IP Library › Granted Patent US 10,749,437
Granted Patent B2
US 10,749,437 · App. 16/393,231 · Granted Aug 18, 2020

Power conversion device

Inventors: Masaru Miyazaki (Kariya, JP); Tomohisa Sano (Kariya, JP); Kentaro Hirose (Okazaki, JP)
Assignees: DENSO CORPORATION; TOYOTA JIDOSHA KABUSHIKI KAISHA
H02M3/1588H02M3/1582H02M7/003H02M7/5387H02M2001/327Y10T29/53278
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Quick Facts
Patent No.
US 10,749,437
App. No.
16/393,231
Granted
Aug 18, 2020
Kind
B2
Abstract

A power conversion device has semiconductor modules, a cooling unit, a capacitor module, a discharge resistance substrate, a control circuit substrate and a casing. The semiconductor modules from a power conversion circuit. The capacitor module is electrically connected to the semiconductor module. The discharge resistance is arranged on the discharge resistance substrate, and electrically discharges the capacitor module. The control circuit substrate controls operation of the semiconductor modules. The casing accommodates the semiconductor module, the cooling unit, the capacitor module, the discharge resistance substrate and the control circuit substrate. The discharge resistance substrate is arranged between an outer wall surface of the capacitor module and the control circuit substrate and arranged in a direction perpendicular to the control circuit substrate so that the discharge resistance substrate is separated in position from the outer wall surface of the capacitor module and the control circuit substrate.

Claims (42)

1. A power conversion device comprising:

semiconductor modules forming a power conversion circuit;

a cooling unit cooling a temperature of the semiconductor modules;

a capacitor module electrically connected to the semiconductor module;

a discharge resistance substrate on which a discharge resistance is arranged, the discharge resistance discharging electrical charge accumulated in the capacitor module;

a control circuit substrate controlling operation of the semiconductor modules; and

a casing accommodating the semiconductor module, the cooling unit, the capacitor module, the discharge resistance substrate and the control circuit substrate,

wherein the discharge resistance substrate is arranged between an outer wall surface of the capacitor module and the control circuit substrate, the outer wall surface of the capacitor module is an end surface that is closest to the discharge resistance substrate, the outer wall surface of the capacitor module is arranged so as to be opposite in a direction perpendicular to a major surface of the control circuit substrate, and

wherein the discharge resistance substrate is separated from the outer wall surface and the control circuit substrate in a direction perpendicular to the control circuit substrate.

2. The power conversion device according to claim 1 , wherein

the discharge resistance substrate is arranged parallel to an inner wall surface of the casing between the casing and the cooling unit.

3. The power conversion device according to claim 2 , wherein

the cooling unit is arranged between the capacitor module and the control circuit substrate.

4. The power conversion device according to claim 2 , further comprising voltage detection terminals connected to the capacitor module, through which a capacitor voltage is detected, wherein

the voltage detection terminals are arranged parallel to the discharge resistance substrate between the discharge resistance substrate and the control circuit substrate.

5. The power conversion device according to claim 1 , wherein

the cooling unit is arranged between the capacitor module and the control circuit substrate.

6. The power conversion device according to claim 1 , further comprising voltage detection terminals connected to the capacitor module, through which a capacitor voltage is detected, wherein

the voltage detection terminals are arranged parallel to the discharge resistance substrate between the discharge resistance substrate and the control circuit substrate.

7. A power conversion device comprising:

semiconductor modules forming a power conversion circuit;

a cooling unit cooling a temperature of the semiconductor modules;

a capacitor module electrically connected to the semiconductor module;

a discharge resistance substrate on which a discharge resistance is arranged, the discharge resistance discharging electrical charge accumulated in the capacitor module;

a control circuit substrate controlling operation of the semiconductor modules; and

a casing accommodating the semiconductor module, the cooling unit, the capacitor module, the discharge resistance substrate and the control circuit substrate; and

a capacitor casing which accommodates the capacitor module,

wherein the discharge resistance substrate is arranged between an outer wall surface of the capacitor module and the control circuit substrate, and separated from the outer wall surface and the control circuit substrate in a direction perpendicular to the control circuit substrate,

wherein the capacitor module comprises a filter capacitor and a smoothing capacitor which smooth a current flowing in the power conversion device, and the capacitor casing forms the outer wall surface of the capacitor module, and

wherein the discharge resistance substrate is attached to a substrate fixing part which extends outside from the outer wall surface of the capacitor module.

8. A power conversion device comprising:

semiconductor modules forming a power conversion circuit;

a cooling unit cooling a temperature of the semiconductor modules;

a capacitor module electrically connected to the semiconductor module;

a discharge resistance substrate on which a discharge resistance is arranged, the discharge resistance discharging electrical charge accumulated in the capacitor module;

a control circuit substrate controlling operation of the semiconductor modules; and

a casing accommodating the semiconductor module, the cooling unit, the capacitor module, the discharge resistance substrate and the control circuit substrate; and

a capacitor casing which accommodates the capacitor module,

wherein the discharge resistance substrate is arranged between an outer wall surface of the capacitor module and the control circuit substrate, and separated from the outer wall surface and the control circuit substrate in a direction perpendicular to the control circuit substrate,

wherein the discharge resistance substrate is arranged parallel to an inner wall surface of the casing between the casing and the cooling unit,

wherein the capacitor module comprises a filter capacitor and a smoothing capacitor which smooth a current flowing in the power conversion device, and the capacitor casing forms the outer wall surface of the capacitor module, and

wherein the discharge resistance substrate is attached to a substrate fixing part which extends outside from the outer wall surface of the capacitor module.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2020
From: TOYOTA JIDOSHA KABUSHIKI KAISHA
To: DENSO CORPORATION
Reel/Frame 053503/0781 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2019
From: MIYAZAKI, MASARU; SANO, TOMOHISA; HIROSE, KENTARO
To: DENSO CORPORATION; TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 048983/0954 →
Priority Claims (1)
JP 2018-085322 · Apr 26, 2018 · national
Continuity (1)
Related Publication 20190334440A1 · Oct 31, 2019