IL160167A

Dual input ac and dc power supply having a programmable dc output utilizing a secondary buck converter

Abstract

A power converter capable of receiving either an AC input voltage or a DC input voltage and generating a programmable DC output voltage. The converter comprises a first circuit that converts an AC input voltage to a predetermined DC first output voltage, and a second circuit that converts a DC input voltage to a predetermined second DC output voltage. The converter also comprise a third circuit which is adapted to receive the first and second DC voltages from first and second circuits to generate a selectable output DC voltage. In selected embodiments, the first and second DC output voltages provided by the first and second circuits, respectively, are generally the same value and are coupled to a common node that feeds the input terminal of the third circuit. Moreover, the third circuit is adapted to provide a selectable output DC voltage which may be set higher or lower than its DC input voltage. The third circuit may also be adapted to couple a set of removable programming keys that provide for a different associated DC output voltage. The programming key comprises a resistor, which may provide for a variety of functions, such as current-limiting, over-voltage protection, output voltage programming, and wrong-tip circuit protection.

IL160167A, drawing sheet 1
Sheet 1 of 6

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

24 claims: 1 independent, 23 dependent

  1. 1
    A power converter, comprising:a first circuit converting an AC input voltage to a first DC output voltage;a second circuit converting a DC input voltage to a second DC output voltage;and 5 an third circuit receiving the first and second DC output voltages and, in response thereto, providing a selectable DC output voltage at a first output, characterized in that the selectable DC output voltage is established as a function of a removable program module.
  2. 2
    The power converter of Claim 1 wherein the first circuit and the second circuit receive their respective AC input voltage and DC input voltage at a common single connector. I 10
  3. 3
    The power converter of Claim 1 wherein the removable program module comprises a key having a resistor, wherein the selectable DC output voltage is a function of the value of the passive component.
  4. 4
    The power converter of Claim 1 wherein the third circuit includes a feedback circuit coupled to the first circuit and the second circuit, the feedback circuit regulating the first and 15 second DC output voltages generated by the respective first and second circuits.
  5. 5
    The power converter of Claim 4 wherein the feedback circuit comprises a single feedback loop.
  6. 6
    The power converter of Claim 1 wherein tire first and second DC output voltages are substantially the same and are provided to a common node. 20
  7. 7
    The power converter of Claim 1 further comprising a fourth circuit coupled to the third circuit and providing a converter second DC output voltage at a second output, whereby the converter second DC output voltage is lower than the selectable DC output voltage.
  8. 8
    The power converter of Claim 7 wherein the fourth circuit is selectively detachable from the rest of the converter allowing different said fourth circuits to be coupled to the 25, converter to obtain different said converter second DC output voltages.
  9. 9
    The power converter of Claim 7 wherein the fourth circuit comprises a DC־to־DC buck converter providing the converter second DC output voltage. 01518406\28-01
  10. 10
    The power converter of Claim 9 wherein the DC-to-DC buck converter is adapted to provide the converter second DC output voltage of between 3VDC and 15VDC.
  11. 11
    The power converter of Claim 7 wherein the converter second DC output voltage is independent of the selectable DC output voltage.
  12. 12
    The power converter of Claim 7 wherein the selectable DC output voltage and the converter second DC output voltage are provided by the converter simultaneously.
  13. 13
    The power converter of Claim 1 further comprising a filter circuit adapted to filter the first and second DC output voltages and provide a respective first and second filtered DC output voltage at a common node.
  14. 14
    The power converter of Claim 1 wherein the third circuit comprises a DC-to-DC . down-converter.
  15. 15
    The power converter of Claim 14 wherein the second circuit comprises an DC-to-DC up-converter.
  16. 16
    The power converter of Claim 15 wherein the up-converter and the down-converter are switching converters operating at the same frequency.
  17. 17
    The power converter of Claim 1 wherein the first circuit comprises an AC-to-DC flyback converter adapted to provide the first DC output voltage of between 15VDC and 24VDC.
  18. 18
    The power converter of Claim 17 wherein the second circuit comprises a DC-to-DC boost converter adapted to provide the second DC output voltage of between 15VDC and 24VDC.
  19. 19
    The power converter of Claim 1 wherein the second circuit converts the DC input voltage to the second DC output voltage even when the DC input voltage varies.
  20. 20
    The power converter of Claim 1 wherein the removable program module limits an output current at the first output. 01518406\28-01
  21. 21
    The power converter of Claim 1 further including a protection circuit providing an over-voltage protection function.
  22. 22
    The power converter of Claim 1 wherein the first circuit is adapted to receive the AC input voltage having a range of 90VAC to 265 VAC.
  23. 23
    The power converter of Claim 1 wherein the second circuit is adapted to receive the DC input voltage having a range of 11VDC to 16VDC.
  24. 24
    The power converter of Claim 1 further comprising a heat limitation device limiting an operating temperature of the converter.
Independent claims24