Claims
- 1. A filter assembly to filter electromagnetic radiation, comprising:
a first transparent substrate including a first surface to transmit at least a portion of the electromagnetic radiation, the first surface having a thin film filter disposed thereon; a second transparent substrate including a second surface to transmit at least a portion of the electromagnetic radiation; a first resilient element located between the first surface and the second surface; and a compression system coupled to the first transparent substrate and the second transparent substrate to provide a compressive force therebetween, the compression system and the first resilient element aligning the first surface and the second surface to face one another.
- 2. The filter assembly of claim 1, wherein the first surface, the second surface and the resilient element form a sealed region.
- 3. The filter assembly of claim 1, wherein the first resilient element aligns the first surface and the second surface such that they are parallel.
- 4. The filter assembly of claim 1, further comprising a second thin film filter disposed on the second surface of the second transparent substrate.
- 5. The filter assembly of claim 1, wherein the compression system comprises a mechanical stop coupled to one of the first transparent substrate and the second transparent substrate, and a compression element to apply a first force comprising said compressive force to an other of the first transparent substrate and the second transparent substrate, such that the mechanical stop opposes the first force and the first resilient element is compressed by the first force.
- 6. The filter assembly of claim 5, further comprising a carrier, wherein the first transparent substrate, the second transparent substrate, and the first resilient element are located in the carrier.
- 7. The filter assembly of claim 6, wherein the carrier is threaded and wherein the compression system comprises a first threaded ring coupled to the first transparent substrate to apply a first force to the first transparent substrate and a second threaded ring coupled to the second transparent substrate to apply a second force to the second transparent substrate, such that the first compression element and the second compression element generate the compressive force, and the resilient material is compressed by the compressive force.
- 8. The filter assembly of claim 1, wherein the resilient element has a first flat surface and a second flat surface, such that the first surface of the first transparent substrate contacts the first flat surface and the second surface of the second transparent surface contacts the second flat surface.
- 9. The filter assembly of claim 8, wherein the first transparent substrate has a first transparent substrate edge, and the second transparent substrate has a second transparent substrate edge, and the resilient element extends around the first transparent substrate and the second transparent substrate to contact the first transparent substrate edge and the second transparent substrate edge.
- 10. The filter assembly of claim 1, further comprising a second resilient element located between the compression system and the first transparent substrate such that the second resilient element is compressed by the compressive force, and a third resilient element located between the second transparent substrate and the compression system such that the third resilient material is compressed by the compressive force.
- 11. The filter assembly of claim 1, wherein the compression system comprises a first compression element coupled to the first transparent substrate to apply a first force to the first transparent substrate and a second compression element coupled to the second transparent substrate to apply a second force to the second transparent substrate, such that the first compression element and the second compression element generate the compressive force, and such that the first resilient element is compressed by the compressive force.
- 12. The filter assembly of claim 1, further comprising a carrier in which the first transparent substrate, the second transparent substrate, and the first resilient element are located.
- 13. The filter assembly of claim 12, wherein the carrier is threaded and wherein the compression system comprises a first threaded ring coupled to the first transparent substrate to apply a first force to the first transparent substrate and a second threaded ring coupled to the second transparent substrate to apply a second force to the second transparent substrate, such that the first compression element and the second compression element generate the compressive force, and the first resilient element is compressed by the compressive force.
- 14. The filter assembly of claim 1, wherein the compression system comprises a first carrier component and a second carrier component, the first carrier component having a first stop and the second carrier component having a second stop, and wherein the first carrier component and the second carrier component snap fit together such that the first stop is coupled to the first transparent substrate and the second stop is coupled to the second transparent substrate, and the first stop and second stop generate the compressive force.
- 15. The assembly of claim 14, wherein the first resilient element is integrated with one of the first carrier component and the second carrier component.
- 16. A method of providing a filter assembly, comprising:
providing a carrier; inserting into the carrier a first transparent substrate having a first surface having a thin film filter disposed thereon; inserting into the carrier a resilient element such that it is adjacent the first surface of the first transparent substrate; inserting into the carrier a second transparent substrate having a second surface, such that the second surface of the second transparent substrate is facing the first surface of the first transparent substrate and is separated from the first surface by the resilient element; and applying a compressive force to the first transparent substrate and to the second transparent substrate such that the resilient element is compressed.
- 17. The method of claim 16, further comprising an act of forming a sealed region with the first transparent substrate, the second transparent substrate and the resilient element.
- 18. The method of claim 16, wherein the act of providing the carrier comprises providing a carrier and an interference fit compression element, and wherein the act of applying the compressive force comprises applying the interference fit compression element to the carrier.
- 19. The method of claim 18, wherein the act of applying the compressive force comprises providing an opposing mechanical stop.
- 20. The method of claim 16, wherein the act of providing the carrier comprises providing a carrier and a threaded compression element, and wherein the act of applying the compressive force comprises applying the threaded compression element to the carrier.
- 21. The method of claim 20, wherein the act of applying the compressive force comprises providing an opposing mechanical stop.
- 22. The method of claim 16, wherein the carrier has an axis central to the carrier, further comprising an act of centering one of the first transparent substrate and the second transparent substrate relative the axis.
- 23. The method of claim 16, wherein the act of providing the carrier comprises providing a first carrier component and a second carrier component, and wherein the act of applying a compressive force comprises snapping the first carrier component and the second carrier component together.
- 24. A filter assembly to filter electromagnetic radiation, comprising:
a first transparent substrate including a first surface to transmit at least a portion of the electromagnetic radiation, the first surface having a thin film filter disposed thereon; a second transparent substrate including a second surface to transmit at least a portion of the electromagnetic radiation; a first resilient element located between the first surface and the second surface; and means for providing a compressive force coupled to the first transparent substrate and the second transparent substrate to provide a compressive force therebetween, the means for providing a compressive force and the first resilient element aligning the first surface and the second surface to face one another.
- 25. The filter assembly of claim 24, wherein the first surface, the second surface and the resilient element form a sealed region.
- 26. The filter assembly of claim 24, wherein the first resilient element aligns the first surface and the second surface such that they are parallel.
- 27. The filter assembly of claim 24, further comprising a second thin film filter disposed on the second surface of the second transparent substrate.
- 28. The filter assembly of claim 24, wherein the means for providing a compressive force comprises a mechanical stop coupled to one of the first transparent substrate and the second transparent substrate, and a compression element to apply a first force comprising said compressive force to another of the first transparent substrate and the second transparent substrate, such that the mechanical stop opposes the first force and the first resilient element is compressed by the first force.
- 29. The filter assembly of claim 28, further comprising a carrier, wherein the first transparent substrate, the second transparent substrate, and the first resilient element are located in the carrier.
- 30. The filter assembly of claim 29, wherein the carrier is threaded and wherein the means for providing a compressive force comprises a first threaded ring coupled to the first transparent substrate to apply a first force to the first transparent substrate and a second threaded ring coupled to the second transparent substrate to apply a second force to the second transparent substrate, such that the first compression element and the second compression element generate the compressive force, and the resilient material is compressed by the compressive force.
- 31. The filter assembly of claim 24, wherein the resilient element has a first flat surface and a second flat surface, such that the first surface of the first transparent substrate contacts the first flat surface and the second surface of the second transparent surface contacts the second flat surface.
- 32. The filter assembly of claim 31, wherein the first transparent substrate has a first transparent substrate edge, and the second transparent substrate has a second transparent substrate edge, and the resilient element extends around the first transparent substrate and the second transparent substrate to contact the first transparent substrate edge and the second transparent substrate edge.
- 33. The filter assembly of claim 24, further comprising a second resilient element located between the means for providing a compressive force and the first transparent substrate such that the second resilient element is compressed by the compressive force, and a third resilient element located between the second transparent substrate and the means for providing a compressive force such that the third resilient material is compressed by the compressive force.
- 34. The filter assembly of claim 24, wherein means for providing a compressive force comprises a first compression element coupled to the first transparent substrate to apply a first force to the first transparent substrate and a second compression element coupled to the second transparent substrate to apply a second force to the second transparent substrate, such that the first compression element and the second compression element generate the compressive force, and such that the first resilient element is compressed by the compressive force.
- 35. The filter assembly of claim 24, further comprising a carrier in which the first transparent substrate, the second transparent substrate, and the first resilient element are located.
- 36. The filter assembly of claim 35, wherein the carrier is threaded and wherein the means for providing a compressive force comprises a first threaded ring coupled to the first transparent substrate to apply a first force to the first transparent substrate and a second threaded ring coupled to the second transparent substrate to apply a second force to the second transparent substrate, such that the first compression element and the second compression element generate the compressive force, and the first resilient element is compressed by the compressive force.
- 37. The filter assembly of claim 24, wherein the means for providing a compressive force comprises a first carrier component and a second carrier component, the first carrier component having a first stop and the second carrier component having a second stop, and wherein the first carrier component and the second carrier component snap fit together such that the first stop is coupled to the first transparent substrate and the second stop is coupled to the second transparent substrate, and the first stop and second stop generate the compressive force.
- 38. The filter assembly of claim 37, wherein the first resilient element is integrated with one of the first carrier component and the second carrier component.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/348,270 filed Jan. 15, 2002, entitled “EFFICIENT FILTER ASSEMBLY,” by Johnson, et al. The entirety of the above provisional application is hereby incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60348270 |
Jan 2002 |
US |