IP Library Granted Patent US 11,936,297
Granted Patent B2
US 11,936,297 · App. 17/586,295 · Granted Mar 19, 2024

DC-DC converter including first and second coils magnetically coupled such that current flows through second coil in forward direction of diode by mutual induction as current flowing through first coil from intermediate terminal to output terminal increases and vehicle

Inventor: Hiroyuki Hosoi (Kanagawa, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
H02M3/158H02M1/342
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Quick Facts
Patent No.
US 11,936,297
App. No.
17/586,295
Granted
Mar 19, 2024
Kind
B2
Abstract

A DC-DC converter outputs a DC output voltage between first and second output terminals, and includes: a conversion circuit that outputs an intermediate voltage obtained by performing power conversion on an input voltage, between first and second intermediate terminals; a first coil provided between the first intermediate terminal and the first output terminal; and a diode provided in series with a second coil. A DC voltage is applied to the second coil and the diode, with a polarity in a direction in which a reverse bias is applied to the diode. The first coil and the second coil are magnetically coupled such that a current is made flow through the second coil in a forward direction of the diode by mutual induction as a current flowing through the first coil in a direction from the first intermediate terminal to the first output terminal increases.

Claims (39)

1. A DC-DC converter that outputs a DC output voltage between a first output terminal and a second output terminal by performing power conversion on a DC input voltage, the DC-DC converter comprising:

a conversion circuit that outputs an intermediate voltage which is obtained by performing power conversion on the input voltage, between a first intermediate terminal and a second intermediate terminal;

a first coil provided between the first intermediate terminal and the first output terminal;

a second coil; and

a diode provided in series with the second coil, wherein

the DC output voltage is applied to the second coil and the diode provided in series, with a polarity in a direction in which a reverse bias is applied to the diode, and

the first coil and the second coil are magnetically coupled such that a current is made flow through the second coil in a forward direction of the diode by mutual induction as a current flowing through the first coil in a direction from the first intermediate terminal to the first output terminal increases.

2. The DC-DC converter according to claim 1 , further comprising a capacitor that is provided between the first output terminal and the second output terminal.

3. The DC-DC converter according to claim 1 , wherein

the second coil has one end connected to a terminal of the first coil, the terminal of the first coil being closer to the first output terminal,

the diode is provided between the second intermediate terminal and a terminal of the second coil, the first coil being not connected to the terminal of the second coil, such that a direction from the second intermediate terminal to the second coil is a forward direction, and

the first coil and the second coil are magnetically coupled such that a current is made flow through the second coil in a direction from the diode to the first output terminal by mutual induction as the current flowing through the first coil in the direction from the first intermediate terminal to the first output terminal increases.

4. The DC-DC converter according to claim 1 , wherein the conversion circuit includes:

a DC-AC conversion circuit that converts the input voltage to a primary-side AC voltage;

a transformer that converts the primary-side AC voltage to a secondary-side AC voltage; and

a rectifier circuit that outputs the intermediate voltage which is obtained by full-wave rectifying the secondary-side AC voltage, between the first intermediate terminal and the second intermediate terminal.

5. The DC-DC converter according to claim 1 , wherein the DC-DC converter is of a step-down type.

6. The DC-DC converter according to claim 1 , further comprising an enable switch that switches whether to allow a current to flow through the second coil, wherein

the enable switch is switched so as to allow a current to flow through the second coil when the DC output voltage is within a predetermined set voltage range, and so as not to allow a current to flow through the second coil when the DC output voltage is outside the set voltage range.

7. The DC-DC converter according to claim 1 , further comprising a control circuit that controls an amount of power for which the input voltage is converted to the output voltage, according to a measured value obtained by measuring the output voltage or a measured value for an output current supplied to a load.

8. A vehicle that includes the DC-DC converter according to claim 1 .

9. A DC-DC converter that outputs a DC output voltage between a first output terminal and a second output terminal by performing power conversion on a DC input voltage, the DC-DC converter comprising:

a conversion circuit that outputs an intermediate voltage which is obtained by performing power conversion on the input voltage, between a first intermediate terminal and a second intermediate terminal;

a first coil provided between the first intermediate terminal and the first output terminal;

a second coil; and

a diode provided in series with the second coil, wherein

an external DC voltage generated by a DC voltage generation unit is applied to the second coil and the diode provided in series,

the external DC voltage generated by the DC voltage generation unit is applied to the second coil and the diode provided in series, with a polarity in a direction in which a reverse bias is applied to the diode, and

the first coil and the second coil are magnetically coupled such that a current is made flow through the second coil in a forward direction of the diode by mutual induction as a current flowing through the first coil in a direction from the first intermediate terminal to the first output terminal increases.

10. The DC-DC converter according to claim 9 , further comprising a capacitor that is provided between the first output terminal and the second output terminal.

11. The DC-DC converter according to claim 9 , wherein the conversion circuit includes:

a DC-AC conversion circuit that converts the input voltage to a primary-side AC voltage;

a transformer that converts the primary-side AC voltage to a secondary-side AC voltage; and

a rectifier circuit that outputs the intermediate voltage which is obtained by full-wave rectifying the secondary-side AC voltage, between the first intermediate terminal and the second intermediate terminal.

12. The DC-DC converter according to claim 11 , wherein the DC-DC converter is of a step-down type.

13. The DC-DC converter according to claim 9 , further comprising an enable switch that switches whether to allow a current to flow through the second coil, wherein

the enable switch is switched so as to allow a current to flow through the second coil when the DC output voltage is within a predetermined set voltage range, and so as not to allow a current to flow through the second coil when the DC output voltage is outside the set voltage range.

14. The DC-DC converter according to claim 9 , further comprising a control circuit that controls an amount of power for which the input voltage is converted to the output voltage, according to a measured value obtained by measuring the output voltage or a measured value for an output current supplied to a load.

15. A vehicle that includes the DC-DC converter according to claim 9 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2024
From: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
To: PANASONIC AUTOMOTIVE SYSTEMS CO., LTD.
Reel/Frame 066709/0702 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2022
From: HOSOI, HIROYUKI
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 059834/0417 →
Priority Claims (1)
JP 2021-038750 · Mar 10, 2021 · national
Continuity (1)
Related Publication 20220294345A1 · Sep 15, 2022