Claims
- 1. A wavelength division multiplexing device comprising:
an input port for launching an optical signal; a plurality of filter elements for guiding the optical signal along a predetermined optical path, each filter element being transparent to a predetermined wavelength range and including compensating means for at least partially compensating for diffraction of the optical signal as it is guided along the predetermined optical path; an add/drop port optically coupled to each filter element for transmitting light within the predetermined wavelength range to or from the filter element to which it is optically coupled; and an output port for outputting the optical signal having been guided along the predetermined optical path.
- 2. A wavelength division multiplexing device according to claim 1, wherein each filter element comprises a thin film coated on a substrate, and wherein the compensating means comprises a curved surface of each thin film.
- 3. A wavelength division multiplexing device according to claim 2, comprising one of a glass block and a frame for supporting the plurality of filter elements.
- 4. A wavelength division multiplexing device according to claim 3, wherein each filter element is coupled to the one of the glass block and frame by optical contacting, the substrate of the filter element facing an outer end of the one of the glass block and frame.
- 5. A wavelength division multiplexing device according to claim 3, comprising a plurality of collimators, each collimator coupled to one of the input, add/drop, or output ports.
- 6. A wavelength division multiplexing device according to claim 5, wherein the plurality of collimators comprises a collimator array.
- 7. A wavelength division multiplexing device according to claim 5, wherein each collimator comprises a GRIN lens having an optical axis.
- 8. A wavelength division multiplexing device according to claim 7, comprising an optical fibre coupled to each GRIN lens for transmitting light to or from each port.
- 9. A wavelength division multiplexing device according to claim 8, wherein each optical fibre is shifted relative to the optical axis of each GRIN lens.
- 10. A wavelength division multiplexing device according to claim 8, comprising a prism between each filter element and each GRIN lens.
- 11. A wavelength division multiplexing device according to claim 1, comprising an frame for mounting the plurality of filter elements, the frame having an inner wedged edge face for reducing reflections.
- 12. A wavelength division multiplexing device according to claim 1, wherein the predetermined optical path is a multi-point zigzag optical path.
- 13. A wavelength division multiplexing device according to claim 1, wherein the predetermined wavelength range is different for each filter element.
- 14. A wavelength division multiplexing device according to claim 11, wherein the compensating means includes a lens array on an inner end face of the frame.
- 15. A wavelength division multiplexing device according to claim 3, comprising a reflective surface optically coupled to a first end of the one of the glass block, the plurality of filter elements optically coupled to a second opposing end of the glass block.
- 16. A wavelength division multiplexing device comprising:
an optical block having first and second surfaces, the first surface lying in a first plane and the second surface lying in a second plane spaced from the first plane so as to define an optical gap between the first and second planes; a plurality of filter elements coupled to at least one of the first and second surfaces for providing a multi-point zigzag optical path through the optical gap, each filter element having a curved surface for providing diffraction compensation.
- 17. A wavelength division multiplexing device according to claim 16, wherein the optical block comprises one of a transparent glass block and a frame.
- 18. A wavelength division multiplexing device according to claim 16, wherein the first plane is substantially parallel to the second plane.
- 19. A wavelength division multiplexing device according to claim 16, wherein one of the first and second surfaces comprises a reflective surface.
- 20. A wavelength division multiplexing device comprising:
an input port for launching an optical signal; an optical block having a first end face for receiving the optical signal; a plurality of filter elements disposed on at least one of the first end face and a second end face of the optical block for guiding the optical signal along a multi-point zigzag optical path between the first and second end faces, each filter element being transparent for a predetermined wavelength range and including compensating means for at least partially compensating for diffraction of the optical signal as it is guided along the multi-point zigzag optical path; an add/drop port optically coupled to each filter element for transmitting light within the predetermined wavelength range of the filter element it is coupled to; and an output port optically coupled to one of the first and second end faces for outputting the optical signal guided along the predetermined optical path.
- 21. A wavelength division multiplexing device according to claim 20, wherein the optical block comprises one of a transparent glass block and a transparent frame.
- 22. A wavelength division multiplexing device according to claim 20, wherein the first plane is substantially parallel to the second plane.
- 23. A wavelength division multiplexing device according to claim 20, wherein one of the first and second surfaces comprises a reflective surface.
- 24. A wavelength division multiplexing device according to claim 20, wherein the device is one of a multiplexer and a demultiplexer.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application claims priority from provisional application serial No. 60/297,435 filed on Jun. 13, 2001, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60297435 |
Jun 2001 |
US |