IP Library Patent Application 13559330
Patent Application
App. No. 13/559,330

Rotor Lamination Structure For Permanent Magnet Machine

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Quick Facts
Patent No.
US None
App. No.
13/559,330
Abstract

A rotor structure is provided to block direct axis flux from a stator armature without reducing the main magnetizing flux from permanent magnet inside the rotor. For example, a rotor may be provided including a magnet and a non-magnetic region located radially between the magnet and an edge of the rotor.

Claims (32)

1 . A rotor for an electric machine, the rotor comprising:

a magnet; and

a non-magnetic region located radially between the magnet and an edge of the rotor.

2 . The rotor of claim 1 , wherein the non-magnetic region is an electrically non-conductive region.

3 . The rotor of claim 1 wherein the non-magnetic region is a hole in the rotor.

4 . The rotor of claim 1 wherein the non-magnetic region is filled with epoxy.

5 . The rotor of claim 1 wherein the non-magnetic region approximates a tear-drop shape.

6 . The rotor of claim 1 further comprising a magnetic region located between the non-magnetic region and the edge of the rotor.

7 . The rotor of claim 1 further comprising a magnetic region located between the magnet and the non-magnetic region.

8 . The rotor of claim 1 further comprising:

a second magnet having an first end adjacent to a second end of the magnet; and

a second non-magnetic region located radially between the second magnet and the edge of the rotor.

9 . The rotor of claim 8 wherein the non-magnetic region is a hole in the rotor, and wherein the second non-magnetic region is a hole in the rotor.

10 . The rotor of claim 8 further comprising:

a first magnetic region located between the non-magnetic region and the edge of the rotor; and

a second magnetic region located between the second non-magnetic region and the edge of the rotor.

11 . The rotor of claim 8 further comprising:

a third magnetic region located between the magnet and the non-magnetic region; and

a fourth magnetic region located between the second magnet and the second non-magnetic region.

12 . The rotor of claim 8 further comprising a third non-magnetic region located between the magnet and the second magnet.

13 . The rotor of claim 8 further comprising a magnetic region located between the magnet and the second magnet.

14 . The rotor of claim 1 wherein the edge is configured to be located adjacent to a gap that is adjacent to a stator.

15 . A rotor for an electric machine, the rotor comprising a rotor portion generally having the shape of a disk, the disk having a plurality of magnetic field producing portions equally spaced about the periphery of the disk, each magnetic field producing portion including at least one magnet, each magnetic field producing portion having two ends, a first end of a first magnetic field producing portion being adjacent to a second end of a second magnetic field producing portion, a first non-magnetic region being located between the first end of the first magnetic field producing portion and the second end of the second magnetic field producing portion, a second non-magnetic region located radially between the first magnetic field producing portion and an edge of the rotor.

16 . The rotor according to claim 15 further comprising a third non-magnetic region being located radially between the second magnetic field producing portion and an edge of the rotor.

17 . The rotor according to claim 15 wherein the second non-magnetic region is an electrically non-conductive region.

18 . The rotor according to claim 15 wherein the second non-magnetic region is a hole in the rotor.

19 . The rotor according to claim 15 wherein the second non-magnetic region is filled with epoxy.

20 . The rotor according to claim 15 wherein the second non-magnetic region approximates a tear-drop shape.

21 . The rotor according to claim 15 further comprising a magnetic region located between the second non-magnetic region and the edge of the rotor.

22 . The rotor according to claim 15 further comprising a magnetic region located between the first magnet portion and the second non-magnetic region.

23 . The rotor according to claim 15 wherein the first magnetic region is generally a trapezoidal shape.

24 . A rotor structure configured to block direct axis flux from a stator armature without reducing main magnetizing flux from a magnet inside the rotor.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2014
From: DANOTEK MOTION TECHNOLOGIES INCORPORATED; SHERWOOD PARTNERS LLC
To: TOTARO, PHILIP
Reel/Frame 033122/0784 →
SECURITY AGREEMENT Recorded Aug 9, 2012
From: DANOTEK MOTION TECHNOLOGIES, INC.
To: SILICON VALLEY BANK
Reel/Frame 028768/0680 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2012
From: LEE, SEONG T.; DENG, FANG
To: DANOTEK MOTION TECHNOLOGIES, INC.
Reel/Frame 028658/0440 →