IP Library Patent Application 14021265
Patent Application
App. No. 14/021,265

VARIABLE RELUCTANCE RESOLVER HAVING INTEGRAL ELECTROMAGNETIC INTERFERENCE SHIELD AND ROTARY ELECTRIC MACHINE HAVING SAME

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Quick Facts
Patent No.
US None
App. No.
14/021,265
Abstract

A variable reluctance resolver including a resolver stator having an annular resolver stator core surrounding an axis, a resolver rotor rotatable about the axis relative to the resolver stator and surrounded by the resolver stator core, and resolver EMI shielding. The resolver EMI shielding includes first and second resolver shields disposed on opposite axial sides of the resolver stator core. The resolver shielding has a relative permeability of at least about 50. Also, an electric machine having such a variable reluctance resolver.

Claims (27)

1 . An electric machine comprising:

a machine stator;

a machine rotor supported for relative rotation relative to the machine stator about an axis;

a variable reluctance resolver comprising a resolver stator having an annular resolver stator core rotatably fixed relative to the machine stator and surrounding the axis, and a resolver rotor rotatable in unison with the machine rotor and surrounded by the resolver stator core; and

resolver EMI shielding comprising first and second resolver shields disposed on opposite axial sides of the resolver stator core, the resolver shielding having a relative permeability of at least about 50.

2 . The electric machine of claim 1 , wherein the first and second resolver shields are separably assembled components of the electric machine.

3 . The electric machine of claim 1 , wherein the first and second resolver shields are components of the variable reluctance resolver.

4 . The electric machine of claim 3 , wherein the first and second resolver shields are separable components of the resolver stator.

5 . The electric machine of claim 3 , wherein the first and second resolver shields are integrally formed together and joined through the resolver stator core, whereby the first and second resolver shields are nonseparably integrated components of the resolver stator.

6 . The electric machine of claim 1 , wherein the resolver EMI shielding is formed of a plastic-type material having a relative permeability of at least about 50 and the first and second resolver shields are integrally formed together and joined through the resolver stator core.

7 . The electric machine of claim 1 , further comprising a machine shield located between the machine rotor and the variable reluctance resolver, the machine shield having a relative permeability of at least about 50, whereby EMI shielding of the variable reluctance resolver by the machine shield is supplemented by the resolver EMI shielding.

8 . The electric machine of claim 1 , further comprising a machine housing within which the machine stator, the machine rotor, and the variable reluctance resolver are disposed, the machine housing and machine stator rotatably fixed relative to each other, the resolver stator core and the resolver EMI shielding affixed to the machine housing.

9 . The electric machine of claim 1 , wherein the first and second resolver shields have flanges that superpose a respectively adjacent one of the opposite axial sides of the resolver stator core, the resolver stator core sandwiched between the flanges of the first and second resolver shields.

10 . The electric machine of claim 1 , wherein the resolver rotor has an inner perimeter and an outer perimeter interfacing the resolver stator core and radially outward of the inner perimeter, and at least one of the first and second resolver shields has a circumference radially inward of the resolver rotor outer perimeter.

11 . The electric machine of claim 1 , wherein the resolver rotor comprises a resolver rotor core having a first magnetic permeability and an isolating sleeve disposed radially between the resolver rotor core and the axis, the isolating sleeve having a second magnetic permeability substantially less than the first magnetic permeability.

12 . The electric machine of claim 11 , wherein the relative permeability of the isolating sleeve is no more than about 2.

13 . A variable reluctance resolver comprising:

a resolver stator having an annular resolver stator core surrounding an axis;

a resolver rotor rotatable about the axis relative to the resolver stator and surrounded by the resolver stator core; and

resolver EMI shielding comprising first and second resolver shields disposed on opposite axial sides of the resolver stator core, the resolver shielding having a relative permeability of at least about 50.

14 . The variable reluctance resolver of claim 13 , wherein the first and second resolver shields are separable components of the resolver stator.

15 . The variable reluctance resolver of claim 13 , wherein the first and second resolver shields are integrally formed together and joined through the resolver stator core, whereby the first and second resolver shields are nonseparably integrated components of the resolver stator.

16 . The variable reluctance resolver of claim 13 , wherein the resolver EMI shielding is formed of a plastic-type material having a relative permeability of at least about 50 and the first and second resolver shields are integrally formed together and joined through the resolver stator core.

17 . The variable reluctance resolver of claim 13 , wherein the first and second resolver shields have flanges that superpose a respectively adjacent one of the opposite axial sides of the resolver stator core, the resolver stator core sandwiched between the flanges of the first and second resolver shields.

18 . The variable reluctance resolver of claim 13 , wherein the resolver rotor has an inner perimeter and an outer perimeter interfacing the resolver stator core and radially outward of the inner perimeter, and at least one of the first and second resolver shields has a circumference radially inward of the resolver rotor outer perimeter.

19 . The variable reluctance resolver of claim 13 , wherein the resolver rotor comprises a resolver rotor core having a first magnetic permeability and an isolating sleeve disposed radially between the resolver rotor core and the axis, the isolating sleeve having a second magnetic permeability substantially less than the first magnetic permeability.

20 . The variable reluctance resolver of claim 19 , wherein the relative permeability of the isolating sleeve is no more than about 2.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2013
From: GALE, RICHARD
To: REMY TECHNOLOGIES, LLC
Reel/Frame 031537/0948 →