IP Library › Granted Patent US 11,925,796
Granted Patent B2
US 11,925,796 · App. 17/106,559 · Granted Mar 12, 2024

Motor assembly for catheter pump

Inventors: Adam R. Tanner (Mountain View, CA); Richard L. Keenan (Livermore, CA); Doug M. Messner (Livermore, CA); Michael R. Butler (Dublin, CA)
Assignee: TC1 LLC
A61M60/419A61M60/13A61M60/216A61M60/422A61M60/515A61M60/538A61M60/148A61M60/414Y10T29/49236
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Quick Facts
Patent No.
US 11,925,796
App. No.
17/106,559
Granted
Mar 12, 2024
Kind
B2
Abstract

A catheter pump is disclosed herein. The catheter pump can include a catheter assembly that comprises a drive shaft and an impeller coupled to a distal end of the drive shaft. A driven assembly can be coupled to a proximal end of the drive shaft within a driven assembly housing. The catheter pump can also include a drive system that comprises a motor and a drive magnet coupled to an output shaft of the motor. The drive system can include a drive assembly housing having at least one magnet therein. Further, a securement device can be configured to prevent disengagement of the driven assembly housing from the drive assembly housing during operation of the pump.

Claims (45)

1. A percutaneous heart pump comprising:

a catheter body;

an impeller disposed at a distal portion of the catheter body;

a motor assembly operably coupled to the impeller through a drive cable, the motor assembly comprising:

a drive assembly;

a driven assembly coupled to the drive assembly and configured to be driven by the drive assembly, the driven assembly comprising the drive cable; and

a vibration damping component configured to absorb vibrations and reduce noise associated with operation of the motor assembly.

2. The percutaneous heart pump of claim 1 , wherein the vibration damping component comprises a stabilizing O-ring coupled to the drive assembly.

3. The percutaneous heart pump of claim 1 ,

the drive assembly comprising:

a plurality of motor windings; and

a drive magnet, the plurality of motor windings energizable to induce rotation of the drive magnet; and

the driven assembly further comprising a driven magnet coupled to the drive cable, wherein rotation of the drive magnet induces rotation of the driven magnet and the drive cable.

4. The percutaneous heart pump of claim 1 , wherein the drive assembly comprises a plurality of motor windings, and wherein the driven assembly comprises a driven magnet coupled to the drive cable, the plurality of motor windings energizable to induce rotation of the driven magnet and the drive cable.

5. The percutaneous heart pump of claim 1 , wherein the drive assembly comprises:

a motor housing;

a motor mount positioned within the motor housing;

a motor mounted to the motor mount; and

a drive magnet coupled to the motor, the motor configured to rotate the drive magnet.

6. The percutaneous heart pump of claim 5 , wherein the vibration damping component comprises a damping material applied proximate the motor.

7. The percutaneous heart pump of claim 6 , wherein the damping material comprises a visco-elastic or elastic polymer.

8. The percutaneous heart pump of claim 6 , wherein the damping material is applied between the motor mount and the motor.

9. The percutaneous heart pump of claim 6 , wherein the damping material is applied between the motor housing and the motor.

10. The percutaneous heart pump of claim 6 , wherein the damping material comprises a rib formed in the motor housing.

11. A motor assembly for a percutaneous heart pump, the motor assembly comprising:

a drive assembly; and

a driven assembly coupled to the drive assembly and configured to be driven by the drive assembly, the driven assembly including a drive cable; and

a vibration damping component configured to absorb vibrations and reduce noise associated with operation of the motor assembly.

12. The motor assembly of claim 11 , wherein the vibration damping component comprises a stabilizing O-ring coupled to the drive assembly.

13. The motor assembly of claim 11 ,

the drive assembly comprising:

a plurality of motor windings; and

a drive magnet, the plurality of motor windings energizable to induce rotation of the drive magnet; and

the driven assembly further comprising a driven magnet coupled to the drive cable, wherein rotation of the drive magnet induces rotation of the driven magnet and the drive cable.

14. The motor assembly of claim 11 , wherein the drive assembly comprises a plurality of motor windings, and wherein the driven assembly comprises a driven magnet coupled to the drive cable, the plurality of motor windings energizable to induce rotation of the driven magnet and the drive cable.

15. The motor assembly of claim 11 , wherein the drive assembly comprises:

a motor housing;

a motor mount positioned within the motor housing;

a motor mounted to the motor mount; and

a drive magnet coupled to the motor, the motor configured to rotate the drive magnet.

16. The motor assembly of claim 15 , wherein the vibration damping component comprises a damping material applied proximate the motor.

17. The motor assembly of claim 16 , wherein the damping material comprises a visco-elastic or elastic polymer.

18. The motor assembly of claim 16 , wherein the damping material is applied between the motor mount and the motor.

19. The motor assembly of claim 16 , wherein the damping material is applied between the motor housing and the motor.

20. The motor assembly of claim 16 , wherein the damping material comprises a rib formed in the motor housing.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2020
From: TANNER, ADAM R.; KEENAN, RICHARD L.; MESSNER, DOUG M.; BUTLER, MICHAEL R.
To: THORATEC CORPORATION
Reel/Frame 054490/0129 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2020
From: THORATEC CORPORATION
To: THORATEC LLC
Reel/Frame 054543/0920 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2020
From: THORATEC LLC
To: TC1 LLC
Reel/Frame 054544/0001 →
Continuity (5)
Continuation 16742129 · Jan 14, 2020
Continuation 15242024 · Aug 19, 2016
Continuation 13802468 · Mar 13, 2013
Provisional Application 61667869 · Jul 3, 2012
Related Publication 20210077680A1 · Mar 18, 2021
Cited By (15)
US 12,194,287 US 12,201,823 US 12,263,333 US 12,383,727 US 12,390,633 US 12,447,327 US 12,465,744 US 12,478,775 US 12,478,776 US 12,515,036 US 12,523,228 US 12,589,237 US 12,589,238 US 12,667,714 US 12,728,255