Claims
- 1. An optical device for measuring the distance to a remote object, the device comprising:
- a light source;
- a light receiver having a going light sensor and a returning light sensor;
- an electrical signal processing unit connected to said going and returning light sensors;
- a returning light guide way leading to said returning light sensor;
- an optical member for reflecting going light from said light source toward the remote object and for reflecting returning light from the remote object toward said returning light guide way along which said returning light travels to the returning light sensor;
- a reference optical track having one end directed to said light source and the other end directed to said going light sensor, so that a first part of the going light from said light source travels to said going light sensor through said reference optical track; and
- a light transmitting member having predetermined length and having a first end directed to said light source and a second end directed to said returning light sensor, so that a second part of the going light from said light source travels to said returning light sensor through said light transmitting member,
- wherein said electric signal processing unit computes a calculated length of said light transmitting member based on said first and second parts of the going light, and compares said calculated and predetermined lengths for effecting a temperature compensation of the measured distance to the object.
- 2. The optical device as claimed in claim 1, in which said light transmitting member is an optical fiber.
- 3. The optical device as claimed in claim 1, in which said electric signal processing unit detects a phase difference between said first part of the going light which has passed through said reference optical track and said second part of the going light which has passed through said light transmitting member.
- 4. The optical device as claimed in claim 3, in which said electric signal processing unit corrects the phase of said first part of the going light with reference to the detected phase difference.
- 5. The optical device as claimed in claim 1, in which said returning light guide way comprises two identical optical tracks.
- 6. The optical device as claimed in claim 2, in which said optical fiber has a coiled middle portion.
- 7. The optical device as claimed in claim 1, wherein said optical member is a polygon mirror, and said optical device further comprising:
- a motor for rotating said polygon mirror about a first axis; and
- a motor for rotating said polygon mirror about a second axis which is perpendicular to said first axis.
- 8. A device for optically measuring a distance to a remote object based on a phase difference between a going light emitted from a light source toward the object and a returning light reflected by the object, comprising:
- a light transmitting member having a predetermined optical length as a reference, said light transmitting member exhibiting substantially no change in length even when temperature changes; and
- a temperature compensating means for measuring the length of said light transmitting member based on a phase difference between the going light emitted from the light source and the going light traveling through said light transmitting member, and for compensating a measured distance to the object by means of an error between a value corresponding to said reference and a value corresponding to said measured optical length of said light transmitting member.
Priority Claims (1)
Number |
Date |
Country |
Kind |
6-255471 |
Oct 1994 |
JPX |
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CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. application Ser. No. 08/546,069, filed Oct. 20, 1995, now abandoned.
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Date |
Kind |
4511249 |
Frungel et al. |
Apr 1985 |
|
4521107 |
Chaborski et al. |
Jun 1985 |
|
4533242 |
McLauchlan et al. |
Aug 1985 |
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5006721 |
Cameron et al. |
Apr 1991 |
|
5377219 |
Geiger |
Dec 1994 |
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Foreign Referenced Citations (1)
Number |
Date |
Country |
8-122426 |
Apr 1996 |
JPX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
546069 |
Oct 1995 |
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