IP Library Granted Patent US 9,770,542
Granted Patent B2
US 9,770,542 · App. 14/782,107 · Granted Sep 26, 2017

Device having a flow channel, a nonreturn valve, and a flow detector that detects a position of the nonreturn valve

Inventor: Armin Felber (Lucerne, CH)
Assignee: MEDELA HOLDING AG
A61M1/06A61M39/24F16K15/031F16K37/0058G01F22/00A61M2039/244A61M2039/246A61M2205/3334F16K15/144F16K37/0075F16K37/0091
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Quick Facts
Patent No.
US 9,770,542
App. No.
14/782,107
Granted
Sep 26, 2017
Kind
B2
Abstract

A device having a flow channel for a fluid has a nonreturn valve arranged in the flow channel, the nonreturn valve allowing the fluid to flow through the flow channel in a first direction and preventing it from flowing through the flow channel in a direction counter to the first direction. The device furthermore has a flow detector for detecting the flow of the fluid through the flow channel, wherein the flow detector detects a change in the nonreturn valve. This detected change serves as an indicator for the flow of the fluid. The device enables simplified flow detection, in that a nonreturn valve that is present is used as an indicator.

Claims (16)

1. A device having a flow channel for a fluid, wherein a nonreturn valve is arranged in the flow channel, said nonreturn valve allowing the fluid to flow through the flow channel in a first direction and preventing it from flowing through the flow channel in a direction counter to the first direction, wherein the device furthermore has a flow detector for detecting the flow of the fluid through the flow channel, wherein the flow detector detects a change in the nonreturn valve and wherein this detected change serves as an indicator for the flow of the fluid, wherein the nonreturn valve has a valve flap, wherein the flow detector has an optical or mechanical detector for detecting a deflection of the valve flap, wherein the valve flap opens and closes a valve seat of the nonreturn valve, wherein the valve flap is fastened to the valve seat in a first peripheral region and is movable relative to the valve seat in a second peripheral region located opposite the first peripheral region, wherein the nonreturn valve is provided with a lug arranged on the valve flap, wherein a position of the lug is detected by the flow detector.

2. The device according to claim 1 , wherein the flow detector is a flow meter for determining the flow and wherein the detected change serves as a measure of the flow.

3. The device according to claim 1 , wherein the optical detector comprises a light emitter and a light detector, wherein the nonreturn valve is arranged, in the changed and/or in the unchanged state, in a light path between the light emitter and the light detector.

4. The device according to claim 3 , wherein the lug is arranged in the light path.

5. The device according to claim 1 , wherein the lug is arranged in the second peripheral region.

6. The device according to claim 1 , wherein the device is a breast shield of a breastpump unit for expressing human breast milk, wherein the breast shield is designed to be placed on a human breast.

7. The device according to claim 1 , wherein the device is an adapter for connecting to a fluid collection container.

8. The device according to claim 1 , wherein the device is part of a drainage device.

9. The device of claim 8 , wherein the drainage device is part of a fluid collection container.

10. A breastpump system comprising:

a device according to claim 1 connectable to at least one of a breastshield and a fluid channel between the breastshield and a collection container of the system, the system comprising a display configured to represent information about the amount of milk flowing in the system.

11. The breastpump system as claimed in claim 10 , the device determining the deflection of the nonreturn valve, the display connectable, directly or indirectly, to the breastpump system.

12. A method for detecting flow of fluid through a flow channel, wherein a nonreturn valve is arranged in the flow channel, wherein the nonreturn valve allows fluid to flow through the flow channel in a first direction and prevents fluid from flowing through the flow channel in a direction counter to the first direction, wherein the nonreturn valve has a valve flap, wherein the valve flap opens and closes a valve seat of the nonreturn valve, wherein the valve flap is fastened to the valve seat in a first peripheral region and is movable relative to the valve seat in a second peripheral region located opposite the first peripheral region and wherein the nonreturn valve is provided with a lug arranged on the valve flap, the method comprising the step of:

detecting, via a flow detector, a change in at least one of position or shape of a nonreturn valve arranged when a fluid flows through the nonreturn valve, the flow detector having an optical or mechanical detector detecting a deflection of the valve flap, wherein the optical or mechanical detector detects a position of the lug.

13. The method of claim 12 , detecting the change in at least one of position or shape of the nonreturn valve, detecting a degree of deflection of the nonreturn valve, and based on the detected degree of deflection of the nonreturn valve, calculating a volume of fluid that has flowed through the nonreturn valve.

14. The method according to claim 13 , further comprising repeatedly detecting the degree of deflection of the nonreturn valve for a plurality of deflections of the nonreturn valve over a predetermined period of time, and adding the calculated volumes of fluid that have flowed through the nonreturn valve to determine a volume of fluid that has flowed through the nonreturn valve over the predetermined period of time.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2026
From: MEDELA HOLDING AG
To: MEDELA AG
Reel/Frame 075045/0230 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2015
From: FELBER, ARMIN
To: MEDELA HOLDING AG
Reel/Frame 037003/0725 →
Priority Claims (1)
CH 0698/13 · Apr 2, 2013 · national
Continuity (1)
Related Publication 20160038662A1 · Feb 11, 2016