Claims
- 1. An air purge system for an optical sensor, comprising:
a lens having a first side and a second side; an optical sensor positioned on the first side of the lens; a fluid stream located on the second side of the lens; a plenum including an inlet and an outlet, the plenum being adapted to direct the fluid stream substantially parallel to the second side of the lens; and an array of parallel channels disposed between the inlet and the outlet of the plenum adapted to change a turbulent fluid stream to a substantially laminar fluid stream.
- 2. The air purge system of claim 1, wherein the inlet of the plenum is not in-line with the outlet of the plenum.
- 3. The air purge system of claim 1, wherein the channels of the array are honeycomb shaped.
- 4. The air purge system of claim 1, wherein the channels of the array are grid shaped.
- 5. The air purge system of claim 1, wherein the channels of the array are tube shaped.
- 6. The air purge system of claim 1, wherein the fluid stream is located a distance away from the optical sensor such that ambient air does not contaminate the lens.
- 7. The air purge system of claim 1, wherein the array of parallel channels is created by a screen.
- 8. The air purge system of claim 1, wherein the array of parallel channels is created by a combination of at least one screen and other shaped channels.
- 9. The air purge system of claim 1, wherein a diffuser is disposed between the inlet and the outlet of the plenum.
- 10. An air purge system for an optical sensor, comprising:
a lens having a first side and a second side; an optical sensor positioned on the first side of the lens; a fluid stream located on the second side of the lens; a plenum including an inlet for the fluid stream and an outlet for the fluid stream, the plenum being adapted to direct the fluid stream parallel to the second side of the lens; an array of parallel channels being disposed between the inlet and the outlet for changing a turbulent fluid stream to a substantially laminar fluid stream; and a diffuser for diffusing the fluid stream prior to reaching the plurality of channels.
- 11. The air purge system of claim 10, wherein the inlet of the plenum is not in-line with outlet of the plenum.
- 12. The air purge system of claim 10, wherein the channels of the array are honeycomb shaped.
- 13. The air purge system of claim 10, wherein the channels of the array are grid shaped.
- 14. The air purge system of claim 10, wherein the channels of the array are tube shaped.
- 15. The air purge system of claim 10, wherein the fluid stream is located from the optical sensor a distance away such that ambient air does not contaminate the lens.
- 16. The air purge system of claim 10, wherein the array of parallel channels is created by a screen.
- 17. The air purge system of claim 10, wherein the array of parallel channels is created by a combination of at least one screen and other shaped channels.
- 18. A method of purging air in front of an optical sensor, comprising:
providing a lens having a first side and a second side, a plenum including an inlet, an array of parallel channels, and an outlet, and an optical sensor located on the first side of the lens; channeling a turbulent fluid stream through the array of parallel channels, thereby changing the turbulent fluid stream to a substantially laminar fluid stream; and exiting the substantially laminar fluid stream substantially parallel to the second side of the lens.
- 19. The method of claim 18, further including channeling the fluid stream through a diffuser prior to entering the plurality of channels.
- 20. The method of claim 18, further including producing the fluid stream.
- 21. The method of claim 18, further including delivering the fluid stream into the inlet of the plenum.
- 22. A method of purging air in front of an optical sensor, comprising:
providing a lens having a first side and a second side, a plenum including an inlet, an array of parallel channels, and an outlet, an optical sensor located on the first side of the lens, and a diffuser located between the inlet and the outlet of the plenum; channeling a fluid stream through a diffuser prior to entering the plurality of channels; changing the fluid stream from a laminar fluid stream to a turbulent fluid stream; channeling the turbulent fluid stream through the array of parallel channels, thereby changing the turbulent fluid stream to a substantially laminar fluid stream; and exiting the laminar fluid stream substantially parallel to the second side of the lens.
- 23. The method of claim 22, further including producing the fluid stream.
- 24. The method of claim 22, further including delivering the fluid stream into the inlet of the plenum.
RELATED APPLICATION DATA
[0001] The present application is a non-provisional application based on co-pending provisional application 60/351,759, which was filed on Jan. 25, 2002.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60351759 |
Jan 2002 |
US |