IP Library › Granted Patent US 10,439,515
Granted Patent B2
US 10,439,515 · App. 16/244,271 · Granted Oct 8, 2019

Power conversion device

Inventor: Hiroki Miyake (Toyota, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
H02M7/5387H02M3/33569H02P27/06H03K17/04123H02M2001/0006
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Quick Facts
Patent No.
US 10,439,515
App. No.
16/244,271
Granted
Oct 8, 2019
Kind
B2
Abstract

A power conversion device includes a first switching element configured by using a first semiconductor material and a second switching element connected in parallel with the first switching element and configured by using a second semiconductor material having a band gap narrower than that of the first semiconductor material. The power conversion device further includes a control device configured to selectively execute any one of first switching control and second switching control of intermittently turning on the first switching element and the second switching element, respectively, according to a current command value. A size of the first switching element is smaller than a size of the second switching element. The control device selects the first switching control if the current command value is smaller than a first threshold value and selects the second switching control if the current command value is larger than a second threshold value.

Claims (24)

1. A power conversion device configured to perform power conversion between a power source and a load, the power conversion device comprising:

a first switching element provided on a power supply path from the power source to the load and configured by using a first semiconductor material;

a second switching element connected in parallel with the first switching element and configured by using a second semiconductor material having a band gap narrower than that of the first semiconductor material; and

a control device configured to selectively execute any one of first switching control and second switching control, where the first switching control is control of intermittently turning on the first switching element according to a current command value, and the second switching control is control of intermittently turning on the second switching element according to the current command value;

wherein a size of the first switching element is smaller than a size of the second switching element, and

wherein the control device is configured to select the first switching control if the current command value is smaller than a first threshold value and to select the second switching control if the current command value is larger than a second threshold value.

2. The power conversion device according to claim 1 , wherein the control device is configured to execute selection of the first switching control or the second switching control in units of a period of the first switching control or the second switching control.

3. The power conversion device according to claim 1 ,

wherein the second threshold value is larger than the first threshold value, and

wherein the control device is configured so that:

when executing the first switching control, the control device proceeds to the second switching control if the current command value exceeds the second threshold value, and

when executing the second switching control, the control device proceeds to the first switching control if the current command value falls below the first threshold value.

4. The power conversion device according to claim 1 , wherein the control device is configured to change at least one of the first threshold value and the second threshold value according to a temperature of at least one of the first switching element and the second switching element.

5. The power conversion device according to claim 1 , wherein the control device is configured so that:

in the first switching control, PWM control is performed on the first switching element at a first carrier frequency; and

in the second switching control, PWM control is performed on the second switching element at a second carrier frequency.

6. The power conversion device according to claim 5 , wherein the first carrier frequency in the first switching control and the second carrier frequency in the second switching control have the same value.

7. The power conversion device according to claim 6 , further comprising an inverter configured to output an AC power, wherein the control device is configured to change at least one of the first carrier frequency and the second carrier frequency according to an output frequency of the AC power.

8. The power conversion device according to claim 6 , further comprising an inverter configured to output an AC power, wherein the control device is configured to select the second switching control even if the current command value is smaller than the first threshold value when an output frequency of the AC power is less than a predetermined lower limit value.

9. The power conversion device according to claim 5 , wherein the first carrier frequency in the first switching control is different from the second carrier frequency in the second switching control.

10. The power conversion device according to claim 1 ,

wherein the first semiconductor material is silicon carbide (SiC), and the second semiconductor material is silicon (Si).

11. The power conversion device according to claim 1 ,

wherein the first switching element is a MOSFET, and the second switching element is an IGBT.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 13, 2024
From: TOYOTA JIDOSHA KABUSHIKI KAISHA
To: DENSO CORPORATION
Reel/Frame 066456/0649 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2019
From: MIYAKE, HIROKI
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 048043/0101 →
Priority Claims (1)
JP 2018-010495 · Jan 25, 2018 · national
Continuity (1)
Related Publication 20190229644A1 · Jul 25, 2019