Claims
- 1. A camera, comprising:
- an objective lens forming an optical path;
- exposure controlling means for controlling exposure;
- a finder optical system forming a second optical path;
- a plurality of diffraction lattice elements, each of which having predetermined size and arranged in one of the optical paths and substantially overlapping each other at least partially with respect to an image forming light entering these areas; and
- photo detecting means for detecting diffraction light from said diffraction lattice elements.
- 2. A camera, according to claim 1, wherein said diffraction lattice elements are formed in a different member with respect to each other.
- 3. A camera, according to claim 2, wherein said diffraction lattice elements are cemented together.
- 4. A camera, according to claim 1, wherein said diffraction lattice elements are formed within in the same member and diffract part of the light incident on the member in a different direction with respect to each other.
- 5. A camera, according to claim 4, wherein the member is a light sensitive material and each of said diffraction lattice elements is formed by a fringe recorded on the light sensitive material by multiple exposures.
- 6. A camera, according to claim 1, wherein said diffraction lattice elements have a different size with respect to each other.
- 7. A camera, according to claim 1, wherein said diffraction lattice elements have a different lattice direction with respect to each other.
- 8. a camera, according to claim 1, wherein said diffraction lattice elements have a different lattice pitch with respect to each other.
- 9. A camera, according to claim 1, wherein said diffraction lattice elements are a volume type hologram.
- 10. A camera, according to claim 9, wherein said volume type holograms have a different fringe inclination angle with respect to each other.
- 11. A camera, according to claim 1, wherein said diffraction lattice elements have a lattice shape to collect the diffracted light.
- 12. A camera, comprising:
- an objective lens forming an image of an object;
- exposure controlling means for controlling exposure;
- a finder optical system for observing the object;
- a diffraction lattice element;
- a transparent member carrying said diffraction lattice element and having a projection plane for the light, said light being a diffracted part of an image forming light incident on said diffraction lattice element; and
- photo detecting means, having a light receiving plane closely bonded to the projection plane.
- 13. A device for measuring light incident on an image forming optical system, comprising:
- an image forming optical system for forming an image of an object on an image plane with which an optical path is formed;
- a diffraction lattice element;
- a transparent member arranged in the optical path and carrying said diffraction lattice element and having a projection plane and an incident plane for the image forming light and a curved plane for collecting the light diffracted by said diffraction lattice element; and
- photo detecting means for detecting the diffracted light from the curved plane.
- 14. A device for measuring light incident on an image forming optical system according to claim 13, wherein said curved plane is a reflection plane.
- 15. A device for measuring light incident on an image forming optical system according to claim 13, wherein said curved plane is a Toric plane.
- 16. A device for measuring light incident on an image forming optical system, comprising:
- an image forming optical system for forming an image of an object on an image plane with which an optical path is formed;
- a transparent member carying a diffraction lattice element and located in said optical path;
- photo detecting means having a light receiving plane opposed to a side of said transparent member from which the diffraction light from said diffraction lattice is projected, said light receiving plane having a smaller dimension than the side of said transparent member and an optical system for light collection arranged between the side from which the diffracted light is projected and said photo detecting means.
- 17. A device for measuring light incident on an image forming optical system according to claim 16, wherein said light collection optical system is a Toric lens tightly attached to the projection side.
Priority Claims (19)
Number |
Date |
Country |
Kind |
50-68765 |
Jun 1975 |
JPX |
|
50-68766 |
Jun 1975 |
JPX |
|
50-68767 |
Jun 1975 |
JPX |
|
50-68768 |
Jun 1975 |
JPX |
|
50-68769 |
Jun 1975 |
JPX |
|
50-68770 |
Jun 1975 |
JPX |
|
50-68771 |
Jun 1975 |
JPX |
|
50-68772 |
Jun 1975 |
JPX |
|
50-68773 |
Jun 1975 |
JPX |
|
50-68774 |
Jun 1975 |
JPX |
|
50-68775 |
Jun 1975 |
JPX |
|
50-68776 |
Jun 1975 |
JPX |
|
50-68777 |
Jun 1975 |
JPX |
|
50-68778 |
Jun 1975 |
JPX |
|
50-68779 |
Jun 1975 |
JPX |
|
50-68780 |
Jun 1975 |
JPX |
|
50-68781 |
Jun 1975 |
JPX |
|
50-68782 |
Jun 1975 |
JPX |
|
50-68783 |
Jun 1975 |
JPX |
|
Parent Case Info
This is a division of application Ser. No. 691,628, filed June 1, 1976, and now U.S. Pat. No. 4,103,153 issued July 25, 1978.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3498198 |
Fujii |
Mar 1970 |
|
3798660 |
Hasegawa et al. |
Mar 1974 |
|
3810202 |
Uno et al. |
May 1974 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
84856 |
Mar 1965 |
FRX |
1078996 |
Aug 1967 |
GBX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
691628 |
Jun 1976 |
|