IP Library Granted Patent US 8,562,830
Granted Patent B2
US 8,562,830 · App. 12/353,198 · Granted Oct 22, 2013

Keyed system for connection of filter cartridge to filter holder

Inventor: Roger P. Reid (Caldwell, ID)
Assignee: Omnipure Filter Company
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Quick Facts
Patent No.
US 8,562,830
App. No.
12/353,198
Granted
Oct 22, 2013
Kind
B2
Abstract

Embodiments of a key system for filters and their connecting heads, brackets, or other holders are shown. The filter cartridge and its holder each have a keyed surface, one being a protruding “key” and one being a recessed “lock”. Cooperation of these keyed surfaces is required in order for the filter cartridge to be installed in the holder, so that mis-matched cartridges cannot be installed into the holder, for example, to prevent a particular type of cartridge from being placed in a filtration or other process where it would be inappropriate, or undesired. The keyed surfaces are selectively locate-able preferably at different circumferential locations on a perimeter of the filter and a corresponding location on a perimeter of the head/holder. The perimeter may be, for example, on an outer shoulder surface of a filter and an inner surface of a valve head, or on outer and inner surfaces of connectors that provide a liquid seal between the filter and the head/holder.

Claims (21)

1. A keyed system for mating a filter and holder, the keyed system comprising:

a filter and a holder; wherein:

the filter has a filter surface having a first set of key protrusions;

the holder has a holder surface having a first cooperating recess structure comprising a plurality of axial portions separated by radially-protruding ridges, and also comprising a single circumferentially-extending lock portion in communication with said plurality of axial portions;

so that, during axial insertion of the filter into the holder, said first set of key protrusions slides through the axial portions and past said radially-protruding ridges, and, upon angular rotation of the filter in the holder, said filter is locked in the holder by the key protrusions of said first set sliding into, and remaining in, said single circumferentially-extending lock portion.

2. A keyed system as in claim 1 , wherein said single circumferentially-extending lock portion has an open end near said plurality of axial portions and a closed end opposite said open end.

3. A keyed system as in claim 1 , wherein said single circumferentially-extending lock portion has an open end near said plurality of axial portions and has an opposite end comprising a rotation stop surface.

4. A keyed system in claim 1 , wherein said first set of key protrusions has a circumferential length and the single circumferentially-extending lock portion has a circumferential length, and wherein the circumferential length of said lock portion is at least as long as the circumferential length of the first set of key protrusions, so that all of said first set of key protrusions slides into and remains in said lock portion.

5. A keyed system in claim 1 , wherein said first set of key protrusions has a circumferential length and the single circumferentially-extending lock portion has a circumferential length that is as long as said circumferential length of the first set of key protrusions, so that all of said first set of key protrusions slides into and remains in said lock portion.

6. A keyed system as in claim 1 , further comprising a plurality of sets of said filters and said holders; wherein the location of the key protrusion and the recess structure on said filter surface and holder surface is selectively locateable to different circumferential locations on said filter surface and said holder surface so that each of said sets of said filters and said holders has a differently-located key protrusion and lock recess to prevent one of said filters from being installed in any but its respective holder.

7. A keyed system as in claim 1 , wherein the filter is an elongated filter with an longitudinal axis and a radius, and wherein said first set of key protrusions are on an upper shoulder of a top end of the filter, and said first cooperating recess structure is on an inner surface of a cavity of a holder, wherein the cavity receives the filter top end.

8. A keyed system as in claim 7 , wherein the first set of key protrusions are all within a 90 degree arc on the upper shoulder of the top end of the filter.

9. A keyed system as in claim 7 , wherein said first set of key protrusions are all within less than a 70 degree arc on the upper shoulder of the top end of the filter.

10. A keyed system as in claim 1 , comprising a plurality of sets of filters and holders, wherein the key protrusions and the axial portions on said filter surface and said holder surface for each set are selected to be different in number and size compared to other of the sets, so that each of said sets has differently-numbered and differently-sized key protrusions and recess structure to prevent one of said filters from being installed in any but its respective holder.

11. A keyed system as in claim 1 , wherein the filter has a second set of key protrusions; and the holder surface has a second cooperating recess structure having a plurality of axial portions separated by radially-protruding ridges, there being one of said axial portions for each of said key protrusions, and the second cooperating recess structure further having a single circumferentially-extending lock portion in mechanical communication with said axial portions of the second cooperating recess structure; and wherein said second set of key protrusions slide through the axial portions of the second recess structure during axial insertion of the filter into the holder and, upon angular rotation of the filter in the holder, at least a plurality of key protrusions of said second set slide into and are received in the single circumferentially-extending lock portion of the second recess structure.

12. A keyed system as in claim 11 , wherein said first set of key protrusions are all within less than a 70 degree arc on an upper shoulder of a top end of the filter, and wherein the second set of key protrusions are all within less than a 70 degree arc on the upper shoulder generally opposite of said first set.

13. A keyed system for mating a filter and holder, the keyed system comprising:

a filter having a top end and a bottom end, and a holder having an upper end and a lover end and having a cavity opening at a lower end of the holder for receiving a portion of the top end of the filter; wherein:

the filter top end has a filter surface with a first set of key protrusions;

the holder has a cavity surface having a first cooperating recess structure comprising a plurality of axial portions at a lower edge of said first cooperating recess structure, said plurality of axial portions separated by radially-protruding ridges, and said first cooperating recess structure also comprising a single circumferentially-extending lock portion having a first end above the radially-protruding ridges and in communication with said plurality of axial portions, said single circumferentially-extending lock portion also having an opposite end circumferentially distanced from the axial portions and comprising a single rotation stop surface;

so that, during axial insertion of the filter up into the holder, said first set of key protrusions slides through the axial portions past said radially-protruding ridges, and, upon angular rotation of the filter relative to the holder in a first direction, said filter is locked in the holder by the key protrusions of said first set sliding into, and remaining in, said single circumferentially-extending lock portion, and wherein only one of said plurality of the key protrusions abuts against the rotation stop surface to limit further rotation in said first direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2009
From: REID, ROGER P.
To: OMNIPURE FILTER COMPANY, INC
Reel/Frame 023538/0886 →
Continuity (9)
Continuation 11316373 · Dec 20, 2005
Continuation In Part 10786655 · Feb 24, 2004
Continuation 09928666 · Aug 11, 2001
Continuation In Part 11200864 · Aug 9, 2005
Continuation 10372040 · Feb 21, 2003
Provisional Application 60224632 · Aug 11, 2000
Provisional Application 60272221 · Feb 27, 2001
Provisional Application 60358692 · Feb 21, 2002
Related Publication 20090114584A1 · May 7, 2009