Claims
- 1. A flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line comprising:
- a laser diode source which emits a coherent light beam,
- collimating means for collimating said emitted light beam,
- first optical means for converging the cross-scan portion of said collimated beam,
- a rotatable aperture for selectively blocking said light beam from said first optical beam,
- means for rotating said rotatable aperture,
- a rotating polygon mirror with a plurality of facets for reflecting said beam from said rotatable aperture
- second optical means for converging the scan and cross-scan portions of the reflected beam to form a scan beam along said scan line, whereby said rotatable aperture adjusts the resolution of said scan beam along said scan line.
- 2. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 1 wherein said rotatable aperture is rotatable about a line parallel to the axis in the scan plane of said flying spot raster output scanning optical system to adjust the cross-scan plane resolution of said scan beam along said scan line.
- 3. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim I wherein said rotatable aperture has a rotational symmetry about said line parallel to the axis in the scan plane of said flying spot raster output scanning optical system.
- 4. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 3 wherein said rotatable aperture is diamond shaped.
- 5. The flying spot,raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 3 wherein said rotatable aperture is elliptical shaped.
- 6. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 1 wherein rotation of said rotatable aperture produces resolutions of 400, 300 or 240 spots per inch.
- 7. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 1 wherein non-rotation of said rotatable aperture produces resolution of 400 spots per inch, rotation of said rotatable aperture by 46.5 degrees produces resolution of 300 spots per inch, and rotation of said rotatable aperture by 52.5 degrees produces resolution of 240 spots per inch.
- 8. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 1 wherein said rotatable aperture is rotatable about a line parallel to the axis in the cross-scan plane of said flying spot raster output scanning optical system to adjust the scan plane resolution of said scan beam along said scan line.
- 9. The flying spot raster output scanning optical system for adjusting the resolution of a scan beam along the scan line of claim 1 wherein said rotatable aperture is rotatable about a line parallel to the axis in the scan plane of said flying spot raster output scanning optical system and is rotatable about a line parallel to the axis in the cross-scan plane of said flying spot raster output scanning optical system to adjust the cross-scan plane and scan plane resolution of said scan beam along said scan line.
Parent Case Info
This is a continuation in part of application Ser. No. 07/923,639, filed Aug. 3, 1992 abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4560862 |
Eastman et al. |
Dec 1985 |
|
5208694 |
Tomita |
May 1993 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
923639 |
Aug 1992 |
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