IP Library Granted Patent US 10,284,111
Granted Patent B2
US 10,284,111 · App. 14/555,986 · Granted May 7, 2019

Power conversion apparatus having connection conductors having inductance which inhibits ripple current

Inventors: Hiroyoshi Komatsu (Tokyo, JP); Manabu Souda (Tokyo, JP); Kimiyuki Koyanagi (Tokyo, JP)
Assignees: TOSHIBA MITSUBISHI—ELECTRIC INDUSTRIAL SYSTEMS CORPORATION; Mitsubishi Electric Corporation
H02M7/537H02J3/01H02M1/14H02M5/4585H02M7/003H02M7/493H05K7/1432Y02E40/40
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Quick Facts
Patent No.
US 10,284,111
App. No.
14/555,986
Granted
May 7, 2019
Kind
B2
Abstract

A power conversion apparatus includes a first power conversion circuit including a first switching element, a second power conversion circuit including a second switching element, a DC conductor which is provided in the first power conversion circuit and supplies a DC power to the first power conversion circuit, and a connection conductor which is provided in the first power conversion circuit, has a length having an inductance for inhibiting a flow of a ripple current caused by switching of the second switching element of the second power conversion circuit, and connects the DC conductor and the second power conversion circuit.

Claims (12)

1. A power conversion apparatus comprising: inverter circuits including switching elements outputting DC power to a capacitor;

DC conductors which are provided in each of the inverter circuits and supply a DC power to the inverter circuits, the switching elements being provided on a surface of one of the DC conductors; and

connection conductors connected to the DC conductors and provided in each of the inverter circuits, said connection conductors supplying the DC power from one inverter circuit to other inverter circuits and receiving the DC power from the other inverter circuits, the connection conductors being band shaped and having a width and a length by which the connection conductors exhibit an inductance component which inhibits a ripple current caused by switching of the switching elements; and

DC bus conductors which connect DC sides of the inverter circuits in parallel, wherein the connection conductors connect the DC bus conductors and the DC conductors; and

wherein the DC conductors include three divisional areas consecutively arranged in a connection direction of the DC conductors to the DC bus conductors, the three divisional areas including a first divisional area which is closest to a connection end of the connection conductors to the DC bus conductors, a second divisional area which is most distant from the connection end, and a third divisional area disposed between the first and second divisional areas, and the connection conductors have one end connected to the DC bus conductors and a second end connected to either of the second divisional area or the third divisional area.

2. The power conversion apparatus of claim 1 , wherein

the surface of each of the DC conductors has a rectangular shape, and

the connection conductors are connected to the DC conductors from a side of the DC conductors, other than a side which is closest to a side connected to another inverter circuit.

3. A method for manufacturing a power conversion apparatus including a first inverter circuit having first and second DC conductors and first switching elements provided on a surface of one of the DC conductors, a second inverter circuit including second switching elements, DC bus conductors which connect DC sides of the first and second inverter circuits in parallel, and connection conductors connected to the DC conductors and provided in each of the inverter circuits, said connection conductors supplying the DC power from one inverter circuit to other inverter circuits and receiving the DC power from the other inverter circuits via the DC bus conductors, said method comprising:

providing connection conductors with first and second ends to connect the first and second DC conductors to the DC bus conductors, the connection conductors being band shaped and having a width and a length by which the connection conductors exhibit an inductance component which inhibits a ripple current caused by switching of the second switching elements of the second inverter circuit;

providing the DC conductors with three divisional areas consecutively arranged in a connection direction of the DC conductors to the DC bus conductors, the three divisional areas including a first divisional area which is closest to a connection end of the connection conductors to the DC bus conductors, a second divisional area which is most distant from the connection end, and a third divisional area disposed between the first and second divisional areas;

connecting the first ends of the connection conductors to the DC bus conductors; and connecting the second ends of connection conductors to either of the second divisional area and third divisional area of said consecutively arranged three divisional areas of said first and second DC conductors.

Assignments (3)
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 May 17, 2021
From: MITSUBISHI ELECTRIC CORPORATION
To: TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION
Reel/Frame 056258/0901 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2014
From: KOMATSU, HIROYOSHI; SOUDA, MANABU; KOYANAGI, KIMIYUKI
To: TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION; MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 034277/0352 →
Continuity (2)
Continuation PCTJP2012064187 · May 31, 2012
Related Publication 20150085549A1 · Mar 26, 2015