IP Library Granted Patent US 7,272,023
Granted Patent B2
US 7,272,023 · App. 11/390,494 · Granted Sep 18, 2007

High efficiency power converter

Assignee: SynQor, Inc.
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Quick Facts
Patent No.
US 7,272,023
App. No.
11/390,494
Granted
Sep 18, 2007
Kind
B2
Abstract

A power converter nearly losslessly delivers energy and recovers energy from capacitors associated with controlled rectifiers in a secondary winding circuit, each controlled rectifier having a parallel uncontrolled rectifier. First and second primary switches in series with first and second primary windings, respectively, are turned on for a fixed duty cycle, each for approximately one half of the switching cycle. Switched transition times are short relative to the on-state and off-state times of the controlled rectifiers. The control inputs to the controlled rectifiers are cross-coupled from opposite secondary transformer windings.

Claims (29)

1. A DC/DC power converter comprising:

a nonisolating regulation stage; and

a plurality of nonregulating isolation stages, each receiving an input from the regulation stage and each providing a respective output voltage, the output voltages including voltages of different magnitudes, each isolation stage comprising:

a primary transformer winding circuit having at least one primary winding; and

a secondary transformer winding circuit having at least one secondary winding coupled to the at least one primary winding and having plural controlled rectifiers, each having a parallel uncontrolled rectifier.

2. A DC/DC power converter as claimed in claim 1 wherein each isolation stage comprises a transformer having a turns ratio appropriate to its respective output voltage.

3. A DC/DC power converter as claimed in claim 1 further comprising a further regulator providing regulation of an output voltage.

4. A DC/DC power converter as claimed in claim 1 wherein the outpuz t voltage of an isolation stage drops with increasing current flow through the isolation stage.

5. A DC/DC power converter as claimed in claim 4 wherein a signal in the primary transformer winding circuit is used to affect the drop in output voltage.

6. A DC/DC power converter as claimed in claim 5 wherein the signal in the primary transformer winding circuit indicates the current flow through the isolation stage.

7. A DC/DC power converter as claimed in claim 1 wherein feedback is provided to the regulation stage to control an output voltage.

8. A DC/DC power converter as claimed in claim 7 wherein the feedback is from an output.

9. A DC/DC power converter as claimed in claim 7 wherein the feedback is front a signal sensed on a primary side of an isolation stage.

10. A DC/DC power converter as claimed in claim 9 wherein the sensed signal is a voltage.

11. A DC/DC power converter as claimed in claim 1 wherein the output voltages include at least one of 12 volts, 5 volts and 3.3 volts.

12. A DC/DC power converter as claimed in claim 1 wherein at least one output voltage is negative.

13. A DC/DC power converter as claimed in claim 1 wherein an input voltage is about 48 volts.

14. A DC/DC power converter as claimed in claim 1 wherein the regulation stage includes a down converter.

15. A DC/DC power converter as claimed in claim 1 wherein the regulation stage includes an up converter.

16. A DC/DC power converter as claimed in claim 1 wherein the isolation stages are current fed.

17. A DC/DC power converter as claimed in claim 1 wherein the isolation stages are voltage fed.

18. A DC/DC power converter as claimed in claim 1 wherein the regulation stage includes a controlled rectifier.

19. A DC/DC power converter as claimed in claim 1 wherein the regulation stage includes resonant elements.

20. A DC/DC power converter as claimed in claim 1 wherein an input voltage to the DC/DC power converter is within the range of 36 volts to 75 volts.

21. A method of providing multiple DC outputs comprising:

regulating an input from a DC power source to provide a nonisolated regulated output; and

from the nonisolated regulated output, providing plural isolated output voltages, each by applying power through at least one primary winding and at least one secondary winding, the at least one secondary winding being in a secondary transformer winding circuit having plural nonregulating controlled rectifiers, each having a parallel uncontrolled rectifier, the output voltages including voltages of different magnitudes.

22. A DC/DC power converter as claimed in claim 5 further comprising temperature compensation in affecting the drop in output voltage.

23. A DC/DC power converter as claimed in claim 21 wherein each of the output voltages is provided by applying power through respective primary and secondary windings.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jul 12, 2013
From: BANK OF AMERICA, N.A.
To: SYNQOR, INC.
Reel/Frame 030822/0415 →
RELEASE OF PATENTS REEL 021794/0427 Recorded Jul 5, 2013
From: SYNQOR INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 030814/0006 →
CORRECTIVE ASSIGNMENT TO CORRECT THE SCHEDULE B BY ADDING ADDITIONAL PATENTS PREVIOUSLY RECORDED ON REEL 015394 FRAME 0060. ASSIGNOT(S) HEREBY CONFIRMS THE PATENT, TRADEMARK AND COPYRIGHT SECURITY AGREEMENT. Recorded Nov 5, 2008
From: SYNQOR, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 021794/0427 →
Continuity (7)
Continuation 1081231400 · Mar 29, 2004
Continuation 1035945700 · Feb 5, 2003
Continuation 0982165500 · Mar 29, 2001
Division 0941786700 · Oct 13, 1999
Division 0901247500 · Jan 23, 1998
Provisional Application 6003624500 · Jan 24, 1997
Related Publication 20060209572A1 · Sep 21, 2006