IP Library › Granted Patent US 12,264,426
Granted Patent B2
US 12,264,426 · App. 18/086,266 · Granted Apr 1, 2025

Laundry washing machine and low profile conductivity sensor therefor

Inventor: Bryan T. Snook (Louisville, KY)
Assignee: MIDEA GROUP CO., LTD.
D06F34/22D06F33/32D06F34/08D06F37/267G01F23/24D06F2103/06D06F2103/18D06F2103/20D06F2105/02
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Quick Facts
Patent No.
US 12,264,426
App. No.
18/086,266
Granted
Apr 1, 2025
Kind
B2
Abstract

A low profile conductivity sensor for a laundry washing machine includes a pair of electrodes that extend substantially parallel to a wall of a wash tub of the laundry washing machine to which the low profile conductivity sensor is mounted and that have respective sensing surfaces that are substantially flush with a housing surface of the sensor housing, and in some instances, with a wall of the laundry washing machine, to reduce the collection of lint and/or hair by the low profile conductivity sensor.

Claims (27)

1. A laundry washing machine, comprising:

a housing;

a wash tub disposed within the housing and including a wall facing an interior of the wash tub; and

a low profile conductivity sensor coupled to the wash tub to sense conductivity of a fluid disposed in the interior of the wash tub, the low profile conductivity sensor including:

a sensor housing coupled to the wall of the wash tub and having a housing surface facing the interior of the wash tub and extending substantially parallel to the wall of the wash tub; and

first and second electrodes disposed in the sensor housing and extending substantially parallel to the wall of the wash tub and to one another, the first and second electrodes having respective sensing surfaces that are substantially flush with the housing surface of the sensor housing.

2. The laundry washing machine of claim 1 , wherein the housing surface of the sensor housing is substantially flush with the wall of the wash tub.

3. The laundry washing machine of claim 1 , wherein the first electrode has a length extending substantially parallel to the wall of the wash tub and defining a largest dimension thereof.

4. The laundry washing machine of claim 3 , wherein the sensing surface of the first electrode has an elevational offset relative to the housing surface that is within about 20% of the length of the first electrode.

5. The laundry washing machine of claim 4 , wherein the sensing surface of the first electrode has an elevational offset relative to the housing surface that is within about 10% of the length of the first electrode.

6. The laundry washing machine of claim 5 , wherein the sensing surface of the first electrode is substantially coplanar with the housing surface.

7. The laundry washing machine of claim 3 , wherein the sensing surface of the first electrode has an elevational offset relative to the wall of the wash tub that is within about 20% of the length of the first electrode.

8. The laundry washing machine of claim 7 , wherein the sensing surface of the first electrode has an elevational offset relative to the wall of the wash tub that is within about 10% of the length of the first electrode.

9. The laundry washing machine of claim 1 , wherein the sensing surface of the first electrode is substantially planar.

10. The laundry washing machine of claim 1 , wherein the sensing surface of the first electrode is curved.

11. The laundry washing machine of claim 1 , wherein the wall of the wash tub is a bottom wall of the wash tub.

12. The laundry washing machine of claim 1 , further comprising a controller coupled to the low profile conductivity sensor.

13. The laundry washing machine of claim 12 , wherein the controller is configured to determine a fluid level in the wash tub using the low profile conductivity sensor and control a valve based upon the determined fluid level.

14. The laundry washing machine of claim 12 , wherein the controller is configured to determine a fluid conductivity in the wash tub using the low profile conductivity sensor and determine a load type based upon the determined fluid conductivity.

15. The laundry washing machine of claim 12 , wherein the controller is configured to determine a fluid conductivity in the wash tub using the low profile conductivity sensor and control operation of a wash cycle based upon the determined fluid conductivity.

16. The laundry washing machine of claim 1 , wherein the wall includes a mounting aperture and the sensor housing of the low profile conductivity sensor is mounted to the wall through the mounting aperture.

17. The laundry washing machine of claim 16 , further comprising a gasket disposed between the sensor housing and the wall and sealing the mounting aperture.

18. The laundry washing machine of claim 1 , wherein the low profile conductivity sensor further includes a control circuit disposed in the sensor housing to condition a conductivity signal communicated across the first and second electrodes.

19. The laundry washing machine of claim 1 , wherein the low profile conductivity sensor further includes a fastener threadably engaged with the sensor housing to secure the sensor housing to the wall of the wash tub.

20. A low profile conductivity sensor for a laundry washing machine, the low profile conductivity sensor including:

a sensor housing configured for mounting on a wall within the laundry washing machine and having a housing surface extending substantially parallel to the wall; and

first and second electrodes disposed in the sensor housing and extending substantially parallel to the wall of the wash tub and to one another, the first and second electrodes having respective sensing surfaces that are substantially flush with the housing surface of the sensor housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2022
From: SNOOK, BRYAN T.
To: MIDEA GROUP CO., LTD.
Reel/Frame 062187/0465 →
Continuity (1)
Related Publication 20240209556A1 · Jun 27, 2024
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