Claims
- 1. An optical sensor comprising:
an LED light source; an optical path-splitting element located on an axis of light emitted from the LED light source; an incident-light image-formation optical system located on a reflected-light optical path, which is one of optical paths of the optical path-splitting element, and collimating the light emitted from the LED light source and converting reflected light traveling from an object; and a two-dimensional imaging element located on a transmitted-light optical path, another one of the optical paths of the optical path-splitting element, and performing an image-pickup operation with respect to the reflected light guided from the object and converged by the incident-light image-formation optical system, wherein said optical path-splitting element is inclined at an angle of about 45° inside a cylindrical casing, said incident-light image-formation optical system and said two-dimensional imaging element are arranged in an open end of the casing and located in the vicinity of the optical path-splitting element, and said LED light source is provided on a side wall of the casing.
- 2. An optical sensor according to claim 1, wherein said incident-light image-formation optical system and said two-dimensional imaging element are spaced from each other by a distance that is equal to a height of the optical path-splitting element.
- 3. An optical sensor according to claim 1, wherein the optical path-splitting element has a center shifted from the optical axis connecting the incident-light image-formation optical system and the two-dimensional imaging element together, in a direction away from the LED light source, and said LED light source is located in the vicinity of a converged light beam on the reflected-light optical path.
- 4. An optical sensor according to claim 3, wherein said LED light source is located in the vicinity of the converged light beam on the reflected-light optical path, and is close to the two-dimensional imaging element.
- 5. An optical sensor according to claim 3, wherein said LED light source is located in the vicinity of that end of the optical path-splitting element which is closer to the optical axis connecting the incident-light image-formation optical system and the two-dimensional imaging element together, than the other end.
- 6. An optical sensor according to claim 1, wherein said incident-light image-formation optical system is a telecentric lens.
- 7. An optical sensor according to claim 1, wherein said incident-light image-formation optical system is a Fresnel lens.
- 8. An optical sensor according to claim 1, wherein image data corresponding to a desired number of pixel lines is extracted from two-dimensional image data output from the two-dimensional imaging element, thereby enabling use as a line CCD camera.
- 9. An optical sensor according to claim 1, wherein a spot image is acquired from two-dimensional image data output from the two-dimensional imaging element, and a line image is acquired based on image data which corresponds to a desired number of pixel lines and which is extracted from the two-dimensional image data output from the two-dimensional imaging element.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-282703 |
Sep 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation Application of PCT Application No. PCT/JP01/08063, filed Sep. 17, 2001, which was not published under PCT Article 21(2) in English.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP01/08063 |
Sep 2001 |
US |
Child |
10137889 |
May 2002 |
US |