IP Library Granted Patent US 11,843,320
Granted Patent B2
US 11,843,320 · App. 17/362,875 · Granted Dec 12, 2023

Method of operating isolated resonant converter with synchronous rectifier

Inventors: Ramkumar Sivakumar (Bangalore, IN); Brent Alan McDonald (Murphy, TX); Yalong Li (Allen, TX)
Assignee: TEXAS INSTRUMENTS INCORPORATED
H02M3/33592H02M1/0035
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Quick Facts
Patent No.
US 11,843,320
App. No.
17/362,875
Filed
Jun 29, 2021
Granted
Dec 12, 2023
Kind
B2
Art Unit
2838
USPC
363/21.02
Abstract

A method for operating a resonant converter in a burst mode includes determining the polarity of a transformer voltage across a secondary winding of a transformer. The method includes determining, from the polarity of the transformer voltage, on/off states of first and second transistors coupled to the secondary winding of the transformer. If the transformer voltage has a first polarity, the method includes commencing a burst period by alternately turning on/off high-side and low-side transistors electrically connected to a primary winding of the transformer.

Claims (44)

1. A method for operating a resonant converter in a burst mode, the method comprising:

determining a polarity of a transformer voltage across a secondary winding of a transformer;

determining, from the polarity of the transformer voltage, an on/off state of first and second transistors coupled to the secondary winding of the transformer; and

commencing a burst period by alternately turning on/off a high-side transistor and a low-side transistor in response to the transformer voltage having a first polarity, wherein the high-side transistor and the low-side transistor are being coupled to a primary winding of the transformer; and

holding the resonant converter in a burst interval by delaying a start of a first pulse of the burst period in response to the transformer voltage having a second polarity, wherein the high-side transistor and the low-side transistor are turned off during the burst period.

2. The method of claim 1 , further comprising:

turning on the low-side transistor with the second transistor turned off, and subsequently turning off the low-side transistor prior to turning on the second transistor; and

turning on the high-side transistor with the first transistor turned off, and subsequently turning off the high-side transistor prior to turning on the first transistor.

3. The method of claim 1 , wherein the transformer voltage has a first polarity while the transformer voltage is in a positive half-cycle and has a second polarity while the transformer voltage is in a negative half cycle.

4. The method of claim 1 , wherein the first and second transistors are connected to the secondary winding of the transformer in a synchronous rectifier configuration.

5. A method for operating a resonant converter in a burst mode, the method comprising:

determining a first voltage that represents an output power delivered by the resonant converter;

comparing the first voltage to a burst threshold voltage that represents a target output power;

determining a polarity of a transformer voltage across a secondary winding of a transformer in response to the first voltage being less than the burst threshold voltage;

determining, from the polarity of the transformer voltage, an on/off state of first and second transistors coupled to the secondary winding of the transformer; and

commencing a burst period by alternately turning on/off a high-side transistor and a low-side transistor in response to the transformer voltage having a first polarity, wherein the high-side transistor and the low-side transistor are electrically connected to a primary winding of the transformer.

6. The method of claim 5 , further comprising holding the resonant converter in a burst interval by delaying a start of a first pulse of the burst period in response to the transformer voltage having a second polarity.

7. The method of claim 5 , further comprising holding the resonant converter in a burst interval in response to the first voltage being greater than the burst threshold voltage.

8. The method of claim 5 , further comprising:

comparing an output voltage to an over-voltage protection threshold when the resonant converter is in the burst period;

transitioning the resonant converter from the burst period to a burst interval in response to if the output voltage being greater than the over-voltage protection threshold; and

holding the resonant converter in the burst interval in response to the output power being less than or equal to the over-voltage protection threshold.

9. The method of claim 5 , further comprising transitioning the resonant converter from the burst period to a burst interval after a certain number of bursts.

10. A method for operating a resonant converter in a burst mode, the method comprising:

determining a first voltage that represents an output power delivered by the resonant converter;

comparing the first voltage to a burst threshold voltage that represents a target output power;

determining a polarity of a transformer voltage across a secondary winding of a transformer in response to the first voltage being less than the burst threshold voltage;

commencing a burst period by alternately turning on/off a transistor electrically connected to a primary winding of the transformer in response to the transformer voltage having a first polarity;

holding the resonant converter in a burst interval by delaying a start of a first pulse of the burst period in response to the transformer voltage having a second polarity; and

holding the resonant converter in the burst interval in response to the first voltage being greater than the burst threshold voltage.

11. The method of claim 10 , wherein the transistor is a low-side transistor.

12. The method of claim 10 , wherein the transformer voltage has a first polarity while the transformer voltage is in a positive half-cycle and has a second polarity while the transformer voltage is in a negative half cycle.

13. A method for operating a resonant converter in a burst mode, the method comprising:

determining a first voltage that is represents an output power delivered by the resonant converter;

comparing the first voltage to a burst threshold voltage that represents a target output power;

determining a polarity of a transformer voltage across a secondary winding of a transformer in response to the first voltage being less than the burst threshold voltage;

commencing a burst period by alternately turning on/off a high-side transistor and a low-side transistor in response to the transformer voltage having a first polarity, wherein the high-side transistor and the low-side transistor are electrically connected to a primary winding of the transformer;

holding the resonant converter in a burst interval by delaying a start of a first pulse of the burst period in response to the transformer voltage having a second polarity; and

holding the resonant converter in the burst interval in response to the first voltage being greater than the burst threshold voltage.

14. The method of claim 13 , further comprising:

comparing an output voltage to an over-voltage protection threshold while the resonant converter is in the burst period;

transitioning the resonant converter from the burst period to the burst interval responsive to the output voltage being greater than the over-voltage protection threshold; and

holding the resonant converter in the burst interval responsive to the output power being less than or equal to the over-voltage protection threshold.

15. The method of claim 13 , further comprising transitioning the resonant converter from the burst period to the burst interval following a certain number of bursts.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2022
From: SIVAKUMAR, RAMKUMAR; MCDONALD, BRENT ALAN; LI, YALONG
To: TEXAS INSTRUMENTS INCORPORATED
Reel/Frame 060123/0465 →
Continuity (1)
Related Publication 20220416676A1 · Dec 29, 2022
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