Claims
- 1. A modular one-piece input end cap for attachment to a canister, the one-piece input end cap comprising:
a mounting portion for attachment to a canister; a hydraulic input chamber extending to the filter element in the canister, said hydraulic input chamber configured to be ported in any of three mutually perpendicular directions; and a hydraulic output chamber extending from the filter element in the canister and configured to be ported in any of three mutually perpendicular directions.
- 2. The one-piece input end cap of claim 1, further including a sensor mounted in one of the hydraulic input chamber and the hydraulic output chamber and adapted to extend in any of three mutually perpendicular directions.
- 3. The one-piece input end cap of claim 2, wherein the sensor is a differential pressure sensor.
- 4. The one-piece input end cap of claim 1, wherein the hydraulic output chamber of the one-piece input end cap having means for attaching directly to the hydraulic input chamber of the one-piece input end cap of a second adjacent filter.
- 5. The one-piece input end cap of claim 4, wherein the hydraulic input chamber of the one-piece input end cap having means for attaching directly to the hydraulic output chamber of the one-piece input end cap of a third adjacent filter.
- 6. The one-piece input end cap of claim 5, wherein the one-piece input end cap includes a base having a substantially square perimeter where the one-piece input end cap is attached to an adjacent one-piece input end cap.
- 7. The one-piece input end cap of claim 6, wherein the one-piece input end cap includes a pair of substantially rectangular mounting flanges extending the width of the one-piece input end cap on opposite sides of the one-piece input end cap wherein one mounting flange provides a fluid connection for the hydraulic input chamber and the other mounting flange provides a fluid connection for the hydraulic output chamber.
- 8. The one-piece input end cap of claim 7, wherein the one-piece input end cap includes a pair of bosses on opposite sides of the one-piece input end cap, wherein the pair of bosses is located in a position substantially perpendicular to the mounting flanges, and wherein one boss provides a fluid connection for the hydraulic input chamber and the other boss provides a fluid connection for the hydraulic out put chamber.
- 9. The one-piece input end cap of claim 8, wherein the mounting flange attaches the filter to the adjacent mounting flange.
- 10. The one-piece input end cap of claim 9 wherein the one-piece input end cap includes an internally threaded cylindrical member for attaching the canister thereto.
- 11. The one-piece input end cap of claim 10, wherein the one-piece input end cap is a base for the filter.
- 12. The one-piece input end cap of claim 10, wherein the one-piece input end cap is a top end for the filter.
- 13. A filter comprising:
a canister extending along a longitudinal axis; a closed end cap at one end of the canister attached to the canister for closing one end thereof; a removable filter element contained within the canister; and a modular one-piece input end cap at an opposite end of the canister from the closed end cap, the one-piece input end cap attached to the canister, wherein the one-piece input end cap includes a hydraulic input chamber extending to the filter element and configured to be ported in any of three mutually perpendicular directions including one direction extending along the longitudinal axis of the canister, and the one-piece input end cap includes a hydraulic output chamber extending from the filter element and configured to be ported in any of three mutually perpendicular directions including one direction extending along the longitudinal axis of the canister.
- 14. The filter of claim 13, further including a sensor mounted in one of the hydraulic input chamber and the hydraulic output chamber configured to be ported in any of three mutually perpendicular directions.
- 15. The filter of claim 14, wherein the sensor is a differential pressure sensor.
- 16. The filter of claim 15, wherein the hydraulic output chamber of the one-piece input end cap having means for attaching directly to the hydraulic input chamber of the one-piece input end cap of a second adjacent filter.
- 17. The filter of claim 16, wherein the hydraulic input chamber of the one-piece input end cap having means for attaching directly to the hydraulic output chamber of the modular one-piece input end cap of a third adjacent filter.
- 18. The filter of claim 17, wherein the one-piece input end cap includes a base having a substantially square perimeter where the one-piece input end cap is attached to an adjacent one-piece input end cap.
- 19. The filter of claim 18, wherein the one-piece input end cap includes a pair of substantially rectangular mounting flanges extending the width of the one-piece input end cap on opposite sides of the one-piece input end cap wherein one mounting flange provides a fluid connection for the hydraulic input chamber and the other mounting flange provides a fluid connection for the hydraulic output chamber.
- 20. The filter of claim 19, wherein the one-piece input end cap includes a pair of bosses on opposite sides of the one-piece input end cap, wherein the pair of bosses is located in a position substantially perpendicular to the mounting flanges, and wherein one boss provides a fluid connection for the hydraulic input chamber and the other boss provides a fluid connection for the hydraulic output chamber.
- 21. The filter of claim 19, wherein at least one of the mounting flanges attaches the one-piece input end cap to the adjacent one-piece input end cap of the adjacent filter.
- 22. The filter of claim 21, wherein the mounting flange attaches the filter to the adjacent mounting flange.
- 23. The filter of claim 22, wherein the one-piece input end cap includes an internally threaded cylindrical member for attaching the canister thereto.
- 24. The filter of claim 23, wherein the one-piece input end cap is a base for the filter.
- 25. The one-piece input end cap of claim 23, wherein at least one of the mounting flanges attaches the one-piece input end cap to the adjacent one-piece input end cap of the adjacent filter.
- 26. The filter of claim 24, wherein the one-piece input end cap is a top end for the filter.
- 27. The one-piece input end cap of claim 26, wherein at least one of the mounting flanges attaches the one-piece input end cap to the adjacent one-piece input end cap of the adjacent filter.
- 28. A filtration system comprising:
at least two filters mounted adjacent to each other in series or parallel, each filter comprising:
a canister extending along a longitudinal axis; a closed end cap at one end of the canister attached to the canister for closing one end thereof; a removable filter element contained within the canister; and a modular one-piece input end cap at an opposite end of the canister from the closed end cap, the one-piece input end cap attached to the canister, wherein the one-piece input end cap includes a hydraulic input chamber extending to the filter element and configured to be ported in any of three mutually perpendicular directions including one direction extending along the longitudinal axis of the canister, and the one-piece input end cap includes a hydraulic output chamber extending from the filter element and configured to be ported in any of three mutually perpendicular directions including one direction extending along the longitudinal axis of the canister.
- 29. A method of forming a filtration system comprising the steps of:
attaching a closed end cap at one end of a canister; providing a removable filter element within the canister; attaching a modular one-piece input end cap at an opposite end of the canister from the closed end cap; providing a hydraulic input chamber extending to the filter element and configured to be ported in any of three mutually perpendicular directions; providing a hydraulic output chamber extending from the filter element and configured to be ported in any of three mutually perpendicular directions; and forming ports in at least one of three mutually perpendicular directions by connecting adjacent modular one-piece input end caps together.
- 30. A connecting end cap for a filter, said filter comprising a cylindrical canister having a cylindrical axis, a tubular filter element arranged within the canister, a connecting end cap and a closed end cap arranged such that the tubular filter element rests within the canister, the closed end cap seals one end of the filter element and the connecting end cap directs input flow to the exterior of the tubular filter element and output flow from the interior of the tubular filter element, said connecting end cap comprising a cup-shaped body defined by a cylindrical wall having a cylindrical axis the same as the cylindrical axis of the canister, the open end of the cylindrical wall sized to receive the cylindrical canister and the closed end of the cup-shaped body being defined by a wall perpendicular to the cylindrical axis, said connecting end cap having an input and an output chamber adjacent the closed end, the input and output chambers being separated by a wall positioned so that the inlet chamber abuts two port positions on the cylindrical wall ninety degrees apart around the cylindrical axis and such that the outlet chamber abuts two outlet port positions 180 degrees across from the inlet port positions, the outlet port chamber being further enclosed by a interior wall generally parallel to the end wall and spaced therefrom, an axial opening in the interior wall for abutting the bottom end of the tubular filter element, whereby the connecting end cap can be machined to have aligned input and output ports and/or input and output ports at right angles to each other.
- 31. The connecting end cap according to claim 30, wherein the outlet chamber abuts the an axial port position in the end wall at the center thereof.
- 32. The connecting end cap according to claim 30, having mounting flanges perpendicular to one set of port positions, said flanges defining a rectangular perimeter whereby first and second connecting end caps can be fastened together by the abutting faces of two adjacent flanges of the first and second connecting end caps or by the abutting face of a flange on a first connecting end cap and the abutting edges of two flanges on the second connecting end cap.
- 33. The connecting end cap according to claim 30, wherein having bosses perpendicular to the other set of port positions sized to fall with the perimeter defined by the ends of the flanges.
- 34. The connecting end cap according to claim 30, wherein the perimeter is substantially square.
- 35. The connecting end cap according to claim 30, having an integral manifold extending away from an input port position and an integral pump base extending from the manifold.
CROSS REFERENCE TO RELATED APPLICATION
[0001] The present invention claims priority from U.S. Provisional Patent Application Serial No. 60/355,237, filed Feb. 8, 2002 entitled “Hydraulic Filter with Modular One-Piece Input End Cap”, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60355237 |
Feb 2002 |
US |