Claims
- 1. An illumination source for illuminating a target, comprising:
an inner PWB mounting base, the inner PWB mounting base comprising:
at least one right PWB segment; at least one left PWB segment; a plurality of LEDs, each LED of the plurality having a cathode lead attached to one of the at least one right PWB segment and the at least one left PWB segment, and each LED of the plurality having an anode lead attached to the other of the at least one right PWB segment and the at least one left PWB segment; a heat sink means in proximity to the plurality of LEDs for providing heat transfer from the LEDs to at least a heat sink portion of the inner PWB mounting base; a base attachable to a first surface of the inner PWB mounting base, the base having a first length, the base constructed from a heat transferring material, the base comprising a plurality of interior channels extending the first length; at least two support members attached to a second surface of the inner PWB mounting base such that the plurality of LEDs are located therebetween, each of the at least two support members comprising a mirrored surface adjacent the plurality of LEDs for directing illumination produced by the plurality of LEDs towards the target; a window attached to the at least two support members; at least two brackets having the first length for enclosing the inner PWB mounting base, the at least two support members, and at least a portion of the window; and at least two end caps for enclosing a first and second end of each of the at least two brackets.
- 2. The illumination source of claim 1, wherein at least one of the plurality of interior channels is utilized for cooling the illumination source.
- 3. The illumination source of claim 1, wherein the at least one of the plurality of channels is utilized for housing electrical wires, the electrical wires supplying power to the plurality of LEDs.
- 4. The illumination source of claim 1, wherein the at least two brackets, the at least two end caps, and the base provide an environmental seal for the illumination source.
- 5. The illumination source of claim 1, wherein the at least one right PWB segment comprises a plurality of right PWB segments, and the at least one left PWB segment comprises a plurality of left PWB segments.
- 6. The illumination source of claim 5, wherein each of the plurality of right and left PWB segments comprises a separate power access means.
- 7. The illumination source of claim 1, wherein each of the mirrored surfaces of the at least two support members is angled to direct light from the plurality of LEDs in a first manner.
- 8. The illumination source of claim 1, wherein each of the at least one right and left PWB segments comprises a plurality of equidistantly-spaced lead pads for accepting the anode and cathode leads of the plurality of LEDs, wherein the illumination produced by the equidistantly-spaced LEDs is uniform over the target.
- 9. The illumination source of claim 8, wherein the equidistantly-spaced lead pads are connected in a configuration such that a failure of a first LED of the plurality does not affect the uniformity of the illumination.
- 10. The illumination source of claim 9, wherein the equidistantly-spaced lead pads are connected in a parallel series configuartion.
- 11. The illumination source of claim 1, wherein the at least one right and left PWB segments are a single PWB segment, the PWB segment comprising a support element for supporting the plurality of LEDs, and an integral heat sink in contact with the plurality of LEDs.
- 12. A method of illuminating a target having a width, the method comprising the steps of:
providing an illumination source for producing uniform illumination across the width of the target, comprising the steps of:
mounting a right PWB segment and a left PWB segment on an inner PWB mounting base; mounting a plurality of LEDs having first and second leads to the right and left PWB segments, wherein the first lead of each LED of the plurality of LEDs is connected to one of the right and left PWB segments, and the second lead of each LED of the plurality of LEDs is connected to the other one of the right and left PWB segments; adhering the plurality of LEDS to a heat sink of the inner PWB mounting base; attaching at least two window support means to the inner PWB mounting base, wherein the plurality of LEDs are positioned between the at least two window support means; attaching a window to the at least two window support means, the window positioned so that illumination from the LEDs passes through the window; mounting the inner PWB mounting base to a support base; and enclosing the inner PWB mounting base, the at least two window support means, and at least a portion of the window utilizing at least to brackets.
- 13. The method of claim 12, further comprising the step of connecting the plurality of LEDs in a parallel series configuration.
- 14. The method of claim 12, further comprising the steps of:
providing at least one cooling channel in the support base; and introducing a cooling means into the at least one cooling channel.
- 15. The method of claim 12, further comprising the step of extending the width of the illumination source by providing a plurality of right and left PWB segments joined end to end.
- 16. The method of claim 12, further comprising the step of finishing a surface of each of the at least two window support means adjacent the plurality of LEDs, the finished surfaces for reflecting illumination from the plurality of LEDs through the window.
- 17. A web inspection system for detecting defects of a web having a width, the web inspection system comprising:
a plurality of smart cameras for taking images of the web along the width, and for producing defect information; a computer couple to the plurality of smart cameras for processing the defect information; and an illumination source for illuminating the web along the width, the illumination source comprising:
an inner PWB mounting base having at least one right PWB segment and at least one left PWB segment; a plurality of LEDs attached to the at least one right PWB segment and the at least one left PWB segment for producing illumination; a base attachable to a first surface of the inner PWB mounting base and having a first length, the base constructed from a heat transferring material, the base having a plurality of interior channels extending the first length; at least two support members attached to a second surface of the inner PWB mounting base such that the plurality of LEDs are located therebetween, each of the at least two support members comprising a mirrored surface adjacent the plurality of LEDs for directing illumination produced by the LEDs towards the web; a window attached to the at least two support members; and a housing for enclosing the illumination source, the housing having an open portion aligned with the window for allowing the illumination to be directed towards the web.
- 18. The web inspection system of claim 17, further comprising a heat sink means in proximity to the plurality of LEDs for providing heat transfer from the plurality of LEDs to at least a heat sink portion of the PWB mounting base.
- 19. The web inspection system of claim 17, wherein the housing comprises:
at least two brackets having the first length for enclosing the inner PWB mounting base, the at least two support members, and at least a portion of the window; and at least two end caps for enclosing first and second ends of the at least two brackets.
- 20. The web inspection system of claim 17, wherein the plurality of LEDs are attached to the at least one right PWB segment and the at least one left PWB segment in a parallel series configuration.
RELATED APPLICATIONS
[0001] This application claims the benefit of priority under 35 U.S.C. 119(e) to provisional U.S. Patent Application No. 60/366,066, filed Mar. 18, 2002 which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60366066 |
Mar 2002 |
US |