Claims
- 1. An optical waveguide structure for distributing light from a light source, the structure comprising:
a cylindrical sleeve configured to accommodate and receive light from a light source, the sleeve including a central axis, and a waveguide collar formed from a solid, planar block of material, the block of material having:
a central portion configured to accommodate and surround the sleeve, and first and second output arms extending in a plane away from the central portion, the plane being substantially perpendicular to the central axis.
- 2. The optical waveguide structure of claim 1, wherein the sleeve is configured to confine a portion of light from the light source through internal reflection and to transmit the light away from the light source in the direction of the central axis.
- 3. The optical waveguide structure of claim 1, wherein the sleeve is longer in the direction of the central axis than a thickness of the central portion in that direction.
- 4. The optical waveguide structure of claim 1, wherein the sleeve comprises rim portions, the rim portions positioned to define gaps, the gaps being configured to accommodate locking tabs of a lamp base.
- 5. The optical waveguide structure of claim 1, further comprising an integral lens portion formed at an end of the first arm.
- 6. A waveguide collar for distributing light from a light source, the collar comprising a solid, planar block of material, the block of material having:
a central portion configured to accommodate a light source, the central portion surrounding the light source in a plane, and first and second output arms extending in the plane away from the central portion, wherein a thickness of the central portion in a direction perpendicular to the plane is less than a thickness of the output arms in the direction perpendicular to the plane.
- 7. The waveguide collar of claim 6, further comprising a cylindrical sleeve configured to accommodate and receive light from a light source, the sleeve being positioned within the central portion.
- 8. A waveguide collar for distributing light from a light source, the collar comprising a solid, planar block of material, the block of material having:
a hub defining an interior portion configured to accommodate a light source, the hub having side surfaces on an exterior portion thereof, alignment notches positioned on the side surfaces, the notches being configured to receive an alignment tab of a waveguide, and rim portions extending around the interior portion of the hub, the rim portions positioned to define gaps, the gaps being configured to accommodate locking tabs of a lamp base.
- 9. A waveguide collar for distributing light from a light source, the collar comprising a solid, planar block of material, the block of material having:
a central portion configured to accommodate a light source, the central portion surrounding the light source in a plane, first and second output arms extending in a plane away from the central portion, the sides of the first and second output arms curving inward toward the central portion to form first and second vertices where the first and second arms meet, and a lens formed on an edge of the waveguide collar, the lens being configured to receive light from the light source, focus a portion of the light, and transmit the portion of the light away from the collar.
- 10. The waveguide collar of claim 9, further comprising a cylindrical sleeve configured to accommodate and receive light from a light source, the sleeve being positioned within the central portion.
- 11. An optical waveguide comprising first and second pieces of solid material, the first piece having:
a transmission portion having a rectangular cross-section, an end of the transmission portion that is convex in one dimension; and the second piece having: a transmission portion having a rectangular cross-section, and an end of the transmission portion that is concave in one dimension, wherein the end of the first piece and the end of the second piece form an interface between the first piece and the second piece.
- 12. The waveguide of claim 11, further comprising a third piece of solid material having:
a transmission portion having a rectangular cross-section, and an end of the transmission portion that is concave in one dimension, wherein the end of the third piece and the end of the first piece form an interface between the third piece and the first piece.
- 13. The waveguide of claim 12, further comprising a band configured to hold the first, second and third pieces together.
- 14. The waveguide of claim 11, further comprising a third piece of solid material having:
a transmission portion having a rectangular cross-section, and a end of the transmission portion that is convex in one dimension, wherein the end of the third piece and the end of the second piece form an interface between the third piece and the second piece.
- 15. The waveguide of claim 14, further comprising a band configured to hold the first, second and third pieces together.
- 16. An optical waveguide for accepting light from a light source and transmitting the light, the waveguide comprising a piece of solid material having:
an input face, a transmission portion, and an end portion between the input face and the transmission portion, wherein a cross-sectional area of the end portion gradually decreases from the transmission portion to the input face.
- 17. The waveguide of claim 16, wherein the end portion has planar sides angled from a longitudinal axis of the transmission portion.
- 18. The waveguide of claim 17, wherein an angle formed between the sides and the longitudinal axis is about 5°.
- 19. The waveguide of claim 16, wherein the end portion is configured to increase an acceptance angle of the waveguide.
- 20. The waveguide of claim 16, further comprising a lens portion formed on the input face.
- 21. An optical waveguide having integrated installation elements, the waveguide comprising first and second sections, the first section comprising:
an input face, an output end, a transmission portion extending from the input face to the output end, and a key positioned on the output end and configured to mate with a socket of the second section; the second section comprising: an input face, an output end, a transmission portion extending from the input face to the output end, and a socket positioned on the output end and configured to mate with a key of the first section.
- 22. The waveguide of claim 21, further comprising a snap positioned on the transmission portion of the first or second section, the snap being configured to mate with an installation fitting of a vehicle.
- 23. The waveguide of claim 21, wherein an outer surface of the waveguide is covered with epoxy.
- 24. An optical waveguide having integrated installation elements, the waveguide comprising first and second sections, the first section comprising:
an input face, an output end, a transmission portion extending from the input face to the output end, and a claw positioned on the output end and configured to mate with a detent of the second section; the second section comprising: an input face, an output end, a transmission portion extending from the input face to the output end, and a detent positioned near the output end and configured to mate with the claw of the first section.
- 25. The waveguide of claim 24, further comprising a snap positioned on the transmission portion and configured to mate with an installation fitting of a vehicle.
- 26. The waveguide of claim 24, wherein an outer surface of the waveguide is covered with epoxy.
- 27. An optical waveguide having an output element for providing illumination in a vehicle, the waveguide comprising:
an input face, a transmission portion extending from the input face, wherein the transmission portion widens at an end to form an output element having a convex lens at an end of the output element.
- 28. The waveguide of claim 27, wherein the output element is formed to leave an air gap between the lens and the end of the transmission portion.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from Provisional Application No. 60/069,118, “HID DRIVEN FOCUS-LESS OPTICS SYSTEM,” filed Dec. 9, 1997 and application Ser. No. 09/009,836, “DISTRIBUTED LIGHTING SYSTEM,” filed Jan. 20, 1998, both of which are incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60069118 |
Dec 1997 |
US |
Divisions (1)
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Number |
Date |
Country |
Parent |
09109051 |
Jul 1998 |
US |
Child |
09828741 |
Apr 2001 |
US |