IP Library Granted Patent US 9,985,494
Granted Patent B2
US 9,985,494 · App. 14/480,310 · Granted May 29, 2018

Electrical machine and controller and methods of assembling the same

Inventors: Jason Jon Kreidler (Sheboygan Falls, WI); Rafal Pawel Rohoza (Fort Wayne, IN); Norman Carl Golm, Jr. (Fort Wayne, IN); David Bruce Hyypio (Wausau, WI); Marc McKinzie (West Milton, OH); Mark Lyon Klopp (Fort Wayne, IN)
Assignee: Regal Beloit America, Inc.
H02K5/22F04D17/08F04D17/16F04D25/06F04D25/068F04D25/082F04D29/28H02K5/00H02K5/1735H02K5/18H02K7/14H02K11/0068H02K11/04H02K11/33H02K15/02H02K21/24H02K5/225H02K2211/03
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Quick Facts
Patent No.
US 9,985,494
App. No.
14/480,310
Granted
May 29, 2018
Kind
B2
Abstract

A fluid circulating assembly includes an electrical machine having a rotor assembly, a stator assembly, and a housing. The housing includes an annular center section and at least two extension portions extending radially outward from the annular center section of the housing. The fluid circulating assembly also includes a controller assembly coupled to the housing. The said controller assembly is positioned radially outward from the stator assembly and located in at least one of the at least two extension portions.

Claims (24)

1. A fluid circulating assembly comprising:

an electrical machine comprising a rotor assembly, a stator assembly, and a housing, said housing comprising an annular center section and at least two extension portions extending radially outward from said annular center section, wherein said annular section and said at least two extension portions form at least a portion of a cavity within said housing; and

a controller assembly coupled to said housing, wherein said controller assembly is positioned radially outward from said stator assembly and located in at least one of said at least two extension portions within the cavity.

2. The fluid circulating assembly in accordance with claim 1 , wherein said controller assembly comprises a modular controller assembly comprising at least two circuit boards, each respective circuit board positioned in a respective one of said at least two extension portions.

3. The fluid circulating assembly in accordance with claim 2 , wherein said at least two circuit boards are arranged by discrete functions of said controller assembly.

4. The fluid circulating assembly in accordance with claim 3 , wherein said modular controller assembly comprises three circuit boards, comprising a user interface board, a rectifier board, and an inverter board.

5. The fluid circulating assembly in accordance with claim 3 , wherein said modular controller assembly comprises four circuit boards, comprising a user interface board, an AC input board, and a rectifier board, and an inverter board.

6. The fluid circulating assembly in accordance with claim 2 , wherein said at least two circuit boards are fabricated by distributing at least one heat making component of said controller assembly onto each of said at least two circuit boards.

7. The fluid circulating assembly in accordance with claim 2 , wherein at least one of said at least two circuit boards are arranged perpendicular to an axial plane of said stator assembly.

8. The fluid circulating assembly in accordance with claim 2 , wherein at least one of said at least two circuit boards are arranged substantially planar with respect to a back plane of said stator assembly.

9. The fluid circulating assembly in accordance with claim 1 , wherein said controller assembly is oriented substantially planar with respect to a back plane of said stator assembly.

10. The fluid circulating assembly in accordance with claim 1 , wherein said housing comprises an annular flange extending axially inward from an inner surface of said housing, said annular flange extending from a periphery of said annular center section to facilitate isolating said stator assembly from said controller assembly.

11. The fluid circulating assembly in accordance with claim 1 , wherein at least one of said at least two extension portions comprises one or more of the following: an inlet opening and a terminal cover.

12. A method of assembling a fluid circulating assembly, said method comprising:

providing an electrical machine including a rotor assembly, a stator assembly, and a housing, the housing including an annular center section and at least two extension portions extending radially outward from the annular center section, wherein the annular section and the at least two extension portions form at least a portion of a cavity within the housing; and

positioning a controller assembly within to the cavity, wherein the controller assembly is positioned radially outward from the stator assembly and located in at least one of the at least two extension portions.

13. The method in accordance with claim 12 , wherein coupling a controller assembly to the housing comprises coupling the controller assembly to the housing, wherein the controller assembly includes a modular controller assembly having at least two circuit boards, each respective circuit board positioned in a respective one of the at least two extension portions.

14. The method in accordance with claim 13 , wherein coupling a controller assembly to the housing comprises coupling the controller assembly to the housing, wherein the at least two circuit boards are arranged by discrete functions of the controller assembly.

15. The method in accordance with claim 13 , wherein coupling a controller assembly to the housing comprises coupling the controller assembly to the housing, wherein the at least two circuit boards are fabricated by distributing at least one heat making component of the controller assembly onto each of the at least two circuit boards.

16. The method in accordance with claim 13 , wherein coupling a controller assembly to the housing comprises coupling the controller assembly to the housing, wherein at least one of the at least two circuit boards are arranged perpendicular to an axial plane of the stator assembly.

17. The method in accordance with claim 13 , wherein coupling a controller assembly to the housing comprises coupling the controller assembly to the housing, wherein at least one of the at least two circuit boards are arranged substantially planar with respect to a back plane of the stator assembly.

18. The method in accordance with claim 12 , wherein coupling a controller assembly to the housing comprises coupling the controller assembly to the housing, wherein the controller assembly is oriented substantially planar with respect to a back plane of the stator assembly.

19. The method in accordance with claim 12 , wherein providing an electrical machine including a rotor assembly, a stator assembly, and a housing comprises providing the electrical machine including the rotor assembly, the stator assembly, and the housing, wherein the housing includes an annular flange extending axially inward from an inner surface of the housing, the annular flange extending from a periphery of the annular center section to facilitate isolating the stator assembly from the controller assembly.

20. The method in accordance with claim 12 , wherein providing an electrical machine including a rotor assembly, a stator assembly, and a housing comprises providing the electrical machine including the rotor assembly, the stator assembly, and the housing, wherein at least one of the at least two extension portions includes one or more of the following: an inlet opening and a terminal cover.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2014
From: KREIDLER, JASON JON; ROHOZA, RAFAL PAWEL; GOLM, NORMAN CARL, JR; HYYPIO, DAVID BRUCE; MCKINZIE, MARC; KLOPP, MARK LYON
To: REGAL BELOIT AMERICA, INC.
Reel/Frame 033693/0051 →
Continuity (1)
Related Publication 20160072359A1 · Mar 10, 2016