Claims
- 1. A sensor comprising:
at least one source that produces radiation; at least one detector; and at least one lens system, wherein said lens system collimates and focuses said radiation onto at least two different regions of a surface of a reflective object, wherein said reflective object reflects said radiation, and said lens system collimates and focuses said reflected radiation onto said at least one detector, thereby sensing said reflective object.
- 2. The sensor of claim 1, wherein said source is a vertical cavity surface emitting laser, an edge emitting laser, or a light emitting diode.
- 3. The sensor of claim 2, wherein said source is a vertical cavity surface emitting laser.
- 4. The sensor of claim 3, wherein said vertical cavity surface emitting laser has a threshold current of less than about 1 mAmp.
- 5. The sensor of claim 1, further comprising at least two sources.
- 6. The sensor of claim 5, wherein said at least two sensors are vertical cavity surface emitting lasers.
- 7. The sensor of claim 6, wherein said vertical cavity surface emitting lasers have threshold currents of less than about 1 mAmp.
- 8. The sensor of claim 1, wherein said detector is a photodetector, a p-n junction detector, or a phototransistor.
- 9. The sensor of claim 7, wherein said detector is a photodetector.
- 10. The sensor of claim 1, further comprising at least two detectors.
- 11. The sensor of claim 1, wherein said lens system comprises an aspherical lens.
- 12. The sensor of claim 1, wherein said lens system comprises plastic.
- 13. The sensor of claim 11, wherein said lens system comprises, polymethylmethacrylate, polyolefins, polystyrene, or polycarbonate.
- 14. The sensor of claim 1, wherein said lens system is symmetrical across a horizontal axis.
- 15. The sensor of claim 1, wherein said lens system comprises a sensor surface and an object surface.
- 16. The sensor of claim 15, wherein said sensor surface comprises three individual surfaces, and said object surface comprises two individual surfaces.
- 17. The sensor of claim 16, wherein said three individual surfaces that comprise said sensor surface are virtually the same, and said two individual surfaces that comprises said object surface are virtually the same.
- 18. A sensor comprising:
at least one laser; at least one detector; at least on lens system, wherein said lens system comprises a sensor surface, wherein said sensor surface comprises three individual surfaces that are virtually the same; and an object surface wherein said object surface comprises two individual surfaces that are virtually the same.
- 19. The sensor of claim 18, wherein said source is a vertical cavity surface emitting laser.
- 20. The sensor of claim 19, wherein said vertical cavity surface emitting laser has a threshold current of less than about 1 mAmp.
- 21. The sensor of claim 1, further comprising at least two sources.
- 22. The sensor of claim 21, wherein said at least two sensors are vertical cavity surface emitting lasers.
- 23. The sensor of claim 22, wherein said vertical cavity surface emitting lasers have threshold currents of less than about 1 mAmp.
- 24. The sensor of claim 18, wherein said detector is a photodetector, a p-n junction detector, or a phototransistor.
- 25. The sensor of claim 24, wherein said detector is a photodetector.
- 26. The sensor of claim 18, further comprising at least two detectors.
- 27. The sensor of claim 18, wherein said lens system comprises an aspherical lens.
- 28. The sensor of claim 18, wherein said lens system comprises plastic.
- 29. The sensor of claim 28, wherein said lens system comprises, polymethylmethacrylate, polyolefins, polystyrene, or polycarbonate.
- 30. The sensor of claim 18, wherein said lens system is symmetrical across a horizontal axis.
- 31. A method of sensing a reflective object comprising the steps of:
emitting radiation from at least one source; collimating and focusing said radiation onto at least two regions of a surface of a reflective object to be sensed, wherein said reflective object reflects at least some of the radiation incident thereon; collimating and focusing said reflected radiation onto at least one detector; and detecting said focused radiation, wherein said detection of said radiation by said detector indicates the presence of said object.
- 32. A method of determining the velocity of an object that includes the steps of:
sensing at least one edge of an object with a sensor comprising:
at least one source that produces radiation; at least one detector; and at least one lens system, wherein said lens system collimates and focuses said radiation into at least two different beams that impinge upon the surface of a reflective object, wherein said reflective object reflects said radiation, and said lens system collimates and focuses said reflected radiation onto said at least one detector, thereby sensing said reflective object; calculating the velocity of said object by determining the distance between said two different beams impinging upon said surface of said object; and dividing said distance by the difference in the time it takes said two beams to detect at least one edge of said object to determine the velocity of said object.
- 33. The method of claim 32, wherein said edge detected is said leading edge of said object.
- 34. The method of claim 33, further comprising detecting said trailing edge.
- 35. The method of claim 34, wherein said velocity of said object is determined by considering the velocity determined by the leading edge detection and the trailing edge detection
Parent Case Info
[0001] This application claims priority to U.S. Provisional Application Serial No. 60/349,902, filed on Jan. 18, 2002, entitled COMPACT VCSEL SENSOR WITH MULTIPLE SENSING CAPABILITIES, the disclosure of which is incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
|
60349902 |
Jan 2002 |
US |