IP Library Granted Patent US 10,079,541
Granted Patent B1
US 10,079,541 · App. 15/602,247 · Granted Sep 18, 2018

Wide input, wide output, high efficiency, isolated DC-DC converter-battery charger

Inventor: Ion Taban (Markham, CA)
Assignee: Murata Manufacturing Co., Ltd.
H02M3/1582H02J7/0052H02M3/33546H02J2007/0059
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,079,541
App. No.
15/602,247
Granted
Sep 18, 2018
Kind
B1
Abstract

A switching power conversion circuit includes a pre-regulator circuit that is operated in buck, boost, or bypass mode and that includes a first switching circuit that receives an input DC voltage and outputs a first DC voltage; a resonant circuit including a second switching circuit that receives the first DC voltage and outputs an output DC voltage; a resonant control circuit that regulates the output DC voltage by transmitting a link min set control signal and a link max set control signal and by controlling a switching frequency of the second switching circuit; and a pre-regulator control circuit that receives the link min set control signal and the link max set control signal and that controls the first switching circuit based on the link min set control signal and the link max set control signal to regulate the first DC voltage.

Claims (46)

1. A switching power conversion circuit comprising:

a pre-regulator circuit that is operated in buck mode, boost mode, or bypass mode and that includes a first switching circuit that receives an input DC voltage and outputs a first DC voltage;

a resonant circuit including a second switching circuit that receives the first DC voltage and outputs an output DC voltage;

a resonant control circuit that regulates the output DC voltage by transmitting a link min set control signal and a link max set control signal and by controlling a switching frequency of the second switching circuit; and

a pre-regulator control circuit that receives the link min set control signal and the link max set control signal from the resonant control circuit and that controls the first switching circuit based on the link min set control signal and the link max set control signal from the resonant control circuit to regulate the first DC voltage; wherein

the first switching circuit includes a first switch and a second switch;

the pre-regulator control circuit operates the first switch and the second switch with variable duty cycle pulses; and

the pre-regulator control circuit operates the pre-regulator circuit:

in a buck mode by switching the first switch on and off and the second switch off;

in a boost mode by switching the first switch on and the second switch on and off; and

in a bypass mode by switching the first switch on and the second switch off.

2. The switching power conversion circuit of claim 1 , wherein the first DC voltage is determined based on resonant operation of the resonant circuit, the output DC voltage, and the input DC voltage.

3. The switching power conversion circuit of claim 2 , wherein the first DC voltage is further determined based on an input current into the pre-regulator circuit, a current between the pre-regulator circuit and the resonant circuit, and an output current of the resonant circuit.

4. The switching power conversion circuit of claim 1 , wherein the first DC voltage is determined based on efficiencies of the pre-regulator circuit and of the resonant circuit.

5. The switching power conversion circuit of claim 1 , wherein

the first switching circuit further includes third and fourth switches; and

the pre-regulator control circuit operates the third and fourth switches with variable duty cycle pulses.

6. The switching power conversion circuit of claim 5 , wherein the pre-regulator control circuit operates the pre-regulator circuit:

in the buck mode that is a synchronous buck mode by switching the first switch and third switch on and off, the second switch off, and the fourth switch on;

in the boost mode that is a synchronous boost mode by switching the first switch on, the third switch off and the second switch and the fourth switch on and off; and

in the bypass mode that is a synchronous bypass mode by switching the first switch and the fourth switch on and the second switch and the third switch off.

7. The switching power conversion circuit of claim 1 , wherein the pre-regulator circuit further includes at least one additional first switching circuit that is interleaved with the first switching circuit.

8. The switching power conversion circuit of claim 7 , wherein the resonant circuit further includes at least one additional second switching circuit that is interleaved with the second switching circuit.

9. A switching power conversion circuit comprising:

a pre-regulator circuit that is operated in buck mode, boost mode, or bypass mode and that includes at least two first switching circuits in parallel, that receives an input DC voltage, and that outputs a first DC voltage; and

a resonant circuit including at least one second switching circuit that receives the first DC voltage and outputs an output DC voltage; wherein

each of the at least one first switching circuits includes a first switch and a second switch;

the pre-regulator control circuit operates each of the first and second switches with variable duty cycle pulses; and

the pre-regulator control circuit operates each of the at least two first switching circuits:

in a buck mode by switching the first switch on and off and the second switch off;

in a boost mode by switching the first switch on and the second switch on and off; and

in a bypass mode by switching the first switch on and the second switch off.

10. The switching power conversion circuit of claim 9 , further comprising:

a resonant control circuit that regulates the output DC voltage by transmitting a link min set control signal and a link max set control signal and by controlling a switching frequency of the at least one second switching circuit; and

a pre-regulator control circuit that receives the link min set control signal and the link max set control signal from the resonant control circuit and that controls the at least two first switching circuits based on the link min set control signal and the link max set control signal to regulate the first DC voltage.

11. The switching power conversion circuit of claim 10 , wherein

each of the at least one first switching circuit further includes a third switch and a fourth switch; and

the pre-regulator control circuit operates each of the third and fourth switches with variable duty cycle pulses.

12. The switching power conversion circuit of claim 11 , wherein the pre-regulator control circuit operates each of the at least two first switching circuits:

in the buck mode that is a synchronous buck mode by switching the first switch and third switch on and off, the second switch off, and the fourth switch on;

in the boost mode that is a synchronous boost mode by switching the first switch on, the third switch off and the second switch and the fourth switch on and off; and

in the bypass mode that is a synchronous bypass mode by switching the first switch and the fourth switch on and the second switch and the third switch off.

13. The switching power conversion circuit of claim 10 , wherein the first DC voltage is determined based on resonant operation of the resonant circuit, the output DC voltage, and the input DC voltage.

14. The switching power conversion circuit of claim 13 , wherein the first DC voltage is further determined based on an input current into the pre-regulator circuit, a current between the pre-regulator circuit and the resonant circuit, and an output current of the resonant circuit.

15. The switching power conversion circuit of claim 10 , wherein the first DC voltage is determined based on efficiencies of the pre-regulator circuit and of the resonant circuit.

16. The switching power conversion circuit of claim 9 , wherein the at least one second switching circuit includes two second switching circuits that are interleaved with each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2017
From: TABAN, ION
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 042472/0388 →
Cited By (5)
US 12,212,244 US 12,334,831 US 12,348,153 US 12,603,583 US 12,732,011