IP Library Granted Patent US 7,976,271
Granted Patent B2
US 7,976,271 · App. 11/654,226 · Granted Jul 12, 2011

Stabilizing drive for contactless rotary blood pump impeller

Assignee: Heartware, Inc.
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Quick Facts
Patent No.
US 7,976,271
App. No.
11/654,226
Granted
Jul 12, 2011
Kind
B2
Abstract

A rotary blood pump includes a casing defining a pumping chamber. The pumping chamber has a blood inlet and a tangential blood outlet. One or more motor stators are provided outside of the pumping chamber. A rotatable impeller is within the pumping chamber and is adapted to cause blood entering the pumping chamber to move to the blood outlet. The impeller has one or more magnetic regions. The impeller is radially constrained in rotation by magnetic coupling to one or more motor stators and is axially constrained in rotation by one or more hydrodynamic thrust bearing surfaces on the impeller.

Claims (19)

1. A rotary blood pump comprising: a housing defining a pumping chamber with upper and lower interior surfaces and having a blood inlet and a tangential blood outlet; a rotatable impeller within said pumping chamber, said impeller adapted to increase blood pressure within said pumping chamber when rotating to cause blood to move to said blood

outlet, said impeller having a hollow interior space containing interior wall surface areas, having at least one of said interior wall surface areas having at least one bore closed at one end substantially adjacent the external perimeter of said impeller and extending into and substantially perpendicular to said at least one wall surface area.

2. The blood pump of claim 1 in which said at least one interior wall surface area comprises a pair of said bores.

3. The blood pump of claim 2 in which the longitudinal axis of each of said bores extends parallel to the axis of rotation of said impeller.

4. The blood pump of claim 2 in which said bores are aligned along a diameter of said impeller, said bores being of unequal depth, the relative depth of each of said bores being greater for bores nearer the circumferential perimeter of said impeller.

5. The blood pump of claim 4 in which the depth of the radially innermost bore of each of said bores is approximately 0.10 inches.

6. The blood pump of claim 5 in which the depth of the radially outermost bore of each of said bores is approximately 0.25 inches.

7. The blood pump of claim 4 in which the bores have approximately equal diameters.

8. The blood pump of claim 2 in which the longitudinal axis of each of said bores extends perpendicular to the axis of rotation of said impeller.

9. The blood pump of claim 1 in which said at least one interior wall surface area is substantially flat and lies in a plane substantially parallel to a bottom surface of said impeller.

10. The blood pump of claim 9 in which said at least one interior wall surface area projects substantially radially with respect to the rotational axis of and within the hollow interior of said impeller.

11. The blood pump of claim 1 in which the longitudinal axis of said at least one bore extends substantially parallel to the rotational axis of said impeller.

12. The blood pump of claim 1 in which said impeller comprises an alloy of approximately 77.6% platinum by weight and 22.4% cobalt by weight.

13. The blood pump of claim 1 in which said impeller comprises titanium.

14. The blood pump of claim 1 having at least one exterior hollow raised body, said hollow raised body having an interior pocket opening toward the bottom of said impeller, said interior pocket adapted to receive a permanent drive magnet to produce magnetic flux to rotate said impeller.

15. The blood pump of claim 14 in which said impeller comprises a plurality of said exterior hollow raised bodies, one of said interior pockets being defined beneath each of said raised bodies, each of said pockets having a boundary portion defined by said at least one of said interior wall surface areas.

16. The blood pump of claim 15 comprising four of said exterior hollow raised bodies.

17. The blood pump of claim 16 in which said interior pockets are positioned about 90° apart around the interior periphery of the impeller.

18. The blood pump of claim 1 in which said at least one interior wall surface area is axially extending relative to said impeller.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2024
From: HEARTWARE, INC.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 069741/0279 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2007
From: LAROSE, JEFFREY A.; SHAMBAUGH, CHARLES R.
To: HEARTWARE, INC.
Reel/Frame 019719/0430 →
Continuity (5)
Provisional Application 60758793 · Jan 13, 2006
Provisional Application 60758892 · Jan 13, 2006
Provisional Application 60758795 · Jan 13, 2006
Provisional Application 60758794 · Jan 13, 2006
Related Publication 20080021394A1 · Jan 24, 2008