Claims
- 1. An optical cross-connect switch comprising
a first plurality of input ports each arranged to receive a WDM signal comprising a plurality of optical wavelength channels, a second plurality of output ports each arranged to transmit a WDM signal comprising a plurality of optical wavelength channels for transmission to a desired destination, an optical splitter connected to each of said input transmission ports, an optical combiner connected to each of said output transmission ports, and an individual linking fiber connecting each of said splitters to each of said combiners in said switch, characterized in that said splitters are programmable demultiplexers arranged to route optical wavelength channels in said received WDM signals to desired ones of said second plurality of output ports via an optical path through said combiners.
- 2. The invention defined in claim 1 wherein said combiners are programmable multiplexers.
- 3. The invention defined in claim 1 wherein said combiners are passive multiport couplers.
- 4. The invention defined in claim 1 wherein said programmable demultiplexers each have (a) an input port for receiving a WDM signal from one of said first plurality of input ports, and (b) a plurality of programmable demultiplexer output ports, and wherein each of said programmable demultiplexers is arranged to route selected optical wavelength channels in said WDM signal to a desired one of said programmable demultiplexer output ports.
- 5. An optical cross-connect switch comprising
a first plurality of input ports each arranged to receive a WDM signal comprising a plurality of optical wavelength channels, a second plurality of output ports each arranged to transmit a WDM signal comprising a plurality of optical wavelength channels for transmission to a desired destination, an optical splitter connected to each of said input transmission ports, an optical combiner connected to each of said output transmission ports, and an individual linking fiber connecting each of said splitters to each of said combiners in said switch, characterized in that said combiners are programmable multiplexers arranged to route selected ones of the optical wavelength channels in optical signals applied to the programmable multiplexer input ports via an optical path through said splitters, to one of said second plurality of output ports.
- 6. The invention defined in claim 5 wherein said splitters are passive couplers.
- 7. The invention defined in claim 1 wherein said programmable demultiplexers comprises a plurality of programmable demultiplexers output ports, and wherein at least a first one of said programmable demultiplexer output ports is connected to one of said optical combiners via one of said individual linking fibers and wherein at least another one of said programmable demultiplexer output ports is connected to a drop port terminated at said cross connect.
- 8. The invention defined in claim 7 wherein said programmable demultiplexers are arranged to route a plurality of wavelength channels to said at least another one of said programmable demultiplexer output ports that is connected to a drop demultiplexer arranged to separate said plurality of wavelength channels.
- 9. The invention defined in claim 8 wherein said drop demultiplexer is a programmable demultiplexer.
- 10. The invention defined in claim 2 wherein said programmable multiplexers comprise a plurality of programmable multiplexer input ports, and wherein at least a first one of said programmable multiplexer input ports is connected to one of said programmable demultiplexers via one of said individual linking fibers and wherein at least another one of said programmable multiplexer input ports is received from an add port originating at said cross connect.
- 11. The invention defined in claim 10 wherein a plurality of wavelength channels is multiplexed in a passive combiner before being received by said at least another one of said programmable multiplexer input ports.
- 12. The invention defined in claim 10 wherein a plurality of wavelength channels is multiplexed in a programmable multiplexer before being received by said at least another one of said programmable multiplexer input ports.
- 13. The invention defined in claim 10 wherein said cross connect further includes a concentrator for coupling drop channels to said drop ports and a distributor for coupling add channels to said to said add ports.
- 14. A cross connect for
(i) receiving (a) a at least one input WDM signal cumulatively comprising a first plurality of optical wavelength channels from a respective at least one remote optical communication system and (b) a second plurality of added optical wavelength channels, and (ii) generating (c) at least one output WDM signal cumulatively comprising a third plurality of optical wavelength channels comprising some of the optical wavelength channels in said first and second pluralities of optical wavelength channels, for transmission to a respective at least one remote optical communication system and (d) a fourth plurality of dropped optical wavelength channels contained in said first plurality of optical wavelength channels, for transmission to a local destination, said cross connect comprising
a first plurality of programmable demultiplexers, each arranged to receive said at least one input WDM signal, a first plurality of programmable multiplexers, each arranged to provide said at least one output WDM signal, a second plurality of demultiplexers arranged to provide said fourth plurality of dropped optical wavelength channels, a second plurality of multiplexers arranged to receive said second plurality of added optical wavelength channels, and a plurality of linking fibers arranged to interconnect (a) an output from each one of the programmable demultiplexers in said first plurality of programmable demultiplexers, to the input of one of the demultiplexers in said second plurality of demultiplexers, (b) an output from each one of the programmable demultiplexers in said first plurality of programmable demultiplexers, to the input of one of the a programmable multiplexers in said first plurality of programmable multiplexers, and (c) an output from each one of the multiplexers in said second plurality of multiplexers, to the input of one of the programmable multiplexers in said first plurality of programmable multiplexers.
- 15. The invention defined in claim 2 wherein said programmable multiplexers each have (a) a plurality of programmable multiplexer input ports, and (b) a programmable multiplexer output port for transmitting a WDM signal to one of said second plurality of output ports, and wherein each of said programmable multiplexers is arranged to receive a signal containing multiple optical wavelength channels and to route selected ones of said optical wavelength channels to said programmable multiplexer output port.
- 16. The invention defined in claim 1 wherein said programmable demultiplexers each have (a) a plurality of programmable demultiplexer output ports, and (b) a programmable demultiplexer input port for receiving a WDM signal from one of said first plurality of input ports, and wherein each of said programmable demultiplexers is arranged to distribute said multiple optical wavelength channels to said programmable demultiplexer output ports.
- 17. The invention defined in claim 14 wherein said cross connect further includes
first and second auxiliary cross connect switches, and wherein
said first auxiliary cross connect switch is arranged to concentrate the outputs of said second plurality of demultiplexers to generate said fourth plurality of dropped optical wavelength channels, and said second auxiliary cross connect switch is arranged to distribute said second plurality of added optical wavelength channels for input to said second plurality of multiplexers.
- 18. The invention defined in claim 14 wherein said programmable demultiplexers each have (a) a plurality of programmable demultiplexer output ports, and (b) a programmable demultiplexer input port for receiving said input WDM signal containing multiple optical wavelength channels, and wherein each of said programmable demultiplexers is arranged to independently distribute said multiple optical wavelength channels to said programmable demultiplexer output ports.
- 19. The invention defined in claim 14 wherein said programmable multiplexers each have (a) a plurality of programmable multiplexer input ports for independently receiving multiple optical wavelength channels, and (b) a programmable multiplexer output port, and wherein each of said programmable multiplexers is arranged to combine said multiple optical wavelength channels to generate said WDM signal at said programmable multiplexer output port.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority of Provisional Application Serial No. 60/300,272 which was filed on Jun. 22, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60300272 |
Jun 2001 |
US |