IP Library Granted Patent US 10,286,203
Granted Patent B2
US 10,286,203 · App. 14/912,202 · Granted May 14, 2019

Needlefree valve device

Inventors: Giancarlo Gagliardoni (Estado Miranda, VE); Jan Willem Marinus Mijers (Haarlem, NL)
Assignee: Cedic S.R. L.
A61M39/26A61M39/1011A61M39/22A61M39/045A61M2039/1083A61M2039/1088A61M2039/267
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Quick Facts
Patent No.
US 10,286,203
App. No.
14/912,202
Granted
May 14, 2019
Kind
B2
Abstract

Needle free valve device ( 1 ) for controlling the flow of fluid in a pathway, the device ( 1 ) being operable in a closed and in an open configuration and comprising a first component ( 3 ), a second component ( 9 ), a locking means configured to selectively engage the first component ( 3 ) with the second component ( 9 ) in the open configuration when the first component ( 3 ) is displaced in an opening direction ( 23 ) along a valve axis toward the second component ( 9 ) or in the closed configuration when the first component ( 3 ) is displaced against the opening direction ( 23 ) away from the second component ( 9 ), and a sealing component ( 15 ) having a resilient portion ( 19 ), the resilient portion ( 19 ) comprising at least one slit ( 26 ) and engaging the second component ( 9 ) to provide a seal in the closed configuration, wherein the resilient portion ( 19 ) is adapted to move, buckle or flex to enable fluid flow through the at least one slit ( 26 ) upon application of a mechanical force of the second component ( 9 ) on the resilient portion ( 19 ) against the opening direction ( 23 ) when assuming the open configuration, and wherein the resilient portion ( 19 ) is adapted to return the valve device ( 1 ) to the closed configuration when the mechanical force is no longer applied.

Claims (16)

1. A needlefree valve device for controlling the flow of fluid in a pathway, the device having closed and open configurations and comprising:

a first flow-through component;

a second flow-through component;

a sealing component having a resilient portion, the resilient portion comprising at least one slit;

a locking member configured to selectively engage the first flow-through component with the second flow-through component in (a) the open configuration after the first flow-through component is displaced in an opening direction along a valve axis toward the second flow-through component for providing contact between a surface in a lower portion of the second flow-through component with the lower outer surface of the resilient portion of the sealing component; and (b) the closed configuration wherein the sealing component engages the second flow-through component to provide a seal after the first flow-through component is displaced against the opening direction away from the second flow-through component; and

wherein the resilient portion is adapted to move, buckle or flex to enable fluid flow through the at least one slit upon application of a mechanical force of the second flow-through component on the resilient portion against the opening direction when assuming the open configuration, and wherein the resilient portion is adapted to return the valve device to the closed configuration when the mechanical force is no longer applied.

2. The needlefree valve device according to claim 1 wherein the first flow-through component, the second flow-through component and the sealing component are substantially axially aligned and the locking member is configured such that the first flow-through component is rotatable around the valve axis by a predetermined angle.

3. The needlefree valve device according to claim 1 wherein the locking member comprises a latch arranged on the second flow-through component adapted to engage with at least one corresponding recess in the first flow-through component.

4. The needlefree valve device according to claim 3 wherein the recess comprises a rectangular shape and a locking arm extending in a circumferential direction such that the latch of the second flow-through component is adapted to engage with the locking arm in the open and closed configurations.

5. The needlefree valve device according to claim 4 wherein the locking arm includes a spring element at its free end which functions as a stop for the latch in an axial direction.

6. The needlefree valve device according to claim 1 wherein the sealing component further comprises at least one resilient retention element arranged at its outer surface adapted to axially slide in at least one corresponding axial recess located on an inner surface of the second flow-through component.

7. The needlefree valve device according to claim 6 wherein the sealing component is made of silicone.

8. The needlefree valve device according to claim 1 wherein the resilient portion comprises a hemispherical surface having one slit or at least two slits each extending from a central point on the hemispherical surface.

9. The needlefree valve device according to claim 1 wherein the first or second flow-through components comprise a medical connecting portion selected from the group comprising a male Luer lock entry, male Luer lock exit, female Luer lock entry, female Luer lock exit, a catheter exit, and a tube mating port.

10. The needlefree valve device according to claim 1 wherein the sealing component comprises a flange portion connected to the first flow-through component in a press fit.

11. The needlefree valve device according claim 3 wherein the latch comprises a grip portion extending through the recess beyond the outer surface of the first flow-through component such that pressing the grip portion releases the engagement of the latch with the recess.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2016
From: GAGLIARDONI, GIANCARLO; MIJERS, JAN WILLEM MARINUS
To: CEDIC S.R.L.
Reel/Frame 037740/0027 →
Continuity (1)
Related Publication 20160199634A1 · Jul 14, 2016
Cited By (2)
US 12,208,230 US 12,678,611