Claims
- 1. An apparatus comprising:
a first waveguide array having a plurality of waveguides disposed therein; a second waveguide array having a plurality of waveguides disposed therein, the second waveguide array disposed proximate the first waveguide array; first and second signal carriers disposed proximate the first and second waveguide arrays; the first and second waveguide arrays and the first and second signal carriers substantially symmetrically disposed relative to an optical axis of the apparatus; at least one light focusing device operable to receive an optical signal from at least one signal carrier and to direct the received optical signal to a dispersion apparatus aligned therewith; the dispersion apparatus operable to disperse the optical signal into a plurality of selected spectral wavelengths and to reflect the selected spectral wavelengths back to the light focusing device; and the light focusing device operable to direct the reflected spectral wavelengths to at least one waveguide array.
- 2. The apparatus of claim 1 further comprising the waveguide arrays and the signal carriers grouped on respective sides of the optical axis.
- 3. The apparatus of claim 1 further comprising:
the first signal carrier operably coupled to the first waveguide array; the second signal carrier operably coupled to the second waveguide array; and the first waveguide array and first signal carrier and the second waveguide and second signal carrier substantially symmetrically disposed on opposite sides of the optical axis.
- 4. The apparatus of claim 1 further comprising at least a portion of the plurality of waveguides including single mode fibers.
- 5. The apparatus of claim 1 further comprising at least a portion of the plurality of waveguides including multi-mode fibers
- 6. The apparatus of claim 1 further comprising the plurality of waveguides including a combination of multi-mode and single mode fibers.
- 7. The apparatus of claim 1 further comprising the first waveguide array operable to multiplex the dispersed optical signal and the second waveguide array operable to demultiplex the dispersed optical signal and wherein the multiplexing and the demultiplexing occur substantially simultaneously.
- 8. The apparatus of claim 1 further comprising the first and the second waveguide arrays operable to multiplex the dispersed optical signal.
- 9. The apparatus of claim 1 further comprising the first and the second waveguide arrays operable to demultiplex the dispersed optical signal.
- 10. The apparatus of claim 1 further comprising the waveguide arrays and the signal carriers integrated into a single package.
- 11. The apparatus of claim 10 further comprising:
the single package including a plurality of v-channels; and each v-channels operable to maintain a waveguide therein.
- 12. The apparatus of claim 1 further comprising:
a substrate; a cladding layer disposed on a first surface of the substrate; and the waveguides of the waveguide arrays formed from respective cores disposed in the cladding layer.
- 13. The apparatus of claim 1 further comprising the dispersion apparatus including a diffraction grating.
- 14. The apparatus of claim 13 further comprising the diffraction grating having a blazed surface.
- 15. A signal processing device operable to substantially simultaneously perform a plurality of signal processing operations comprising:
a plurality of waveguides arranged in at least two waveguide arrays; a signal carrier operably coupled to each waveguide array; the waveguide arrays and signal carriers disposed substantially symmetrically relative to an optical axis of the device; and each waveguide array operable to perform a signal processing operation on a multiple wavelength signal emitted from a signal carrier upon reflection of the multiple wavelength signal from a dispersion apparatus.
- 16. The signal processing device of claim 15 further comprising:
the signal carriers aligned on a first side of the optical axis and the waveguide arrays aligned on a second side of the optical axis; and each signal carrier substantially symmetrically disposed relative to each waveguide array.
- 17. The signal processing device of claim 15 further comprising:
the signal carriers coupled within the waveguide arrays; and the waveguides disposed substantially symmetrically relative to the optical axis.
- 18. The signal processing device of claim 15 further comprising:
a light focusing device disposed between the signal processing device and the dispersion device; and the light focusing device operable to direct the multiple wavelength signal from the signal carrier to the dispersion device for diffraction of the multiple wavelength signal into selected spectral wavelengths and operable to direct the selected spectral wavelengths reflected from the dispersion device to the waveguide arrays.
- 19. The signal processing device of claim 15 further comprising at least one waveguide array operable to multiplex the signal reflected from the dispersion device.
- 20. The signal processing device of claim 15 further comprising at least one waveguide array operable to demultiplex the signal reflected from the dispersion device.
- 21. A combination multiplexer/demultiplexer comprising:
a first waveguide array disposed proximate a second waveguide array; a signal carrier coupled with the first waveguide array and a signal carrier coupled with the second waveguide array; at least one light focusing device operable to receive a multiple wavelength optical signal from at least one signal carrier and operable to direct a diffracted optical signal to at least one waveguide of the second waveguide array; a diffraction grating optically aligned with the light focusing device and operable to diffract a multiple wavelength optical signal into selected spectral wavelengths; the waveguide arrays generally symmetrically disposed relative to an optical axis of the combined multiplexer/demultiplexer; and the combined multiplexer/demultiplexer operable to substantially simultaneously multiplex and demultiplex a multiple wavelength optical signal.
RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Patent Application Serial No. 60/276,182, filed Mar. 15, 2001, and entitled “Miniaturized Reconfigurable DWDM Add/Drop System for Optical Communication Systems.”
[0002] This application claims priority from co-pending application Ser. No. ______, filed Mar. 14, 2002 entitled “Dynamic Variable Optical Attenuator and Variable Optical Tap”, which claims priority from U.S. Provisional Patent Application Serial No. 60/276,182, filed Mar. 15, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
|
60276182 |
Mar 2001 |
US |