Claims
- 1. An optical encoder comprising: a light source unit which emits coherent parallel light, a scale which is provided with a grating track of uniform ratio and pitch but of different grating line directions of non-transmission sections against transmission sections and which diffracts said coherent parallel light emitted form said light source unit, and a light spot position detecting unit which receives positive and negative diffracted light beams of the same order out of light beams diffracted by said scale, and which detects light spot positions of said respective positive and negative diffracted light beams of the same order and converts said detected light spot positions into electrical signals corresponding thereto.
- 2. The optical encoder as claimed in claim 1, wherein said light source unit comprises a light source which emits coherent light, a collimating lens which collimates said coherent light emitted from said light source into parallel light, and a slit which restricts said parallel light collimated by said collimating lens into a predetermined width.
- 3. The optical encoder as claimed in claim 2, wherein said light source is an element to oscillate laser beam.
- 4. The optical encoder as claimed in claim 1, wherein said light source unit and said light spot position detecting unit are arranged on opposite sides of said scale, and the transmission sections of said scale allow said parallel light emitted from said light source unit to pass therethrough for diffraction.
- 5. The optical encoder as claimed in claim 1, wherein said light source unit and said light spot position detecting unit are arranged on the same side as said scale, and the transmission sections of said scale reflect said parallel light emitted from said light source unit to be diffracted.
- 6. The optical encoder as claimed in claim 1, wherein a relative movement between said scale, and said light source unit and said light spot position detecting unit is enabled by the movement of said scale.
- 7. The optical encoder as claimed in claim 1, wherein the relative movement between said scale, and said light source unit and said light spot position detecting unit is enabled by the movement of said light source unit and said light spot position detecting unit.
- 8. The optical encoder as claimed in claim 1, wherein said scale is an elongated plate provided with a grating track, and said relative movement is linear.
- 9. The optical encoder as claimed in claim 1, wherein said scale is a disc provided with an annular grating track, and said relative movement is rotational.
- 10. The optical encoder as claimed in claim 1, wherein said light spot position detecting unit comprises a focusing lens which focuses the light beams diffracted by said scale, a blocking plate which blocks only diffracted light beams of 0th-order out of light beams focused by said focusing lens, and a light spot position detecting element which detects light spot positions of diffracted light beams which have passed through said blocking plate and converts said light spot positions into electrical signals.
- 11. The optical encoder as claimed in claim 10, wherein said light spot position detecting element is an image sensor which converts detected light spot positions into electrical signals.
- 12. An optical encoder comprising:
- an optical system comprising a light source unit which emits coherent parallel light, a scale which is provided with a grating track of uniform ratio and pitch but of different grating line directions of non-transmission sections against transmission sections and which diffracts said parallel light emitted from said light source unit, and a light spot position detecting unit which receives positive and negative diffracted light beams of the same order out of light beams diffracted by the scale, and which detects positions of light spots of said respective positive and negative diffracted light beams of the same order and converts said detected light spot positions into electrical signals corresponding thereto; and
- a reader unit which obtains a rotation angle of the light spots of the positive diffracted light beams and the negative diffracted light beams of the same order out of the electrical signals outputted from said light spot position detecting unit which change along with the relative movement between said scale and said light source unit and said light spot position detecting unit, and converts said rotation angle into a positional data on said scale by a converting means.
- 13. The optical encoder as claimed in claim 12, wherein said reader unit comprises a subtracter which obtains a difference between electrical signals respectively corresponding to detected light spot positions of the positive diffracted light and the negative diffracted light of the same order on orthogonal coordinates outputted from said light spot position detecting unit in order to calculate respective orthogonal components of lines connecting said respective light spot positions, a comparator which compares said orthogonal components obtained by said subtracter, a divider which divides said orthogonal components from said subtracter by the result of the comparison from said comparator, and a converting means which converts the dividends from the divider into a positional data on said scale.
- 14. The optical encoder as claimed in claim 13, wherein said converting means comprises a memory which stores in advance rotation angles of the light spots of said positive diffracted light beams and negative diffracted light beams of the same order in correspondence with the patterns of said grating track which vary along with the relative movement between said scale and said light source unit and said light spot position detecting unit, and a collator which obtains said rotation angles form the dividends calculated by said divider, and which compares said rotation angles with the rotation angles stored in said memory, and outputs appropriate positional data on said scale.
- 15. The optical encoder as claimed in claim 13, wherein said converting means comprises a memory which stores in advance said dividends in correspondence with the patterns of said grating track which vary along with the relative movement between said scale and said light source unit and said light spot position detecting unit, and a collator which compares the dividends calculated by said divider with the dividends stored in said memory, and outputs appropriate positional data on said scale.
Priority Claims (3)
Number |
Date |
Country |
Kind |
62-246726 |
Sep 1987 |
JPX |
|
62-246727 |
Sep 1987 |
JPX |
|
62-271530 |
Oct 1987 |
JPX |
|
Parent Case Info
This application is a divisional of application Ser. No. 251,089, filed Sept. 29, 1988.
US Referenced Citations (8)
Divisions (1)
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Number |
Date |
Country |
Parent |
251089 |
Sep 1988 |
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