IP Library › Granted Patent US 7,766,394
Granted Patent B2
US 7,766,394 · App. 11/589,694 · Granted Aug 3, 2010

Breakaway connectors and systems

Assignee: Medtronic, Inc.
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Quick Facts
Patent No.
US 7,766,394
App. No.
11/589,694
Granted
Aug 3, 2010
Kind
B2
Abstract

A breakaway connector for use with a medical (e.g., catheter) or other fluid system. The connector may include two couplers that engage one another via a substantially frictionless retention device. In one embodiment, the retention device includes a biased cylindrical roller attached to one coupler that contacts an outer surface of the other coupler. The outer surface may include a grooved surface to receive the roller when the couplers are fully attached.

Claims (51)

1. A connector for coupling a first tube to a second tube, the connector comprising:

a first coupler comprising an engagement portion;

a second coupler comprising a tubular body defining a bore to receive the engagement portion of the first coupler; and

a roller assembly associated with the second coupler, the roller assembly comprising a cylindrical roller that, in a first configuration, is offset from an axis of the second coupler, wherein the cylindrical roller is configured to engage an outer surface of the engagement portion in rolling contact as the engagement portion translates within the bore of the tubular body, and wherein the roller assembly further comprises: an axle about which the cylindrical roller rotates; and a spring attached to opposite ends of the axle and extending circumferentially about the tubular body.

2. The connector of claim 1 , wherein the outer surface of the engagement portion comprises an engagement surface defined by a first diameter, and a grooved surface defined by a second diameter that is less than the first diameter, the grooved surface positioned along the engagement surface so as to receive the cylindrical roller when the first coupler is fully engaged with the second coupler.

3. The connector of claim 2 , wherein the outer surface of the engagement portion further comprises a ramped surface extending between the grooved surface and the engagement surface.

4. The connector of claim 1 , wherein the roller assembly is radially-biased towards the axis of the second coupler.

5. The connector of claim 1 , wherein the roller assembly is configured to: selectively interlock the first coupler with the second coupler; and release the first coupler from the second coupler when a predetermined traction force is applied between the first and second couplers.

6. The connector of claim 1 , wherein the cylindrical roller, when in the first configuration, is transverse to the axis of the second coupler.

7. A connector for coupling a first tube to a second tube, the connector comprising:

a first coupler comprising an engagement portion;

a second coupler comprising a tubular body defining a bore to receive the engagement portion of the first coupler, wherein the second coupler further comprises a hollow needle defining a passageway in fluid communication with the second tube, the hollow needle extending into the bore of the tubular body; and

a roller assembly associated with the second coupler, the roller assembly comprising a cylindrical roller that, in a first configuration, is offset from an axis of the second coupler, wherein the cylindrical roller is configured to engage an outer surface of the engagement portion in rolling contact as the engagement portion translates within the bore of the tubular body.

8. The connector of claim 7 , wherein the engagement portion of the first coupler comprises a tubular wall surrounding a needle-penetrable septum.

9. A connector for coupling a first tube to a second tube, the connector comprising:

a first coupler comprising an engagement portion;

a second coupler comprising a tubular body defining a bore to receive the engagement portion of the first coupler; and

a roller assembly associated with the second coupler, the roller assembly comprising a cylindrical roller that, in a first configuration, is offset from an axis of the second coupler, wherein the cylindrical roller is configured to engage an outer surface of the engagement portion in rolling contact as the engagement portion translates within the bore of the tubular body, and wherein the cylindrical roller comprises a contact surface that forms a secant extending through the bore of the tubular body when the cylindrical roller is in the first configuration.

10. A medical tubing connector comprising:

a first coupler attached to a first tube, the first coupler comprising an attachment member having an engagement portion;

a second coupler attached to a second tube, the second coupler comprising a tubular body defining a bore to receive the engagement portion of the attachment member; and

a biased retention device attached to the second coupler and movable from a first configuration, wherein a contact surface formed by the retention device forms a secant extending through the bore of the second coupler, to a second configuration, wherein the contact surface of the retention device is located at or outside of the bore, and wherein the retention device comprises:

an axle comprising first and second ends;

a tension member extending circumferentially about the tubular body and attached to the first and second ends of the axle; and

a cylindrical roller rotatable about the axle.

11. The connector of claim 10 , wherein the engagement portion of the attachment member comprises an outer surface, the outer surface comprising an engagement surface and a grooved surface, the grooved surface positioned to receive the retention device when the first coupler is fully engaged with the second coupler.

12. The connector of claim 10 , wherein the retention device is configured to: selectively interlock the first coupler with the second coupler; and release the first coupler from the second coupler when a predetermined traction force is applied between the first and second couplers.

13. A medical tubing connector comprising:

a first coupler attached to a first tube, the first coupler comprising an attachment member having an engagement portion, wherein the first coupler further comprises:

a housing threadably engagable with the attachment member;

a seal located within a passageway of the attachment member, the seal operable to receive an end of the first tube; and

a collet located within the passageway of the attachment member, the collet defining a collet passageway through which the first tube may pass;

a needle-penetrable septum positioned within the passageway of the attachment member;

a second coupler attached to a second tube, the second coupler comprising a tubular body defining a bore to receive the engagement portion of the attachment member; and

a biased retention device attached to the second coupler and movable from a first configuration, wherein a contact surface formed by the retention device forms a secant extending through the bore of the second coupler, to a second configuration, wherein the contact surface of the retention device is located at or outside of the bore.

14. The connector of claim 13 , wherein the collet comprises one or more movable legs configured to mechanically engage the first tube when the housing is fully engaged with the attachment member.

15. The connector of claim 13 , wherein the collet is configured to compress the seal against an inner surface of the attachment member when the housing is fully engaged with the attachment member.

16. The connector of claim 13 , wherein the seal comprises:

a body configured to surround an end of the first tube, the body defining a lumen; and

a rigid tubular member positioned within the lumen of the body.

17. A method for connecting a first tube to a second tube, the method comprising:

positioning a first coupler attached to the first tube proximate a second coupler attached to the second tube such that a bore of the second coupler is aligned with an engagement portion of the first coupler;

sliding the engagement portion of the first coupler into the bore of the second coupler, wherein a biased cylindrical roller associated with the second coupler contacts an engagement surface of the engagement portion;

engaging the cylindrical roller with a grooved surface formed in an outer surface of the engagement portion when the engagement portion is fully inserted into the bore of the second coupler; and

piercing a septum located within the first coupler with a needle associated with the second coupler.

18. A method for connecting a first tube to a second tube, the method comprising:

positioning a first coupler attached to the first tube proximate a second coupler attached to the second tube such that a bore of the second coupler is aligned with an engagement portion of the first coupler;

sliding the engagement portion of the first coupler into the bore of the second coupler, wherein a biased cylindrical roller associated with the second coupler contacts an engagement surface of the engagement portion;

engaging the cylindrical roller with a grooved surface formed in an outer surface of the engagement portion when the engagement portion is fully inserted into the bore of the second coupler; and

separating the first coupler from the second coupler by applying only a traction force between the first tube and the second tube.

19. The method of claim 18 , wherein separating the first coupler from the second coupler comprises rolling the cylindrical roller along a ramped surface extending from the grooved surface to the engagement surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2007
From: SAGE, SHAHN S.; ADAMS, MATTHEW H.; JOHNSON, BENJAMIN A.; SKAKOON, JAMES GRANT
To: MEDTRONIC, INC.
Reel/Frame 018908/0208 →
Continuity (1)
Related Publication 20080100061A1 · May 1, 2008