IP Library Granted Patent US 11,967,888
Granted Patent B2
US 11,967,888 · App. 17/643,570 · Granted Apr 23, 2024

Electric motor and inverter assembly with bus bar and cooling channel

Inventors: Joachim Druant (Merkem, BE); Steven Vanhee (Hooglede, BE)
Assignee: DANA BELGIUM N.V.
H02K9/19H02K5/18H02K5/203H02M7/003
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Quick Facts
Patent No.
US 11,967,888
App. No.
17/643,570
Granted
Apr 23, 2024
Kind
B2
Abstract

An electric motor and inverter assembly and a method of assembly therefor, the electric motor and inverter assembly having a motor housing portion, a DC bus bar for electrically connecting a DC power source to an inverter power module where the DC bus bar is mounted on the housing portion, and a cooling channel disposed in between the housing portion and the DC bus bar for cooling the DC bus bar.

Claims (33)

1. An electric motor and inverter assembly, comprising:

a motor housing portion;

a DC bus bar assembly for electrically connecting a DC power source to an inverter power module, the DC bus bar assembly mounted on the housing portion;

a cooling channel disposed in between the housing portion and the DC bus bar assembly for cooling the DC bus bar assembly;

a stator, wherein the DC bus bar assembly is disposed on a side of the housing portion facing the stator;

at least one capacitor electrically connected or connectable to the DC bus bar assembly and mounted on the DC bus bar assembly on a side of the DC bus bar assembly averted from the housing portion; and

first connectors electrically connecting the at least one capacitor to the DC bus bar assembly, wherein all or some of the first connectors include an embedded portion embedded or received in the DC bus bar assembly and tapered toward the at least one capacitor.

2. The electric motor and inverter assembly of claim 1 , further comprising a rotor defining a motor axis, wherein the housing portion extends transverse to the motor axis.

3. The electric motor and inverter assembly of claim 1 , wherein the housing portion delimits the cooling channel.

4. The electric motor and inverter assembly of claim 2 , further comprising webs or protrusions extending from the housing portion in the axial direction and delimiting the cooling channel, wherein the webs or protrusions and the housing portion are formed in one piece.

5. The electric motor and inverter assembly of claim 1 , further including a heat transfer enhancing structure disposed within the cooling channel, the heat transfer enhancing structure including one or more of: fins or ribs formed in one piece with the housing portion, turbulizers, and metal foam.

6. The electric motor and inverter assembly of claim 1 , wherein the DC bus bar assembly closes the cooling channel.

7. The electric motor and inverter assembly of claim 4 , wherein the DC bus bar assembly is supported on the webs or protrusions and the cooling channel is formed in between the housing portion, the webs or protrusions, and the DC bus bar assembly.

8. The electric motor and inverter assembly of claim 1 , further comprising a motor shaft reaching through an opening or a through hole in the DC bus bar assembly.

9. The electric motor and inverter assembly of claim 8 , further comprising a bearing, wherein the motor shaft is mounted on the housing portion via the bearing, the bearing is disposed in between the DC bus bar assembly and the housing portion, and the DC bus bar assembly fixes or clamps the bearing to the housing portion.

10. The electric motor and inverter assembly of claim 1 , further comprising an inverter power module mounted on the housing portion, the DC bus bar assembly and the inverter power module mounted on opposite sides of the housing portion, and the cooling channel disposed in between the DC bus bar assembly and the inverter power module for cooling both the DC bus bar assembly and the inverter power module.

11. The electric motor and inverter assembly of claim 10 , further comprising the stator including stator windings, and at least one AC bus bar assembly electrically connecting the inverter power module to the stator windings, the at least one AC bus bar mounted on the DC bus bar assembly on a side of the DC bus bar assembly averted from the housing portion.

12. The electric motor and inverter assembly of claim 11 , further comprising third connectors electrically connecting the inverter power module to the at least one AC bus bar assembly, wherein the third connectors reach through the housing portion and through the DC bus bar assembly.

13. An electric motor and inverter assembly, comprising:

a motor housing portion;

a DC bus bar assembly for electrically connecting a DC power source to an inverter power module, the DC bus bar assembly mounted on the housing portion;

a cooling channel disposed in between the housing portion and the DC bus bar assembly for cooling the DC bus bar assembly;

an inverter power module mounted on the housing portion, the DC bus bar assembly and the inverter power module mounted on opposite sides of the housing portion, and the cooling channel disposed in between the DC bus bar assembly and the inverter power module for cooling both the DC bus bar assembly and the inverter power module; and

second connectors electrically connecting the inverter power module to the DC bus bar assembly, wherein the second connectors reach through the housing portion and reach through or reach at least partially through the DC bus bar assembly, the second connectors clamping or tight-fitting the DC bus bar assembly to the housing portion.

14. The electric motor and inverter assembly of claim 13 , wherein all or some of the second connectors include an embedded portion embedded or received in the DC bus bar assembly and tapered toward the housing portion.

15. A method of assembling an electric motor and inverter assembly, the method comprising:

mounting a DC bus bar assembly on a motor housing portion to form a cooling channel disposed in between the housing portion and the DC bus bar assembly for cooling the DC bus bar assembly; and

arranging each of one or more capacitors so as to be, in an axial direction parallel to an axis of rotation of a rotor of the electric motor, in between the DC bus bar assembly and at least a portion of the rotor, and so as to be, in a radial direction perpendicular to the axial direction, in between a motor shaft connected with the rotor and a set of end windings of a stator of the electric motor.

16. The method of claim 15 , further comprising:

mounting an inverter power module on the housing portion on a side of the housing portion opposite the DC bus bar assembly such that the cooling channel is disposed in between the DC bus bar assembly and the inverter power module for cooling both the DC bus bar assembly and the inverter power module, and

passing one or more electrical connectors through the housing portion to electrically connect the inverter power module to the DC bus bar assembly.

17. The method of claim 15 , further comprising:

mounting the one or more capacitors on the DC bus bar assembly on a side of the DC bus bar assembly averted from the housing portion and electrically connecting the one or more capacitors to the DC bus bar assembly.

Assignments (3)
CHANGE OF NAME Recorded Jan 23, 2026
From: DANA BELGIUM N.V.
To: DANA BELGIUM
Reel/Frame 074502/0049 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2026
From: DANA BELGIUM
To: DANA TM4 INC.
Reel/Frame 073474/0330 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2023
From: DRUANT, JOACHIM; VANHEE, STEVEN
To: DANA BELGIUM N.V.
Reel/Frame 062810/0310 →
Priority Claims (1)
DE 10 2020 133 190.8 · Dec 11, 2020 · national
Continuity (1)
Related Publication 20220190684A1 · Jun 16, 2022