IP Library Granted Patent US 7,586,217
Granted Patent B1
US 7,586,217 · App. 11/864,526 · Granted Sep 8, 2009

High performance motor and magnet assembly therefor

Assignee: Anorad Corporation
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Quick Facts
Patent No.
US 7,586,217
App. No.
11/864,526
Granted
Sep 8, 2009
Kind
B1
Abstract

A magnet assembly includes a back iron and an array of magnets. The back iron is in the form of a plate having opposed surfaces. The magnets are arranged along one of the surfaces, with the other surface being dimensioned and configured according to the magnetic field distribution associated with the magnets. The back iron geometry provides for reduced mass, reduced leakage flux, and high flux densities to improve performance of a linear motor that employs such a magnet assembly. Additionally, the back iron can be a magnetically conductive annular ring, such as is employed in a rotary motor. Moreover, the magnets can be arranged in a manner that generates a Halbach array to increase force output in a desired direction while canceling stray magnetic fields in other directions. Similar reduced-mass designs can be employed in conjunction with a back iron of a fixed cross-section and magnets of variable thicknesses, variable lengths, and/or variable widths. In a case where the arrangement is employed in a platen and forcer system, plates on both the platen and forcer may be scalloped to reduce mass.

Claims (15)

1. A magnet assembly for a motor, comprising:

means for assembling of a plurality of magnets associated with a magnetically conductive annular ring having a cross-sectional dimension defined by an outer perimeter relating to an exterior surface and an inner perimeter relating to an interior surface, the magnets are placed in a spaced apart relationship on top of and facing radially outward from the interior surface; and

means for distributing the magnets to substantially conform to magnetic flux that travels through the magnetically conductive annular ring when the magnet is exposed to a magnetic field, such that the cross-sectional dimension of the annular ring varies according to the placement of the magnets and the non-planar topology of the exterior surface the annular ring has an exterior surface topology of peaks and valleys that are at least one of generally sinusoidal, square, triangular, and saw-toothed in shape.

2. The magnet assembly of claim 1 , the magnets are arranged in a Halbach array that mitigates stray magnetic fields outside of the annular ring.

3. The magnetic assembly of claim 1 wherein the spaces between magnets are formed below peaks and the magnets are formed below valleys.

4. The magnetic assembly of claim 1 , the annular ring comprises a core of optimized non-oriented steel.

5. The magnetic assembly of claim 1 , the assembly is integral to a rotary motor.

6. The magnetic assembly of claim 5 , the rotary motor comprising an exterior rotor and an interior stator, the stator further comprising an interior cylindrical core with a plurality of notches, the plurality of notches form a scalloped surface.

7. The magnetic assembly of claim 1 , wherein the magnets have rounded edges to reduce the mass of the assembly.

8. The magnet assembly of claim 1 , further comprising means for distributing the magnets to substantially conform to magnetic flux that travels through the magnetically conductive annular ring when the magnet is exposed to a magnetic field, whereby the annular ring has a second cross-sectional dimension defined by the outer perimeter and the radial outer crown surface of the magnets, the second cross-sectional dimension varies as a function of the thickness of the respective magnets while the first cross-sectional dimension remains constant.

9. The magnet assembly of claim 8 , the magnets are arranged in a Halbach array that mitigates stray magnetic fields outside of the annular ring.

10. The magnetic assembly of claim 8 , wherein the magnets have varied thicknesses.

11. The magnetic assembly of claim 8 , wherein the magnets have rounded edges to reduce the mass of the assembly.

12. The magnetic assembly of claim 8 , the assembly is integral to a rotary motor.

13. The magnetic assembly of claim 12 , the rotary motor comprising an exterior rotor and an interior stator, the stator further comprising an interior cylindrical core with a plurality of notches, the plurality of notches form a scalloped surface.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 019898 FRAME 0067. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNEE. Recorded Dec 4, 2007
From: SMITH, JAMES F.; THIRUNARAYAN, NANDAKUMAR
To: ANORAD CORPORATION
Reel/Frame 020214/0622 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2007
From: SMITH, JAMES F.; THIRUNARAYAN, NANDAKUMAR
To: ROCKWELL AUTOMATION TECHNOLOGIES, INC.
Reel/Frame 019898/0067 →
Continuity (5)
Division 1138164800 · May 4, 2006
Continuation In Part 1115115200 · Jun 13, 2005
Division 1088938400 · Jul 12, 2004
Division 1036916100 · Feb 19, 2003
Provisional Application 6035865400 · Feb 21, 2002