IP Library › Granted Patent US 9,220,883
Granted Patent B2
US 9,220,883 · App. 13/823,500 · Granted Dec 29, 2015

Medical connector

Inventors: Giancarlo Gagliardoni (Estado Miranda, VE); Giuseppe Antonio Nichetti (Pandino, IT); Matteo Ageno (Vimodrone, IT)
Assignee: CEDIC S.R.L.
A61M39/1011A61M2039/1027A61M2039/1033A61M2039/1044A61M2039/1094Y10T29/49826
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Quick Facts
Patent No.
US 9,220,883
App. No.
13/823,500
Granted
Dec 29, 2015
Kind
B2
Abstract

The present invention provides a connector ( 1, 2 ) for use in fluid driving applications such as enteral feeding sets, catheters, and other medical devices, comprising a body ( 3 ) having a cylindrical coupling portion ( 7 ) with a substantially circular coupling surface ( 8 ) and having an outer surface ( 9 ) extending from the coupling surface ( 8 ) to form an internal cavity ( 11 ), a tube mating portion ( 13 ) extending outward from the body ( 3 ) for connecting to a tube, at least one thread sector ( 15 ) provided at the coupling portion ( 7 ), and at least one locking means ( 17 ) on the coupling portion ( 7 ), and at least one locking means ( 17 ) on the coupling surface ( 8 ).

Claims (38)

1. A connector ( 1 , 2 ) for use in fluid driving applications such as enteral feeding sets, catheters, and other medical devices, comprising:

a body ( 3 ) having a cylindrical coupling portion ( 7 ) with a substantially circular coupling surface ( 8 ) and an outer portion ( 9 ) extending from the coupling surface ( 8 ) to form an internal cavity ( 11 );

a tube mating portion ( 13 ) extending outward from the body ( 3 ) for connecting to a tube; and

at least one screw thread sector ( 15 ) provided at the coupling portion ( 7 ) the screw thread sector having a screw axis ( 21 ),

wherein at least one locking means ( 17 ) is provided on the coupling surface ( 8 ), the internal cavity ( 11 ) comprising a cylindrical shape is adapted to allow fluid flow therethrough, the coupling surface ( 8 ) is adapted to provide a fluid-tight connection in the connected position, and the internal cavity ( 11 ) includes a plurality of barriers integral with and extending from the inner surface inside the internal cavity ( 11 ), thereby preventing a working connection with a noncompatible connector.

2. The connector ( 1 , 2 ) of claim 1 wherein the tube mating portion ( 13 ) has an axis which is substantially orthogonal to the screw axis ( 21 ) of the cylindrical coupling portion ( 7 ).

3. The connector ( 1 , 2 ) of claim 1 wherein the axis ( 19 ) of the tube mating portion ( 13 ) coincides with the screw axis ( 21 ) of the cylindrical coupling portion ( 7 ).

4. The connector ( 1 , 2 ) of claim 1 being made of rigid material having a modulus of elasticity in flexure or in tension greater than 35 000kg/cm 2 (3433MPa) or of semi-rigid material having a modulus of elasticity in flexure or in tension between 700kg/cm 2 (69MPa) and 35 000kg/cm 2 (3433MPa).

5. The connector ( 1 , 2 ) of claim 4 wherein the material is injection molded plastic material.

6. The connector ( 1 , 2 ) of claim 1 comprising at least one wing element ( 20 ) extending from the body ( 3 ).

7. The connector ( 1 ) of claim 1 wherein the coupling portion ( 7 ) comprises a cylindrical extension ( 10 ) extending from the coupling surface ( 8 ) in a direction away from the body ( 3 ) and having an outer diameter which is smaller than the inner diameter of the coupling surface ( 8 ), wherein the at least one thread sector ( 15 ) is provided on the outer surface of the cylindrical extension ( 10 ).

8. The connector ( 1 , 2 ) of claim 7 wherein the upper surface of the cylindrical extension ( 10 ) comprises a circular protrusion and/or a sealing face.

9. The connector ( 2 ) of claim 1 wherein the at least one thread sector ( 15 ) is provided on the inner surface of the coupling portion ( 7 ) between the coupling surface ( 8 ) and a stop surface ( 16 ) positioned inside the internal cavity ( 11 ).

10. The connector ( 1 , 2 ) of claim 9 wherein the stop surface ( 16 ) or the upper surface of the cylindrical extension ( 10 ) comprises a circular protrusion and/or a sealing face.

11. A connector system comprising:

a first connector ( 1 ) with a body ( 3 ) having a cylindrical coupling portion ( 7 ) with a substantially circular coupling surface ( 8 ) and an outer portion ( 9 ) extending from the coupling surface ( 8 ) to form an internal cavity ( 11 );

a tube mating portion ( 13 ) extending outward from the body ( 3 ) for connecting to a tube; and

at least one thread sector ( 15 ) provided at the coupling portion ( 7 ), the coupling portion ( 7 ) further including a cylindrical extension ( 10 ) extending from the coupling surface ( 8 ) in a direction away from the body ( 3 ) and having an outer diameter which is smaller than the inner diameter of the coupling surface ( 8 ), wherein the at least one thread sector ( 15 ) is provided on the outer surface of the cylindrical extension ( 10 ); and

a second connector ( 2 ) with a body ( 3 ) having a cylindrical coupling portion ( 7 ) with a substantially circular coupling surface ( 8 ) and an outer portion ( 9 ) extending from the coupling surface ( 8 ) to form an internal cavity ( 11 );

a tube mating portion ( 13 ) extending outward from the body ( 3 ) for connecting to a tube; and

at least one thread sector ( 15 ) provided on the inner surface of the coupling portion ( 7 ) between the coupling surface ( 8 ) and a stop surface ( 16 ) positioned inside the internal cavity ( 11 );

wherein at least one locking means ( 17 ) is provided on the coupling surface ( 8 ), the internal cavity ( 11 ) comprising a cylindrical shape is adapted to allow fluid flow therethrough,

wherein the first and second connectors ( 1 , 2 ) are adapted to be mutually engaged with each other so as to form a mechanically coupled device with the axes ( 19 ) of both tube mating portions ( 13 ) coinciding or being substantially parallel, wherein:

(a) the coupling surfaces ( 8 ) of each connector ( 1 , 2 ) are in contact with each other to provide a fluid-tight connection,

(b) the at least one thread sector ( 15 ) on the outer surface of the cylindrical extension ( 10 ) of the first connector ( 1 ) is in engagement with the at least one thread sector ( 15 ) inside the coupling portion ( 7 ) of the second connector ( 2 ), and

(c) the locking means ( 17 ) on the coupling surface ( 8 ) of the first connector ( 1 ) is in engagement with the locking means ( 17 ) on the coupling surface ( 8 ) of the second connector ( 2 ).

12. The connector system of claim 11 wherein the at least one locking means ( 17 ) on the coupling surface ( 8 ) of the first connector ( 1 ) is formed as an axial recess and the at least one locking means ( 17 ) on the coupling surface ( 8 ) of the second connector ( 2 ) is formed as an axial protrusion.

13. The connector system of claim 11 wherein the at least one locking means ( 17 ) on the coupling surface ( 8 ) of the second connector ( 2 ) is formed as an axial recess and the at least one locking means ( 17 ) on the coupling surface ( 8 ) of the first connector ( 1 ) is formed as an axial protrusion.

14. The connector system of claim 11 wherein a sealing gasket ( 25 ) such as a rubber ring is placed between the coupling surfaces ( 8 ) of the first and the second connector ( 1 , 2 ).

15. A method of coupling two connectors ( 1 , 2 ) for use in fluid driving applications such as enteral feeding sets, catheters, and other medical devices, comprising:

providing a first connector ( 1 ) with a body ( 3 ) having a cylindrical coupling portion ( 7 ) with a substantially circular coupling surface ( 8 ) and an outer portion ( 9 ) extending from the coupling surface ( 8 ) to form an internal cavity ( 11 );

a tube mating portion ( 13 ) extending outward from the body ( 3 ) for connecting to a tube; and

at least one thread sector ( 15 ) provided at the coupling portion ( 7 ),the coupling portion ( 7 ) further including a cylindrical extension ( 10 ) extending from the coupling surface ( 8 ) in a direction away from the body ( 3 ) and having an outer diameter which is smaller than the inner diameter of the coupling surface ( 8 ), wherein the at least one thread sector ( 15 ) is provided on the outer surface of the cylindrical extension ( 10 ); and

providing a second connector ( 2 ) with a body ( 3 ) having a cylindrical coupling portion ( 7 ) with a substantially circular coupling surface ( 8 ) and an outer portion ( 9 ) extending from the coupling surface ( 8 ) to form an internal cavity ( 11 );

a tube mating portion ( 13 ) extending outward from the body ( 3 ) for connecting to a tube; and

at least one thread sector ( 15 ) provided on the inner surface of the coupling portion ( 7 ) between the coupling surface ( 8 ) and a stop surface ( 16 ) positioned inside the internal cavity ( 11 );

wherein at least one locking means ( 17 ) is provided on the coupling surface ( 8 ), the internal cavity ( 11 ) comprising a cylindrical shape is adapted to allow fluid flow therethrough,

arranging the coupling surfaces ( 8 ) of the two connectors ( 1 , 2 ) on top of each other with the axes ( 21 ) of each cylindrical coupling portion ( 7 ) aligned, and by rotating the two connectors ( 1 , 2 ) in the plane of their coupling surfaces ( 8 ) by a predetermined angle so that the at least one thread sector ( 15 ) on the outer surface of the cylindrical extension ( 10 ) of the first connector ( 1 ) engages with the at least one thread sector ( 15 ) inside the coupling portion ( 7 ) of the second connector ( 2 ), and the locking means ( 17 ) in the coupling surface ( 8 ) of the first connector ( 1 ) engages with the locking means ( 17 ) in the coupling surface ( 8 ) of the second connector ( 2 ), wherein the coupling surface ( 8 ) of the first connector ( 1 ) and the coupling surface ( 8 ) of the second connector ( 2 ) are in contact with each other to achieve a fluid-tight connection.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE EXECUTION DATE OF GIANCARLO GAGLIARDONI SHOULD READ 03/14/2013 PREVIOUSLY RECORDED ON REEL 037073 FRAME 0545. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 23, 2015
From: GAGLIARDONI, GIANCARLO; NICHETTI, GIUSEPPE ANTONIO; AGENO, MATTEO
To: CEDIC S.R.L.
Reel/Frame 037184/0512 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2015
From: GAGLIARDONI, GIANCARLO; NICHETTI, GIUSEPPE ANTONIO; AGENO, MATTEO
To: CEDIC S.R.L.
Reel/Frame 037073/0545 →
Priority Claims (1)
WO PCT/EP2010/063500 · Sep 14, 2010 · international
Continuity (1)
Related Publication 20130184688A1 · Jul 18, 2013