Replacement filter cartridge
US-9067154-B1 · Jun 30, 2015 · US
US10071326B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10071326-B2 |
| Application number | US-201514851356-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 11, 2015 |
| Priority date | Sep 11, 2015 |
| Publication date | Sep 11, 2018 |
| Grant date | Sep 11, 2018 |
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Described are filter cartridges comprising: a cartridge body and a filter media; a stem extending from the cartridge body, the stem having an inlet opening, an outlet opening, and a stem face that comprises a first valve driving surface and a second valve driving surface; and at least one lug attached to either the filter body or the stem having a leading engagement edge. The filter cartridges are suitable for translational insertion and rotational engagement of a manifold, wherein upon translation insertion, a valve engagement member of the filter cartridge engages a portion of a valve body of a manifold valve; during a first stage rotation, one or more retaining members of the filter cartridge engage a manifold cam of a manifold; and during a second stage rotation, the valve engagement member imparts rotational movement to the valve body. Systems and methods incorporating the filter cartridges are disclosed.
Opening claim text (preview).
What is claimed: 1. A filter cartridge comprising: a cartridge body having a filter media disposed therein and a longitudinal axis down the center of the filter cartridge; a stem extending longitudinally from the cartridge body, the stem having an inlet opening an outlet opening, and a stem face on a distal end; the stem face comprising an aperture having a valve engagement member comprising a first valve driving surface and a second valve driving surface located in the aperture, the first and the second valve driving surfaces have a depth extending along the longitudinal axis, and the aperture extending through the longitudinal axis within the depth of the first and second valve driving surfaces; at least one retaining member protruding outwardly from the stem having a leading engagement edge, and a lower camming surface; and wherein the first valve driving surface faces a first rotational direction about the longitudinal axis and the second valve driving surface faces a second rotational direction about the longitudinal axis; wherein the first rotational direction is clockwise about the longitudinal axis when viewing the stem face and the second rotational direction is counter-clockwise when viewing the stem face; and wherein the first valve driving surface and the second valve driving surface both extend longitudinally and are separated by a first timing radial arc along a perimeter of the stem. 2. The filter cartridge of claim 1 , wherein the leading engagement edge engages with a manifold cam and sweeps a first rotational radial arc of greater than zero and no greater than about 180 degrees between initial engagement and full engagement with the manifold cam. 3. The filter cartridge of claim 1 , wherein the first valve driving surface and the second valve driving surface are opposing. 4. The filter cartridge of claim 3 , wherein the first timing radial arc is in the range of about 10 degrees to about 110 degrees. 5. The filter cartridge of claim 1 , wherein the first valve driving surface and the second valve driving surface are complementary. 6. The filter cartridge of claim 5 , wherein the first timing radial arc is in the range of about 70 degrees to about 170 degrees. 7. The filter cartridge of claim 1 , wherein the first valve driving surface and the second valve driving surface are not parallel to each other. 8. The filter cartridge of claim 5 , wherein the first valve driving surface and the second valve driving surface are adjacent. 9. The filter cartridge of claim 1 , wherein a second timing radial arc between the leading engagement edge and the first valve driving surface is in the range of about 0 degrees to about 180 degrees. 10. The filter cartridge of claim 2 , wherein the first valve driving surface and the second valve driving surface sweep a second rotational radial arc of greater than zero and no greater than about 60 degrees between a valve fully open position and an initial valve closing position when turning a valve body. 11. The filter cartridge of claim 1 comprising at least two first valve driving surfaces and at least two second valve driving surfaces, wherein there is mirror symmetry between the first valve driving surfaces and the second valve driving surfaces. 12. The filter cartridge of claim 1 , wherein the stem comprises a bore such that the aperture is located in the bore. 13. The filter cartridge of claim 1 wherein the aperture comprises an X axis and a Y axis extending radially from the longitudinal axis; at least two first valve driving surfaces are positioned such that the at least two first valve driving surfaces are on opposing sides of the X axis and on opposing sides of the Y axis; and at least two second valve driving surfaces are positioned such that the at least two second valve driving surfaces are on opposing sides of the X axis and on opposing sides of the Y axis. 14. The filter cartridge of claim 13 wherein the at least two first valve driving surfaces oppose the at least two second valve driving surfaces. 15. The filter cartridge of claim 14 wherein the aperture comprises a central area and arcuate outer portions and the central area has a width narrower than the widths of the outer portions. 16. The filter cartridge of claim 15 wherein the aperture comprises the shape of a double bladed axe head. 17. The filter cartridge of claim 12 wherein the bore is circular having a depth d 1 below the surface of the stem face and the aperture has a depth d 2 below the bore. 18. The filter cartridge of claim 17 wherein the aperture comprises an X and a Y axis extending radially from the longitudinal axis; at least two first valve driving surfaces are positioned such that the at least two first valve driving surfaces are on opposing sides of the X axis and on opposing sides of the Y axis; and at least two second valve driving surfaces are positioned such that the at least two second valve driving surfaces are on opposing sides of the X axis and on opposing sides of the Y axis. 19. The filter cartridge of claim 18 wherein the at least two first valve driving surfaces oppose the at least two second valve driving surfaces. 20. The filter cartridge of claim 19 wherein the aperture comprises a central area having the outlet opening and arcuate outer portions, and wherein the central area has a width narrower than the widths of the outer portions. 21. The filter cartridge of claim 18 wherein the first timing radial arc is about 60 degrees to about 90 degrees. 22. The filter cartridge of claim 21 wherein a second timing radial arc between the leading engagement edge and the first valve driving surface is between about 45 degrees to about 90 degrees. 23. The filter cartridge of claim 1 wherein at least one of the first valve driving surface or the second valve driving surface is arcuate. 24. The filter cartridge of claim 1 wherein at least one of the first valve driving surface or the second valve driving surface is planar. 25. The filter cartridge of claim 1 comprising at least two first valve driving surfaces that are planar and at least two second valve driving surfaces that are planar and wherein one of the at least two first valve driving surface opposes one of the at least two second valve driving surface. 26. the filter cartridge of claim 25 wherein the aperture comprises the shape of a double bladed axe head. 27. The filter cartridge of claim 1 wherein the first valve driving surface engages with a valve body in a manifold to supply water to the inlet opening when the filter cartridge is rotated about the longitudinal axis in the first rotational direction and the second valve driving surface engages with the valve body so water does not flow into the inlet opening when the filter cartridge is rotated about the longitudinal axis in the second rotational direction. 28. The filter cartridge of claim 1 wherein the first valve driving surface and second valve driving surface separated by the first timing radial arc allows for some rotation of the filter cartridge about the longitudinal axis in a manifold when a valve body is not moved. 29. The filter cartridge of claim 9 wherein the second timing radial arc between the leading engagement edge and the first valve driving surface allows for a first stage rotation of the filter cartridge about the longitudinal axis such that the retaining member e
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