IP Library Granted Patent US 12,003,183
Granted Patent B2
US 12,003,183 · App. 17/050,627 · Granted Jun 4, 2024

Power conversion device and power conversion unit

Inventors: Yuki Yoshizumi (Tokyo, JP); Nobuhiro Takahashi (Tokyo, JP)
Assignee: TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION
H02M7/003H02M7/537
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Quick Facts
Patent No.
US 12,003,183
App. No.
17/050,627
Granted
Jun 4, 2024
Kind
B2
Abstract

A power conversion device includes: a housing including a floor, a ceiling, a front face; an input circuit part; a power conversion unit; a reactor; an output circuit; and an output terminal. These elements are arranged in a planar direction of the front face so as not to overlap each other. The input circuit part is provided above the floor, the output circuit part is provided below the ceiling and above the input circuit part, and the power conversion unit is provided above the input circuit part between the input circuit part and the output circuit part. The reactor is provided beside or above the power conversion unit between the input circuit part and the output circuit part. The input circuit part, the power conversion unit, the reactor, the output circuit part, and the output terminal are connected in series in this order through metal bus bars.

Claims (41)

1. A power conversion device comprising:

a housing having a floor, a ceiling provided above the floor, and a front face, a back face, and a pair of side faces that join the floor and the ceiling;

an input circuit part, a power conversion unit, a reactor, and an output circuit part housed inside the housing; and

an output terminal provided in the ceiling,

wherein the input circuit part, the power conversion unit, the reactor, and the output circuit part are arranged in a planar direction of the front face so as not to overlap each other in a plan view of the front face,

the input circuit part is provided above the floor,

the output circuit part is provided below the ceiling and above the input circuit per,

the power conversion unit is provided between the input circuit part and the output circuit part, and the reactor is provided beside or above the power conversion unit between the input circuit part and the output circuit part, and

wherein, with an axis in a direction from the floor to the ceiling being considered as a vertical coordinate axis, the input circuit part, the power conversion unit, the reactor, and the output circuit part are connected in series in this order through a plurality of metal bus bars that each extend vertically,

wherein, in a case where a predetermined reference axis is provided to pass through the floor and the ceiling in a plan view of the front face,

the input circuit part includes a first input circuit part and a second input circuit part provided at a line-symmetric position with respect to the first input circuit part about the reference axis,

the power conversion unit includes a first power conversion unit and a second power conversion unit provided at a line-symmetric position with respect to the first power conversion unit about the reference axis, and

the reactor includes a first reactor and a second reactor provided at a line-symmetric position with respect to the first reactor about the reference axis.

2. The power conversion device according to claim 1 ,

wherein the output circuit part includes:

a relay bus bar provided above the first reactor and the second reactor;

a breaker provided beside the relay bus bar; and

an output bus bar provided above the relay bus bar and beside the breaker.

3. The power conversion device according to claim 2 ,

wherein the first power conversion unit, the first reactor, the second reactor, and the second power conversion unit are arranged in this order.

4. The power conversion device according to claim 1 ,

wherein the input circuit part includes a plurality of input-side breakers connected to each other in parallel,

wherein each of the plurality of input-side breakers is provided with a power input terminal.

5. The power conversion device according to claim 1 ,

wherein the plurality of metal bus bars include:

a first metal bus bar having a first end connected to the input circuit part, a second end connected to the power conversion unit, and a first central part extending straight between the first end and the second end vertically in a plan view of the front face;

a second metal bus bar having a third end connected to the power conversion unit, a fourth end connected to the reactor, and a second central part extending straight between the third end and the fourth end vertically in a plan view of the front face; and

a third metal bus bar having a fifth end connected to the reactor, a sixth end connected to the output circuit part, and a third central part extending straight between the fifth end and the sixth end vertically in a plan view of the front face.

6. A power conversion device comprising:

a housing having a floor, a ceiling provided above the floor, and a front face, a back face, and a pair of side faces that join the floor and the ceiling;

an input circuit part, a power conversion unit, a reactor, and an output circuit part housed inside the housing; and

an output terminal provided in the ceiling,

wherein the input circuit part, the power conversion unit, the reactor, and the output circuit part are arranged in a planar direction of the front face so as not to overlap each other in a plan view of the front face,

the input circuit part is provided above the floor,

the output circuit part is provided below the ceiling and above the input circuit part,

the power conversion unit is provided between the input circuit part and the output circuit part, and the reactor is provided beside or above the power conversion unit between the input circuit part and the output circuit part, and

wherein, with an axis in a direction from the floor to the ceiling being considered as a vertical coordinate axis, the input circuit part, the power conversion unit, the reactor, and the output circuit part are connected in series in this order through a plurality of metal bus bars that each extend vertically,

wherein the plurality of metal bus bars include:

a first metal bus bar having a first end connected to the input circuit part, a second end connected to the power conversion unit, and a first central part extending straight between the first end and the second end vertically in a plan view of the front face;

a second metal bus bar having a third end connected to the power conversion unit, a fourth end connected to the reactor, and a second central part extending straight between the third end and the fourth end vertically in a plan view of the front face; and

a third metal bus bar having a fifth end connected to the reactor, a sixth end connected to the output circuit part, and a third central part extending straight between the fifth end and the sixth end vertically in a plan view of the front face.

Assignments (2)
CHANGE OF NAME Recorded Apr 26, 2024
From: TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION
To: TMEIC CORPORATION
Reel/Frame 067244/0359 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2020
From: YOSHIZUMI, YUKI; TAKAHASHI, NOBUHIRO
To: TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION
Reel/Frame 054166/0460 →
Continuity (1)
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