeable battery via a portion said of said regulated DC output voltage.
- 3. The power converter of claim 1 wherein said storage circuit energizes said power supply circuit whenever each input voltage is not provided to said power supply circuit.
- 4. The power converter of claim 2 wherein said storage circuit further comprises a first switch and a second switch, said battery charger, responsive to said first and second switches charging said re-chargeable battery.
- 5. The power converter of claim 4 wherein said re-chargeable battery, responsive to said second switch being closed and said first switch being opened by said power supply circuit, providing a DC input voltage to one said circuit.
- 6. The power converter of claim 5 wherein said storage circuit includes an inverter gate, said inverter gate being coupled to and controlling said first and second switches.
- 7. The power converter of claim 1 wherein said first circuit comprises a AC-to-DC converter, wherein said AC-to-DC converter is adapted to provide a DC output voltage of between 15 VDC and 24 VDC.
- 8. The power converter of claim 7 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.
- 9. The power converter of claim 1 further comprising a third circuit, said third circuit, in response to said output voltages of said first and second circuits, providing a programmable DC output voltage to a node as a function of a detachable programming key.
- 10. The power converter of claim 1 wherein said storage circuit comprises a battery back having a re-chargeable battery, said power supply circuit providing said regulated DC output voltage in response to receiving a charge voltage from said re-chargeable battery.
- 11. The power converter of claim 1 wherein said power supply circuit is coupled to said storage circuit at a plurality of different nodes via a common connector.
- 12. The power converter of claim 1 wherein said power supply circuit is adapted to provide a pair of regulated DC output voltages of between 5 VDC and 24 VDC.
- 13. The power converter of claim 1 wherein said power supply circuit is adapted to operate in a direct power mode whenever either said AC and DC input voltages is provided to said first and second circuits.
- 14. The power converter of claim 1 wherein said power supply circuit is adapted to operate in a battery mode whenever said AC and DC input voltages are not sensed by said first and second circuits.
- 15. The power converter of claim 1 wherein said storage circuit is configured to incorporate a plurality of stacked batteries.
- 16. A method of operating a power converter the method comprising the steps of:
generating a DC output voltage responsive to an AC or DC input voltage using a power converter; and delivering a back-up DC input voltage to said power converter whenever said AC and DC input voltages are removed therefrom and generating said DC output voltage in response thereto.
- 17. The method of claim 16 wherein a storage circuit including a rechargeable battery provides said back-up DC input voltage.
- 18. The method of claim 17 wherein a portion of said DC output voltage is provided to said storage circuit to recharge said re-chargeable battery when either said AC or DC input voltage is provided to said power converter.
- 19. The method of claim 17 wherein said power converter includes an AC to DC converter and a DC to DC converter.
- 20. The method of claim 16 wherein said attaching step further includes tapping said power converter at a plurality of nodes using a common connector.
CLAIM OF PRIORITY
[0001] The present application is a Continuation-in-Part (C-I-P) application of, 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.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60335785 |
Oct 2001 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10005961 |
Dec 2001 |
US |
Child |
10159910 |
May 2002 |
US |