Claims
- 1. A multi-channel optical switching system, comprising:
a thin film optical demux/mux that separates a multi-channel optical signal into a plurality of optical channels, and combines a plurality of optical channels into a multi-channel optical signal; a plurality of optical ports optically connected to the thin film optical demux/mux; and a means for selecting which optical channel is directed to which of the optical ports.
- 2. The multi-channel optical switching system of claim 1, wherein the thin film optical demux/mux is a first thin film optical demux/mux, the system further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; and wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux.
- 3. The multi-channel optical switching system of claim 1, wherein the plurality of optical ports optically connected to the thin film optical demux/mux includes a first thin film optical demux/mux port, and a second thin film optical demux/mux port, the system further comprising:
a first plurality of optical system ports optically connected to a first directing means; the first directing means for directing optical signals from one of the first plurality of optical system ports to the first thin film optical demux/mux port, and from the first thin film optical demux/mux port to one of the first plurality of optical system ports; and a second plurality of optical system ports optically connected to a second directing means; the second directing means for directing optical signals from one of the second plurality of optical system ports to the second thin film optical demux/mux port, and from the second thin film optical demux/mux port to one of the second plurality of optical system ports.
- 4. The multi-channel optical switching system of claim 1, wherein the means for selecting is further comprised of a first selection means and a second selection means; and
wherein the first selecting means and second selecting means are on opposing sides of the thin film demux/mux.
- 5. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; and a user input for directing the port selector to select a particular one of the plurality of ports.
- 6. The multi-channel optical switching system of claim 5, wherein the particular one of the plurality of ports is the INPUT port.
- 7. The multi-channel optical switching system of claim 5, further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; and wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux;
- 8. The multi-channel optical switching system of claim 5, wherein the port selector is a first port selector, the system further comprising:
a second port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; and wherein the first port selector and second port selector are on opposing sides of the thin film demux/mux.
- 9. A multi-channel optical switching system, comprising: a thin film optical demux/mux that separates a multi-channel optical signal into a plurality of optical channels, and combines a plurality of optical channels into a multi-channel optical signal; a plurality of optical ports optically connected to the thin film optical demux/mux;
a means for selecting which optical channel is directed to which of the optical ports; and a programming means for user programming of the means for selecting.
- 10. The multi-channel optical switching system of claim 9, wherein the thin film optical demux/mux is a first thin film optical demux/mux, the system further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; and a programming means for user programming of the means for selecting.
- 11. The multi-channel optical switching system of claim 9, wherein the plurality of optical ports optically connected to the thin film optical demux/mux includes a first thin film optical demux/mux port, and a second thin film optical demux/mux port, the system further comprising:
a first plurality of optical system ports optically connected to a first directing means; the first directing means for directing optical signals from one of the first plurality of optical system ports to the first thin film optical demux/mux port, and from the first thin film optical demux/mux port to one of the first plurality of optical system ports; a second plurality of optical system ports optically connected to a second directing means; the second directing means for directing optical signals from one of the second plurality of optical system ports to the second thin film optical demux/mux port, and from the second thin film optical demux/mux port to one of the second plurality of optical system ports; and a programming means for user programming of the means for selecting.
- 12. The multi-channel optical switching system of claim 9, wherein the means for selecting is further comprised of a first selection means and a second selection means;
wherein the first selecting means and second selecting means are on opposing sides of the thin film demux/mux; and a programming means for user programming of the means for selecting.
- 13. A multi-channel optical switching system, comprising:
a thin film optical demux/mux that separates a multi-channel optical signal into a plurality of optical channels, and combines a plurality of optical channels into a multi-channel optical signal; a plurality of optical ports optically connected to the thin film optical demux/mux; a means for selecting which optical channel is directed to which of the optical ports; and a means for reducing the polarization dependent loss of the optical channels.
- 14. The multi-channel optical switching system of claim 13, wherein the thin film optical demux/mux is a first thin film optical demux/mux, the system further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; and a means for reducing the polarization dependent loss of the optical channels.
- 15. The multi-channel optical switching system of claim 13, wherein the plurality of optical ports optically connected to the thin film optical demux/mux includes a first thin film optical demux/mux port, and a second thin film optical demux/mux port, the system further comprising: a first plurality of optical system ports optically connected to a first directing means;
the first directing means for directing optical signals from one of the first plurality of optical system ports to the first thin film optical demux/mux port, and from the first thin film optical demux/mux port to one of the first plurality of optical system ports; a second plurality of optical system ports optically connected to a second directing means; the second directing means for directing optical signals from one of the second plurality of optical system ports to the second thin film optical demux/mux port, and from the second thin film optical demux/mux port to one of the second plurality of optical system ports; and a means for reducing the polarization dependent loss of the optical channels.
- 16. The multi-channel optical switching system of claim 13, wherein the means for selecting is further comprised of a first selection means and a second selection means;
wherein the first selecting means and second selecting means are on opposing sides of the thin film demux/mux; and a means for reducing the polarization dependent loss of the optical channels.
- 17. A multi-channel optical switching system, comprising:
a thin film optical demux/mux that separates a multi-channel optical signal into a plurality of optical channels, and combines a plurality of optical channels into a multi-channel optical signal; a plurality of optical ports optically connected to the thin film optical demux/mux; a means for selecting which optical channel is directed to which of the optical ports; a second plurality of optical ports; and a reflective means for reflecting one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 18. The multi-channel optical switching system of claim 17, wherein the thin film optical demux/mux is a first thin film optical demux/mux, the system further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; a second plurality of optical ports; and a reflective means for reflecting one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 19. The multi-channel optical switching system of claim 17, wherein the plurality of optical ports optically connected to the thin film optical demux/mux includes a first thin film optical demux/mux port, and a second thin film optical demux/mux port, the system further comprising:
a first plurality of optical system ports optically connected to a first directing means; the first directing means for directing optical signals from one of the first plurality of optical system ports to the first thin film optical demux/mux port, and from the first thin film optical demux/mux port to one of the first plurality of optical system ports; a second plurality of optical system ports optically connected to a second directing means; the second directing means for directing optical signals from one of the second plurality of optical system ports to the second thin film optical demux/mux port, and from the second thin film optical demux/mux port to one of the second plurality of optical system ports; a second plurality of optical ports; and a reflective means for reflecting one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 20. The multi-channel optical switching system of claim 17, wherein the means for selecting is further comprised of a first selection means and a second selection means;
wherein the first selecting means and second selecting means are on opposing sides of the thin film demux/mux; a second plurality of optical ports; and a reflective means for reflecting one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 21. A multi-channel optical switching system, comprising:
a thin film optical demux/mux that separates a multi-channel optical signal into a plurality of optical channels, and combines a plurality of optical channels into a multi-channel optical signal; a plurality of optical ports optically connected to the thin film optical demux/mux; a means for selecting which optical channel is directed to which of the optical ports; and a means for optically attenuating one of the plurality of optical channels.
- 22. The multi-channel optical switching system of claim 21, further comprising a programming means for enabling the attenuating means as a function of the optical power of one of the plurality of optical channels.
- 23. The multi-channel optical switching system of claim 21, wherein the thin film optical demux/mux is a first thin film optical demux/mux, the system further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; and wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux.
- 24. The multi-channel optical switching system of claim 23, further comprising a programming means for enabling the attenuating means as a function of the optical power of one of the plurality of optical channels.
- 25. The multi-channel optical switching system of claim 21, wherein the plurality of optical ports optically connected to the thin film optical demux/mux includes a first thin film optical demux/mux port, and a second thin film optical demux/mux port, the system further comprising:
a first plurality of optical system ports optically connected to a first directing means; the first directing means for directing optical signals from one of the first plurality of optical system ports to the first thin film optical demux/mux port, and from the first thin film optical demux/mux port to one of the first plurality of optical system ports; a second plurality of optical system ports optically connected to a second directing means; and the second directing means for directing optical signals from one of the second plurality of optical system ports to the second thin film optical demux/mux port, and from the second thin film optical demux/mux port to one of the second plurality of optical system ports.
- 26. The multi-channel optical switching system of claim 25, further comprising a programming means for enabling the attenuating means as a function of the optical power of one of the plurality of optical channels.
- 27. The multi-channel optical switching system of claim 21, wherein the means for selecting is further comprised of a first selection means and a second selection means; and
wherein the first selecting means and second selecting means are on opposing sides of the thin film demux/mux.
- 28. The multi-channel optical switching system of claim 27, further comprising a programming means for enabling the attenuating means as a function of the optical power of one of the plurality of optical channels.
- 29. A multi-channel optical switching system, comprising:
a thin film optical demux/mux that separates a multi-channel optical signal into a plurality of optical channels, and combines a plurality of optical channels into a multi-channel optical signal; a plurality of optical ports optically connected to the thin film optical demux/mux; a means for selecting which optical channel is directed to which of the optical ports; and a means for detecting the power of one of the plurality of optical channels.
- 30. The multi-channel optical switching system of claim 29, further comprising a means for optically attenuating one of the plurality of optical channels.
- 31. The multi-channel optical switching system of claim 30, further comprising a programming means for enabling the attenuating means as a function of the optical power detected by the means for detecting.
- 32. The multi-channel optical switching system of claim 29, wherein the thin film optical demux/mux is a first thin film optical demux/mux, the system further comprising:
a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; and wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux.
- 33. The multi-channel optical switching system of claim 32, further comprising a means for optically attenuating one of the plurality of optical channels.
- 34. The multi-channel optical switching system of claim 33, further comprising a programming means for enabling the attenuating means as a function of the optical power detected by the means for detecting.
- 35. The multi-channel optical switching system of claim 29, wherein the plurality of optical ports optically connected to the thin film optical demux/mux includes a first thin film optical demux/mux port, and a second thin film optical demux/mux port, the system further comprising:
a first plurality of optical system ports optically connected to a first directing means; the first directing means for directing optical signals from one of the first plurality of optical system ports to the first thin film optical demux/mux port, and from the first thin film optical demux/mux port to one of the first plurality of optical system ports; a second plurality of optical system ports optically connected to a second directing means; the second directing means for directing optical signals from one of the second plurality of optical system ports to the second thin film optical demux/mux port, and from the second thin film optical demux/mux port to one of the second plurality of optical system ports.
- 36. The multi-channel optical switching system of claim 35, further comprising a means for optically attenuating one of the plurality of optical channels.
- 37. The multi-channel optical switching system of claim 36, further comprising a programming means for enabling the attenuating means as a function of the optical power detected by the means for detecting.
- 38. The multi-channel optical switching system of claim 29, wherein the means for selecting is further comprised of a first selection means and a second selection means;
wherein the first selecting means and second selecting means are on opposing sides of the thin film demux/mux.
- 39. The multi-channel optical switching system of claim 38, further comprising a means for optically attenuating one of the plurality of optical channels.
- 40. The multi-channel optical switching system of claim 39, further comprising a programming means for enabling the attenuating means as a function of the optical power detected by the means for detecting.
- 41. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; and a user programming interface for controlling the port selector.
- 42. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, a first thin film optical demux/mux port optically connected to the thin film optical demux/mux, and a second thin film optical demux/mux port optically connected to the thin film optical demux/mux, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a first optical circulator optically connected to first thin film optical demux/mux port; a second optical circulator optically connected to second thin film optical demux/mux port; and a user programming interface for controlling the port selector.
- 43. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a first port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; wherein the first port selector and second port selector are on opposing sides of the thin film demux/mux; and a user programming interface for controlling the port selector.
- 44. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; and a quarter-wave plate reducing the polarization dependent loss of any one of the plurality of optical channels.
- 45. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, a first thin film optical demux/mux port optically connected to the thin film optical demux/mux, and a second thin film optical demux/mux port optically connected to the thin film optical demux/mux, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a first optical circulator optically connected to first thin film optical demux/mux port; a second optical circulator optically connected to second thin film optical demux/mux port; and a quarter-wave plate reducing the polarization dependent loss of any one of the plurality of optical channels.
- 46. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising: a first port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports;
a user input for directing the port selector to select a particular one of the plurality of ports; a second port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; wherein the first port selector and second port selector are on opposing sides of the thin film demux/mux; and a quarter-wave plate reducing the polarization dependent loss of any one of the plurality of optical channels.
- 47. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; a second plurality of optical ports; and a lens and/or reflector for directing one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 48. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, a first thin film optical demux/mux port optically connected to the thin film optical demux/mux, and a second thin film optical demux/mux port optically connected to the thin film optical demux/mux, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a first optical circulator optically connected to first thin film optical demux/mux port; a second optical circulator optically connected to second thin film optical demux/mux port; a second plurality of optical ports; and a lens and/or reflector for directing one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 49. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a first port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; wherein the first port selector and second port selector are on opposing sides of the thin film demux/mux; a second plurality of optical ports; and a lens and/or reflector for directing one of the plurality of optical channels directly to one of the second plurality of optical ports.
- 50. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; and an array of optical attenuators for optically attenuating one of the plurality of optical channels.
- 51. The multi-channel optical switching system of claim 50, wherein the array of optical attenuators is further comprised of a programming interface for controlling the array.
- 52. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, a first thin film optical demux/mux port optically connected to the thin film optical demux/mux, and a second thin film optical demux/mux port optically connected to the thin film optical demux/mux, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a first optical circulator optically connected to first thin film optical demux/mux port; a second optical circulator optically connected to second thin film optical demux/mux port; and an array of optical attenuators for optically attenuating one of the plurality of optical channels.
- 53. The multi-channel optical switching system of claim 52, wherein the array of optical attenuators is further comprised of a programming interface for controlling the array.
- 54. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a first port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; wherein the first port selector and second port selector are on opposing sides of the thin film demux/mux; and an array of optical attenuators for optically attenuating one of the plurality of optical channels.
- 55. The multi-channel optical switching system of claim 54, wherein the array of optical attenuators is further comprised of a programming interface for controlling the array.
- 56. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second thin film optical demux/mux; wherein a first subset of the plurality of optical ports is optically connected to the first thin film optical demux/mux; wherein a second subset of the plurality of optical ports is optically connected to the second thin film optical demux/mux; and an array of optical detectors for detecting the optical power of one of the plurality of optical channels.
- 57. The multi-channel optical switching system of claim 56, further comprising a controller for enabling the array of optical attenuators as a function of the optical power detected by the array of optical detectors.
- 58. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, a first thin film optical demux/mux port optically connected to the thin film optical demux/mux, and a second thin film optical demux/mux port optically connected to the thin film optical demux/mux, an optical add/drop multiplexer comprising:
a port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a first optical circulator optically connected to first thin film optical demux/mux port; a second optical circulator optically connected to second thin film optical demux/mux port; and an array of optical detectors for detecting the optical power of one of the plurality of optical channels.
- 59. The multi-channel optical switching system of claim 58, further comprising a controller for enabling the array of optical attenuators as a function of the optical power detected by the array of optical detectors.
- 60. In a multi-channel optical switching system comprising a first thin film optical demux/mux and plurality of optical ports including an INPUT port, an optical add/drop multiplexer comprising:
a first port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; a user input for directing the port selector to select a particular one of the plurality of ports; a second port selector that receives light from the INPUT port and directs the light to one of the plurality of optical ports; wherein the first port selector and second port selector are on opposing sides of the thin film demux/mux; and an array of optical detectors for detecting the optical power of one of the plurality of optical channels.
- 61. The multi-channel optical switching system of claim 60, further comprising a controller for enabling the array of optical attenuators as a function of the optical power detected by the array of optical detectors.
CROSS-REFERENCE TO APPLICATION
[0001] This application is a continuation of U.S. patent application Ser. No. 09/955,741 filed Sep. 18, 2001, the content of which is expressly incorporated herein by reference, which claims the benefit of U.S. Provisional Application No. 60/280,660, filed Mar. 30, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60280660 |
Mar 2001 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09955741 |
Sep 2001 |
US |
Child |
10453721 |
Jun 2003 |
US |