IP Library Granted Patent US 9,385,576
Granted Patent B2
US 9,385,576 · App. 13/971,807 · Granted Jul 5, 2016

Rotatory device end cap with unpackaged filters

Inventors: Maoxiong Jiang (Shenzhen, CN); Tongjie Li (Shenzhen, CN); Qingbin Luo (Shenzhen, CN); Xinpeng Wei (Shenzhen, CN); Huiting Zhong (Shenzhen, CN)
Assignee: JOHNSON ELECTRIC S.A.
H02K11/0005H02K11/026
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Quick Facts
Patent No.
US 9,385,576
App. No.
13/971,807
Granted
Jul 5, 2016
Kind
B2
Abstract

A rotatory device ( 1 ) for energy conversion between electrical energy and mechanical energy includes an end cap ( 20 ) to which electric conduction and commutation components ( 30 ) are attached. The end cap ( 20 ) is electrically insulating and has a flange mating to an electric conductive housing ( 10 ) of the rotatory device ( 1 ). An unpackaged capacitor ( 40 ) is positioned between the housing ( 10 ) and the flange ( 20 ) without occupying other space inside the housing ( 10 ) of rotatory device ( 1 ). The unpackaged capacitor ( 40 ) is electrically coupled to the electric conduction and commutation component and grounded to the housing ( 10 ) of the rotatory device ( 1 ).

Claims (53)

1. A rotatory device for conversion between electrical energy and mechanical energy, comprising:

an energy conversion element having a rotation shaft;

a housing comprising a sidewall surrounding the energy conversion element;

an end cap attached to the housing and comprising a first flange;

an electric conduction component disposed on the end cap and operatively coupled to the energy conversion element; and

a first unpackaged capacitor sandwiched between the first flange of the end cap and the housing and having a first metallic component electrically coupled to the electric conduction component and a second metallic component grounded to the housing,

wherein the first unpackaged capacitor has a cross-sectional profile having two obtuse bends between the first flange and the interior side of the sidewall of the housing.

2. The rotatory device of claim 1 , wherein the electric conduction component disposed on the end cap comprises a first brush.

3. The rotatory device of claim 2 , wherein the electric conduction component further comprises a first interconnect component disposed on the end cap and connected to the first brush and to the first metallic component of the first unpackaged capacitor.

4. The rotatory device of claim 1 , wherein the first unpackaged capacitor further comprises a dielectric component sandwiched between the first metallic component and the second metallic component.

5. The rotatory device of claim 1 , wherein the first flange of the end cap extends in a direction parallel to the rotation shaft of the energy conversion element.

6. The rotatory device of claim 1 , wherein:

the housing further includes a flange perpendicular to the rotation shaft of the energy conversion element;

the first flange of the end cap extends perpendicularly to the rotation shaft of the energy conversion element; and

the first unpackaged capacitor includes a portion sandwiched between the flange of the housing and the first flange of the end cap.

7. The rotatory device of claim 1 , further comprising a second unpackaged capacitor having a first metallic component electrically coupled to the electric conduction component and a second metallic component electrically coupled to the housing, wherein:

the end cap further has a second flange; and

the second unpackaged capacitor is sandwiched between the second flange of the end cap and the housing.

8. The rotatory device of claim 7 , wherein:

the electric conduction component includes a first brush and a second brush;

the first metallic component of the first unpackaged capacitor is electrically coupled to the first brush of the electric conduction component; and

the first metallic component of the second unpackaged capacitor is electrically coupled to the second brush of the electric conduction component.

9. An electric motor, comprising:

a rotor and stator assembly having a rotation shaft;

a commutator attached to the rotation shaft of said rotor stator assembly;

a housing having a sidewall surrounding said rotor and stator assembly have an open end;

an end cap attached to the open end of said housing and having a first flange;

a first brush assembly disposed on said end cap and operatively coupled to said commutator; and

a first unpackaged capacitor sandwiched between the first flange of said end cap and said housing and having a first metallic component electrically coupled to said first brush assembly and a second metallic component electrically coupled to said housing, wherein

said housing includes a flange adjacent to the open end thereof and perpendicular to the rotation shaft of said rotor and stator assembly;

the first flange of the end cap extending perpendicularly to said rotor and stator assembly and secured to the flange of said housing; and

said first unpackaged capacitor includes a portion sandwiched between the flange of said housing and the first flange of said end cap.

10. The electric motor of claim 9 , wherein said first unpackaged capacitor includes a dielectric layer sandwiched between said first metallic component and said second metallic component.

11. The electric motor of claim 9 , said first brush assembly including:

a brush holder attached to said end cap;

a brush slidably attached to said brush holder; and

said first metallic component is electrically coupled to said brush of said first brush assembly.

12. The electric motor of claim 9 , further comprising an interconnect component disposed on said end cap and electrically connected to said first brush assembly, wherein:

said first metallic component of said first unpackaged capacitor has a portion in contact with said interconnect component; and

said second metallic component of said first unpackaged capacitor has a portion in contact with said housing.

13. The electric motor of claim 9 , wherein:

said end cap has the first flange extending parallel to the rotation shaft of said rotor and stator assembly; and

said first unpackaged capacitor has a cross-sectional profile with multiple bends between the first flange of said end cap and an interior side of the sidewall of said housing with a portion of said second metallic component thereof in contact with the interior side of said housing.

14. The electric motor of claim 13 , wherein said first unpackaged capacitor has a cross-sectional profile having two obtuse bends between the first flange and the interior side of the sidewall of said housing.

15. The electric motor of claim 9 , further comprising an interconnect component disposed on said end cap and electrically connected to said first brush assembly, wherein:

said first metallic component of said first unpackaged capacitor has a portion in contact with said interconnect component; and

said second metallic component of said first unpackaged capacitor has a portion in contact with said housing.

16. The electric motor of claim 9 , further comprising:

a second brush assembly disposed on said end cap and operatively coupled to said commutator; and

a second unpackaged capacitor having a first metallic component electrically coupled to said second brush assembly and a second metallic component electrically coupled to said housing.

17. The electric motor of claim 16 , wherein:

said end cap further has a second flange; and

said second unpackaged capacitor is sandwiched between the second flange of said end cap and said housing.

Assignments (2)
MERGER Recorded Jun 3, 2019
From: JOHNSON ELECTRIC S.A.
To: JOHNSON ELECTRIC INTERNATIONAL AG
Reel/Frame 049354/0072 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2013
From: JIANG, MAOXIONG; LI, TONGJIE; LUO, QINGBIN; WEI, XINPENG; ZHONG, HUITING
To: JOHNSON ELECTRIC S.A.
Reel/Frame 031048/0235 →
Priority Claims (1)
CN 2012 1 0296857 · Aug 20, 2012 · national
Continuity (1)
Related Publication 20140049126A1 · Feb 20, 2014