IP Library Granted Patent US 11,660,382
Granted Patent B2
US 11,660,382 · App. 16/472,656 · Granted May 30, 2023

Valve leak detection system

Inventor: Eric William Westenbrink (Warwickshire, GB)
Assignee: Quanta Dialysis Technologies Limited
A61M1/367A61M60/113A61M60/268A61M60/37A61M60/427A61M60/562A61M60/837A61M60/849A61M60/851A61M2205/128A61M2205/15A61M2205/273A61M2205/702
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Quick Facts
Patent No.
US 11,660,382
App. No.
16/472,656
Granted
May 30, 2023
Kind
B2
Abstract

An improved valve leak detection system. The improved valve leak detection system comprises a membrane pump defining a flow path arranged to be opened and closed by at least one valve, a measuring device, a comparator, and a signal generator. The measuring device is configured to determine a conductivity value between two points on the flow path of the membrane pump, one point arranged upstream of the at least one valve and the other point arranged downstream of the at least one valve. The measuring device measures the conductivity value when the at least one valve is closed. The comparator is configured to continuously monitor the conductivity value. The signal generator is arranged to provide an output signal when the conductivity value is indicative of a valve leak condition for a set number of measurements within a set period of time.

Claims (41)

1. A valve leak detection system comprising:

a disposable cartridge including a rigid frame covered by a membrane, the cartridge configured to be received in a dialysis machine and includes:

at least one membrane valve;

a membrane pump;

a flow path associated with the membrane pump and covered by the membrane, the flow path configured to be opened and closed by the at least one membrane valve;

a measuring device comprising at least a first electrode and a second electrode;

a processor configured to at least operate as a comparator; and

a signal generator,

wherein:

the measuring device is configured to determine a conductivity value across the at least one membrane valve between a first point and a second point on the flow path of the membrane pump when the at least one membrane valve is closed,

the first point being arranged upstream of the at least one membrane valve and the second point being arranged downstream of the at least one membrane valve,

the first electrode being positioned along the flow path at the first point and the second electrode being positioned along the flow path at the second point;

each electrode comprises a tip and is mounted in the frame of the cartridge such that the end of each respective tip is exposed to the fluid path;

the comparator is configured to continuously monitor the conductivity value, and

the signal generator is configured to provide an output signal when the conductivity value is indicative of a valve leak condition for a set number of measurements within a predetermined window.

2. The valve leak detection system of claim 1 , wherein the predetermined window is a time window.

3. The valve leak detection system of claim 2 , wherein the time window is a moving time window.

4. The valve leak detection system of claim 1 , wherein the predetermined window is a set number of valve operations.

5. The valve leak detection system of claim 4 , wherein the predetermined window is a combination of a moving time window and the set number of valve operations.

6. The valve leak detection system of claim 1 , wherein the conductivity value is determined by taking measurements of the frequency of an oscillating voltage applied across the measuring device.

7. The valve leak detection system of claim 6 , wherein the comparator further measures the difference between the minimum and maximum conductivity values measured within a single pump cycle of the dialysis system to detect one or more variations in the conductivity value.

8. The valve leak detection system of claim 7 , wherein the comparator further compares the variation in the conductivity value with a predetermined threshold value.

9. The valve leak detection system of claim 8 , wherein the output signal is provided when the variation in the conductivity value is above the threshold value.

10. The valve leak detection system of claim 7 , wherein the comparator further compares the variation in the conductivity value with a dynamic threshold value.

11. The valve leak detection system of claim 1 , wherein the output signal is stored in the processor.

12. The valve leak detection system of claim 1 , wherein:

the at least one membrane valve comprises two membrane valves;

the membrane pump is arranged to be opened and closed by the two membrane valves, a first membrane valve arranged upstream of the membrane pump and a second membrane valve arranged downstream of the membrane pump, and

the first point is arranged upstream of the first membrane valve and the second point is arranged downstream of the second membrane valve.

13. The system of claim 7 , wherein the single pump cycle comprises a priming stage, a treatment stage, and a purge stage.

14. A method of detecting a valve leak comprising the steps of:

providing a dialysis machine including:

a cartridge having a deformable membrane and a rigid frame, the cartridge and deformable membrane together defining a membrane pump, the membrane pump including a flow path covered by the membrane and arranged to be opened and closed by at least one membrane valve,

a measuring device comprising a first electrode and a second electrode, the first electrode being positioned at a first point along the flow path and the second electrode being positioned at a second point along the flow path, each electrode comprises a tip and is mounted in the frame of the cartridge such that the end of each respective tip is exposed to the fluid path,

a processor configured to operate as a comparator, and

a signal generator,

configuring the measuring device for determining a conductivity value via the electrodes between the first point and the second point on the flow path, the first point arranged upstream of the at least one membrane valve and the second point arranged downstream of the at least one membrane valve,

operating the dialysis machine through a cycle, measuring the conductivity value across the membrane valve whenever the at least one membrane valve is closed,

and

continuously monitoring the conductivity value throughout the cycle using the comparator, and using the signal generator to provide an output signal when the conductivity value is indicative of a valve leak condition for a set number of measurements within a predetermined window.

15. A method of detecting a valve leak according to claim 14 , wherein the predetermined window is defined as a time window, a moving time window, a set number of membrane valve operations or a combination of a moving time window and a set number of membrane valve operations.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2019
From: WESTENBRINK, ERIC
To: QUANTA DIALYSIS TECHNOLOGIES LIMITED
Reel/Frame 050801/0169 →
Priority Claims (1)
GB 1622119 · Dec 23, 2016 · national
Continuity (1)
Related Publication 20190358381A1 · Nov 28, 2019