Claims
- 1. An improved light source for providing an illumination beam along an illumination axis, comprising:
(a) a plurality of large area LEDs, mounted on a base, for generating emitted light; (b) a collector structure for collecting said emitted light from said plurality of large area LEDs to form the illumination beam, the collector structure comprising:
for each LED, a light guide for collecting, at an input, said emitted light received from said LED and directing said emitted light to an output, along said illumination axis, said light guide comprising:
(i) a collimating element near said input for collimating a portion of said emitted light to direct collimated light in the direction of said illumination axis; (ii) a guide element for directing some of the other said emitted light at said input to said output and along said illumination axis; and wherein, said output of at least a first said light guide has at least one flat edge for butting against said output of at least a second said light guide.
- 2. An improved light source according to claim 1 wherein said large area LEDs have more than one color.
- 3. An improved light source according to claim 1 wherein said light guides are cone segments, narrower at the input end.
- 4. An improved light source according to claim 1 wherein said light guides are fabricated from the group comprising of glass or plastic.
- 5. An improved light source according to claim 1 wherein said base is curved.
- 6. An improved light source according to claim 1 wherein said base comprises a plurality of angled surfaces.
- 7. An improved light source according to claim 1 further comprising at least one additional LED not having a corresponding light guide.
- 8. In a printing apparatus for recording images onto photosensitive medium, an improved light source for directing, along an illumination axis, light having a first, second, or third wavelength, the light source comprising:
(a) an array of LEDs hexagonally arranged for minimum, substantially equal spacing between each LED and each of its immediate neighbor LEDs, any one of said LEDs having either a first or a second or a third wavelength; and (b) a logic controller for enabling LEDs within said array according to said first, second, or third wavelength.
- 9. In a printing apparatus for recording images onto photosensitive medium, an improved light source for directing, along an illumination axis, light having a first, second, or third wavelength, the light source comprising:
(a) an array of LED elements, mounted on a substrate; and (b) a collimating lenslet array coupled to said array of LED elements, such that each individual LED element has a corresponding lenslet.
- 10. In a printing apparatus for recording images onto a photosensitive medium, an improved light source for directing, along an illumination axis, light having a first, second, or third wavelength, the apparatus comprising:
(a) at least one first wavelength LED, positioned on a support element; (b) collector optics for collecting emitted light from said at least one first wavelength LED and directing said emitted light from said at least one first wavelength LED along the illumination axis; wherein said collector optics comprise a collimating element and a light guide employing total internal reflection for conditioning light emitted from said at least one first wavelength LED; (c) at least one second wavelength LED, spaced apart from said at least one first wavelength LED, positioned on said support element and arranged to direct light along the illumination axis; and (d) at least one third wavelength LED, spaced apart from said at least one first wavelength LED, positioned on said support element and arranged to direct light along the illumination axis.
- 11. An improved light source according to claim 10 wherein said at least one first wavelength LED is green.
- 12. An improved light source according to claim 10 wherein said support element is generally concave with respect to said illumination axis, such that said at least one second and said at least one third wavelength LEDs are angularly inclined towards said illumination axis.
- 13. An improved light source according to claim 10 wherein said collector optics comprise a curved reflector for directing said light from said at least one first wavelength LED.
- 14. An improved light source according to claim 13 wherein said curved reflector is substantially parabolic.
- 15. In a printing apparatus for recording images onto photosensitive medium, an improved light source for directing, onto an illumination axis, light having a first, second, or third wavelength, the apparatus comprising:
(a) at least one first wavelength LED, positioned on a support element; (b) collector optics for collecting emitted light from said at least one first wavelength LED and directing said emitted light from said at least one first wavelength LED along the illumination axis; (c) a means for drawing heat energy from said at least one first wavelength LED; and (d) heat-dissipating means for dissipating said heat energy.
- 16. An improved light source according to claim 15 wherein said means for drawing said heat energy from said at least one first wavelength LED and dissipating said heat energy is a heat-sink.
- 17. An improved light source according to claim 15 wherein said means for drawing said heat energy from said at least one first wavelength LED is a thermoelectric cooler.
- 18. An improved light source according to claim 17 wherein said means for dissipating said heat energy is a heat-sink.
- 19. The printing apparatus for recording images onto photosensitive medium of claim 15 wherein said collector optics comprises a collimator lens.
- 20. A printing apparatus for recording images onto photosensitive medium, comprising:
(a) at least one first wavelength LED, mounted on a first support element; (b) first collector optics for collecting emitted light from said at least one first wavelength LED and directing said emitted light from said at least one first wavelength LED through a dichroic combiner and along an illumination axis, wherein said first collector optics comprises a light guide having an integral collimating element and employing total internal reflection for directing said emitted light toward said dichroic combiner; (c) at least one second wavelength LED mounted on a second support element; (d) second collector optics for collecting emitted light from said at least one second wavelength LED and directing said emitted light from said at least one second wavelength LED toward said dichroic combiner and along said illumination axis; and (e) a spatial light modulator for modulating light received along said illumination axis and for directing the light modulated thereby towards a lens for focusing onto the photosensitive medium.
- 21. A printing apparatus for recording images onto photosensitive medium according to claim 17 further comprising a polarizing beamsplitter for directing polarized light from said illumination axis towards said spatial light modulator and for directing modulated light from said spatial light modulator toward a display screen.
- 22. A method for providing an illumination beam along an illumination axis, comprising:
(a) emitting source light from a plurality of large area LEDs mounted on a base; and (b) forming the illumination beam for each LED in said plurality of large area LEDs by collimating a portion of said source light to direct collimated light in the direction of said illumination axis and by directing, using internal reflection within a light guide, some of the other source light at said input to an output along said illumination axis.
- 23. A method for forming a collector structure for directing illumination from a plurality of LEDs along an illumination axis, the method comprising:
(a) providing, for each LED, a light guide having an input side for collecting light from the LED and an output side for directing light along the illumination axis, the light guide comprising:
(i) a collimating element for collimating a first portion of the LED illumination incident to said element along the illumination axis; (ii) a guide element for directing a second portion of the LED illumination along the illumination axis using total internal reflection; (b) trimming at least two adjacent said light guides along their corresponding said output sides, to provide an abutting edge for said at least two adjacent said light guides.
- 24. In a printing apparatus for recording images onto photosensitive medium, a method for directing, along an illumination axis, light having a first, second, or third wavelength, the method comprising:
(a) illuminating an array of LED elements on a substrate; and (b) coupling a collimating lenslet array to said array of LED elements, such that each individual LED element has a corresponding lenslet.
- 25. A method for recording images onto photosensitive medium, comprising:
(a) emitting light from at least one first wavelength LED, positioned on a first support element; (b) collecting emitted light from said at least one first wavelength LED through first collector optics and directing said emitted light from said at least one first wavelength LED through a dichroic combiner and along an illumination axis, wherein the step of directing said emitted light comprises the step of collimating emitted light and using total internal reflection; (c) emitting light from at least one second wavelength LED positioned on a second support element; (d) collecting emitted light from said at least one second wavelength LED through second collector optics and directing said emitted light from said at least one second wavelength LED toward said dichroic combiner and along said illumination axis, wherein the step of directing said emitted light comprises the step of collimating emitted light and using total internal reflection; and (e) modulating light from said illumination axis at a spatial light modulator and directing the light modulated thereby towards a lens for focusing onto the photosensitive medium.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Reference is made to commonly-assigned copending U.S. patent application Ser. No. 09/794,669, filed Feb. 27, 2001, entitled METHOD AND APPARATUS FOR PRINTING HIGH RESOLUTION IMAGES USING MULTIPLE REFLECTIVE SPATIAL LIGHT MODULATORS, by Ramanujan et al., and U.S. application Ser. No. 09/976,171, filed Oct. 12, 2001, entitled A TWO LEVEL IMAGE WRITER, by Roddy, et al., the disclosures of which are incorporated herein.