IP Library Granted Patent US 10,583,912
Granted Patent B2
US 10,583,912 · App. 16/282,186 · Granted Mar 10, 2020

Combined fan and motor

Inventor: Geoffrey Alan Long (Montara, CA)
Assignee: WISK AERO LLC
B64C11/02B64C11/20B64C11/28B64C27/32B64C29/0025B64D27/24B64D35/02H02K7/14H02K21/24
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Quick Facts
Patent No.
US 10,583,912
App. No.
16/282,186
Granted
Mar 10, 2020
Kind
B2
Abstract

A lift fan includes a stator which is configured to output a magnetic field. The lift fan also includes a first housing which in turn includes a blade, a second housing, and a magnet array. The magnet array is coupled to either the first housing or the second housing and the housing, which is coupled to the magnet array, rotates in response to the magnet array responding magnetically to the magnetic field output by the stator.

Claims (74)

1. A lift fan, comprising:

a first housing which includes an unshielded blade extending radially outwards;

a second housing, wherein the first housing and the second housing are incorporated into the lift fan such that a surface of the second housing faces a surface of the first housing, and the first housing and the second housing are connected at a plurality of points to stabilize the lift fan during operation;

a magnet array, wherein:

the magnet array is coupled to at least one of the first housing and the second housing; and

the at least one of the first housing or the second housing which is coupled to the magnet array rotates in response to the magnet array responding magnetically to a magnetic field output by a stator; and

a magnetic lock, wherein the magnetic lock includes a stationary magnet and a rotating magnet coupled to an arm, wherein the magnetic lock is adapted to magnetically engage when the arm is in a first position placing the rotating magnet parallel to the stationary magnet.

2. The lift fan of claim 1 , further comprising the stator configured to output a magnetic field.

3. The lift fan of claim 1 , wherein the magnetic lock is adapted to magnetically engage when the arm is in the first position in response to an amount of gravity pulling down on the arm exceeds an amount of centrifugal force caused by spinning of the lift fan pushing the arm upwards or outwards toward a second position.

4. The lift fan of claim 1 , wherein:

the first housing is an upper housing and the second housing is a lower housing; and

the upper housing includes a second blade.

5. The lift fan of claim 1 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the magnet array is an upper magnet array which is coupled to the upper housing; and

the lift fan further includes a lower magnet array which is coupled to the lower housing and the lower housing rotates in response to the lower magnet array responding magnetically to the magnetic field output by the stator.

6. The lift fan of claim 1 , wherein the magnet array includes an embedded magnet array.

7. The lift fan of claim 1 , wherein the magnet array includes a surface-mounted magnet array.

8. The lift fan of claim 1 , wherein:

the magnet array includes a surface-mounted magnet array; and

the lift fan further includes a magnet carrier which is used to couple the surface-mounted magnet array to at least one of the first housing and the second housing.

9. The lift fan of claim 1 , wherein:

the magnet array includes a surface-mounted magnet array;

the lift fan further includes a magnet carrier which is used to couple the surface-mounted magnet array to at least one of the first housing and the second housing; and

the magnet carrier includes an impeller.

10. The lift fan of claim 1 , wherein the magnet array is coated with a substance which reduces a friction of the magnet array.

11. The lift fan of claim 1 , wherein:

the magnet array is coated with a substance which reduces a friction of the magnet array; and

the substance includes polytetrafluoroethylene (PTFE).

12. The lift fan of claim 1 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the upper housing includes a second blade; and

the lift fan is able to stop in a fixed position with the upper housing oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards.

13. The lift fan of claim 1 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the upper housing includes a second blade;

the lift fan is able to stop in a fixed position with the upper housing oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards; and

when the magnetic lock is in a locked state, the upper housing is oriented such that the unshielded blade is pointing forwards and the second blade pointing backwards.

14. The lift fan of claim 1 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the upper housing includes a second blade;

the lift fan is able to stop in a fixed position with the upper housing oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards; and

when the magnetic lock is in a locked state, the upper housing is oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards.

15. A method, comprising:

outputting a magnetic field using a stator, wherein the stator is included in a lift fan which further includes:

a first housing which includes an unshielded blade extending radially outwards;

a second housing, wherein the first housing and the second housing are incorporated into the lift fan such that a surface of the second housing faces a surface of the first housing, and the first housing and the second housing are connected at a plurality of points to stabilize the lift fan during operation; and

a magnet array, wherein:

the magnet array is coupled to at least one of the first housing and the second housing; and

the at least one of the first housing or the second housing which is coupled to the magnet array rotates in response to the magnet array responding magnetically to a magnetic field output by a stator; and

a magnetic lock, wherein the magnetic lock includes a stationary magnet and a rotating magnet coupled to an arm and the magnetic lock is adapted to magnetically engage when the arm is in a first position placing the rotating magnet parallel to the stationary magnet; and

rotating the first housing or the second housing which is coupled to the magnet array in response to the magnet array responding magnetically to the magnetic field output by the stator.

16. The method of claim 15 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the magnet array is an upper magnet array which is coupled to the upper housing; and

the lift fan further includes a lower magnet array which is coupled to the lower housing and the lower housing rotates in response to the lower magnet array responding magnetically to the magnetic field output by the stator.

17. The method of claim 15 , wherein:

the magnet array includes a surface-mounted magnet array;

the lift fan further includes a magnet carrier which is used to couple the surface-mounted magnet array to either the first housing or the second housing; and

the magnet carrier includes an impeller.

18. The method of claim 15 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the upper housing includes a second blade; and

the lift fan is able to stop in a fixed position with the upper housing oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards.

19. The method of claim 15 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the upper housing includes a second blade;

the lift fan is able to stop in a fixed position with the upper housing oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards; and

when the magnetic lock is in a locked state, the upper housing is oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards.

20. The method of claim 15 , wherein:

the first housing is an upper housing and the second housing is a lower housing;

the upper housing includes a second blade;

the lift fan is able to stop in a fixed position with the upper housing oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards; and

when the magnetic lock is in a locked state, the upper housing is oriented such that the unshielded blade is pointing forwards and the second blade is pointing backwards.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 27, 2019
From: LONG, GEOFFREY ALAN
To: KITTY HAWK CORPORATION
Reel/Frame 051378/0698 →
CHANGE OF NAME Recorded Dec 17, 2019
From: CORA AERO LLC
To: WISK AERO LLC
Reel/Frame 051328/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2019
From: KITTY HAWK CORPORATION
To: CORA AERO LLC
Reel/Frame 050374/0303 →
RELEASE OF SECURITY INTEREST IN SPECIFIED INTELLECTUAL PROPERTY Recorded Jun 28, 2019
From: ONE AERO, LLC
To: KITTY HAWK CORPORATION
Reel/Frame 049627/0207 →
Continuity (2)
Continuation 15599986 · May 19, 2017
Related Publication 20190185140A1 · Jun 20, 2019