Claims
- 1. A printer system, said printer system comprising:
- (a) three light sources, generating respective light beams of different wavelengths;
- (b) three modulators, each of said modulators modulating an intensity of each of said light beams by image data, thereby providing three modulated light beams;
- (c) a beam combiner combining said three modulated light beams into a single light beam;
- (d) a single set of beam shaping optics, shaping said single light beam into a shaped light beam, said shaped light beam having different vergences and waist locations in a page direction and a line direction, said vergences and said waist locations being substantially the same in each of said three wavelengths;
- (e) a light deflector deflecting the shaped light beam and performing a scanning function, thereby providing a deflected light beam; and
- (f) a single f-.theta. lens focusing said deflected light beam onto an associated image surface.
- 2. A printer system, as defined in claim 1, wherein said single light beam is a combination of (a) a first light beam having a wavelength of about 532 nm, (b) a second light beam having a wavelength of about 457.9 nm, and (c) a third light beam having a wavelength of about 685 nm.
- 3. A printer system according to claim 1 wherein:
- said light deflector is a polygon having a plurality of reflective facets, at least one of said facets facing a front-most surface of said f-.theta. lens; and
- said single set of beam shaping optics producing (i) a beam waist in the page direction adjacent to an associated one of said plurality of reflective facets, and (ii) a beam waist in the line direction at a distance of at least 1/3 f behind a first vertex of said f-.theta. lens, where f is a focal length of said f-.theta. lens.
- 4. A printer system according to claim 3, wherein said beam waist in the page direction is located at a distance that is less than ##EQU2## from the associated reflective facet, where f is the focal length of said f-.theta. lens.
- 5. A printer system according to claim 1 wherein
- (a) said f-.theta. lens introduces lateral color aberration, and
- (b) said modulators are modulating said light beams at three data rates, different from one another, and data rate ratio is being used to compensate for the lateral color aberration produced by the f-.theta. lens.
- 6. A printer system for printing on an associated photosensitive medium, said printer comprising:
- (a) an image information store, said store containing three values for each pixel in an image to be created, each of said three values representing a required level of intensity of light in one of three required wavelengths, said wavelengths matching a spectral sensitivity of an associated photosensitive medium so as to produce full color images when impinging on said associated photosensitive medium;
- (b) a processor processing said values;
- (c) three laser light sources each generating a light beam, each of said light beams being a respective one of said required wavelengths;
- (d) three modulators driven by said processor, each of said modulators modulating intensity of one of said light beams by image data and together providing three modulated light beams;
- (e) a beam combiner combining said three modulated light beams into a single light beam;
- (f) a single set of beam shaping optics shaping said single light beam into a shaped light beam, said shaped light beam having different vergences and waist locations in a page direction and a line direction, said vergences and said waist locations being substantially the same in each of the three wavelengths;
- (g) a light deflector deflecting said shaped light beam and performing a scanning function, thereby providing a deflected light beam; and
- (h)) a single, axial color achromatic f-.theta. lens (i) intercepting the deflected light beam, and (ii) focusing the deflected light beam into three spots of different wavelengths on the associated photosensitive medium.
- 7. A printer system according to claim 6, wherein said processor includes means for (a) determining for each position of the deflector where said spots will appear on the associated photosensitive medium; (b) selecting pixels from the image information store that correspond to these spots; and (c) in combination with said three modulators modulates said light beams.
- 8. A printer system according to claim 6 further comprising:
- a support means supporting said associated photosensitive medium in a flat plane and a conjugating cylindrical mirror (a) having a concave radius in page direction, (b) being located between said f-.theta. lens and said associated photosensitive medium, (c) receiving said single light beam from said f-.theta. lens, and (d) directing said single light beam onto the associated photosensitive medium.
- 9. A printer system comprising:
- (i) at least two light sources, each of said light sources producing a light beam of a different wavelength;
- (ii) at least two modulators, one for each light beam, said modulators modulating said light beams with image data and together providing at least two modulated light beams;
- (iii) a combiner combining said modulated light beams into a single light beam having at least two coaxial components of different wavelengths;
- (iv) a single set of beam shaping optics shaping said single light beam into a shaped light beam;
- (v) a light deflector deflecting said shaped light beam, thus providing a deflected light beam;
- (vi)) a single f-.theta. lens (a) intercepting said deflected light beam and
- (b) focusing the deflected light beam on a photosensitive medium.
- 10. A printer system according to claim 9 having three light sources producing three light beams of different wavelengths and having three modulators for modulating said three light beams.
- 11. A printer system according to claim 10, wherein said single light beam is a combination of (a) a first light beam having a wavelength of about 532 nm, (b) a second light beam having a wavelength of about 457.9 nm, and (c) a third light beam having a wavelength of about 685 nm.
- 12. A printer system according to claim 10 wherein said combiner is a fiber optic multiplexor.
- 13. A printer system according to claim 10 wherein said beam shaping optics in combination with said combiner is producing a single light beam that has three collinear components.
- 14. A printer system according to claim 10 wherein vergence of the single light beam in page direction is stronger than in the line direction.
- 15. A printer system according to claim 10 wherein said light deflector is a polygon having a plurality of reflective facets, at least one of said facets facing a front-most surface of said f-.theta. lens; and said beam shaping optics produces a page direction beam waist in the vicinity of said one polygon facet and a line direction beam waist located between the f-.theta. lens and the image surface of the f-.theta. lens.
CROSS REFERENCE TO RELATED APPLICATIONS
This is a Continuation-in-Part of application Ser. No. 08/841,443, filed Apr. 22, 1997, entitled "A Printer System" by Badhri Narayan et al. This application is also related to the following applications:
US Referenced Citations (9)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
841442 |
Apr 1997 |
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