IP Library Granted Patent US 11,811,299
Granted Patent B2
US 11,811,299 · App. 17/405,507 · Granted Nov 7, 2023

Direct-current voltage conversion circuit and switching power-supply device

Inventor: Mitsunao Fujimoto (Miyagi-ken, JP)
Assignee: ALPS ALPINE CO., LTD.
H02M1/0058H02M3/01H02M3/33573
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Quick Facts
Patent No.
US 11,811,299
App. No.
17/405,507
Granted
Nov 7, 2023
Kind
B2
Abstract

A DC voltage conversion circuit includes: a switching circuit having a plurality of switching elements; and a controller that controls operations of the plurality of switching elements. The DC voltage conversion circuit can suppress variations in an output voltage even when an input voltage fluctuates. The controller can execute asymmetric PWM control and phase shift control, performs the phase shift control when a duty ratio is lower than a predetermined ratio, and performs the asymmetric PWM control when the duty ratio is higher than or equal to the predetermined ratio. When switching between the phase shift control and the asymmetric PWM control is performed with the step-down ratios being made to match each other, a control range of the duty ratio can be increased.

Claims (44)

1. A direct-current voltage conversion circuit comprising:

a switching circuit having a plurality of switching elements; and

a controller that controls operations of the plurality of switching elements,

wherein the controller:

executes an asymmetric pulse-width-modulation control that control a duty ratio by varying a pulse width of two switching elements included in the plurality of switching elements and connected in series and a phase shift control that control the duty ratio by varying an amount of phase shift of two switching elements included in the plurality of switching elements and not connected in series,

performs the phase shift control when the duty ratio is lower than a predetermined ratio, and

performs the asymmetric pulse-width-modulation control when the duty ratio is higher than or equal to the predetermined ratio; and wherein:

switching between the phase shift control and the asymmetric pulse-width-modulation control is performed, with step-down ratios being made to match each other, and

the controller performs control so that the step-down ratio for switching from the phase shift control to the asymmetric pulse-width-modulation control becomes higher than the step-down ratio for switching from the asymmetric pulse-width-modulation control to the phase shift control.

2. The direct-current voltage conversion circuit according to claim 1 ,

wherein during the asymmetric pulse-width-modulation control, with respect to the two switching elements connected in series in the switching circuit, the controller makes conduction ratios different from each other and alternately performs on/off control with a dead-time period to perform soft switching in the dead-time period.

3. The direct-current voltage conversion circuit according to claim 1 ,

wherein during the phase shift control, with respect to the two switching elements connected in series in the switching circuit, the controller makes conduction ratios match each other and alternately performs on/off control with a dead-time period to perform soft switching in the dead-time period.

4. The direct-current voltage conversion circuit according to claim 1 , further comprising:

two transformers connected to the switching circuit that are magnetically independent.

5. A switching power-supply device comprising:

a direct-current voltage conversion circuit comprising:

a switching circuit having a plurality of switching elements; and

a controller that controls operations of the plurality of switching elements,

wherein the controller:

executes an asymmetric pulse-width-modulation control that control a duty ratio by varying a pulse width of two switching elements included in the plurality of switching elements and connected in series and a phase shift control that control the duty ratio by varying an amount of phase shift of two switching elements included in the plurality of switching elements and not connected in series,

performs the phase shift control when the duty ratio is lower than a predetermined ratio, and

performs the asymmetric pulse-width-modulation control when the duty ratio is higher than or equal to the predetermined ratio; and

switching between the phase shift control and the asymmetric pulse-width-modulation control is performed, with step-down ratios being made to match each other;

performs control so that the step-down ratio for switching from the phase shift control to the asymmetric pulse-width-modulation control becomes higher than the step-down ratio for switching from the asymmetric pulse-width-modulation control to the phase shift control; and

a direct-current power supply electrically connected to an input terminal of the direct-current voltage conversion circuit.

6. A direct-current voltage conversion circuit comprising:

a switching circuit having a plurality of switching elements; and

a controller that controls operations of the plurality of switching elements,

wherein the controller:

executes an asymmetric pulse-width-modulation control that control a duty ratio by varying a pulse width of two switching elements included in the plurality of switching elements and connected in series and a phase shift control that control the duty ratio by varying an amount of phase shift of two switching elements included in the plurality of switching elements and not connected in series,

performs the phase shift control when the duty ratio is lower than a predetermined ratio, and

performs the asymmetric pulse-width-modulation control when the duty ratio is higher than or equal to the predetermined ratio; and

wherein switching between the phase shift control and the asymmetric pulse-width-modulation control is performed to match, wherein a change ratio of step-down ratios immediately before and after the switching is within a predetermined range of ±5%.

7. A switching power-supply device comprising:

a direct-current voltage conversion circuit comprising:

a switching circuit having a plurality of switching elements; and

a controller that controls operations of the plurality of switching elements,

wherein the controller:

executes an asymmetric pulse-width-modulation control that control a duty ratio by varying a pulse width of two switching elements included in the plurality of switching elements and connected in series and a phase shift control that control the duty ratio by varying an amount of phase shift of two switching elements included in the plurality of switching elements and not connected in series,

performs the phase shift control when the duty ratio is lower than a predetermined ratio, and

performs the asymmetric pulse-width-modulation control when the duty ratio is higher than or equal to the predetermined ratio; and

switching between the phase shift control and the asymmetric pulse-width-modulation control is performed, wherein a change ratio of step-down ratios immediately before and after the switching is within a predetermined range of ±5%; and

a direct-current power supply electrically connected to an input terminal of the direct-current voltage conversion circuit.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2025
From: ALPS ALPINE CO., LTD.
To: DIAMET CORPORATION
Reel/Frame 070445/0039 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2021
From: FUJIMOTO, MITSUNAO
To: ALPS ALPINE CO., LTD.
Reel/Frame 057475/0948 →
Priority Claims (1)
JP 2019-030060 · Feb 22, 2019 · national
Continuity (2)
Continuation PCTJP2020006658 · Feb 20, 2020
Related Publication 20210384836A1 · Dec 9, 2021
Cited By (1)
US 12,483,177