Claims
- 1. An optical system for decoding, switching, demultiplexing, and routing of optical encoded data symbols from multiple inputs to multiple outputs, comprising:
a) a plurality of demultiplexing systems, each of said demultiplexing systems includes an input and a plurality of outputs, each of said demultiplexing systems is a system for performing a function selected from a group of functions including decoding, switching, demultiplexing, and routing for producing decoded signals at said outputs in response to the encoded data symbols received at said input; and b) a coupling mechanism for coupling said outputs of said plurality of demultiplexing systems to allow each of said encoded data symbols received by said input of each of said plurality of demultiplexing systems to produce said decoded signals at said outputs of said plurality of demultiplexing systems.
- 2. The system of claim 1 wherein said encoded data symbols arranged to allow simultaneous propagation of more than one of said decoded signals in more than one of said outputs.
- 3. The system of claim 2 wherein said encoded data symbols arranged to avoid simultaneous propagation of more than one of said decoded signals in one of said outputs.
- 4. The system of claim 1 wherein said system is a cross connection box.
- 5. The system of claim 1 wherein said system is data routing cross connection box.
- 6. The system of claim 1 wherein said system produced in a medium selected from a group of media including open space, radiation guides, fiber optics, waveguides, and planar waveguides fabricated on a chip.
- 7. An optical system for decoding, switching, demultiplexing, and routing of optical encoded data symbols from multiple inputs to multiple outputs, comprising:
a) a plurality of demultiplexing systems, each of said demultiplexing system comprising:
i. an input for receiving the encoded data symbols; ii. a plurality of optical paths having first and second terminals; iii. a splitting mechanism for directing said encoded data symbols from said input to each of said first terminals; iv. a plurality of decoding devices for producing decoded signals in response to said encoded data symbols; and v. each of said optical paths includes, between said first and second terminals, at least one of said decoding devices to produce one of said decoded signals at one of said second terminals in response to one of said encoded data symbols; and b) a coupling mechanism for coupling said second terminals of said plurality of demultiplexing systems to allow each of said encoded data symbols received by said input of each of said plurality of demultiplexing systems to produce said decoded signals at said second terminals of said plurality of demultiplexing systems.
- 8. The system of claim 7 wherein said coupling mechanism optically couples, in parallel, said second terminals of one demultiplexing system of said plurality of demultiplexing systems with said second terminals of at least one another demultiplexing system of said plurality of demultiplexing systems.
- 9. The system of claim 8 wherein each of said second terminals in a group of said second terminals optically coupled together in parallel connected to similar said at lest one of said decoding devices.
- 10. The system of claim 7 wherein said coupling mechanism optically couples each of said second terminals of one of said plurality of demultiplexing systems with one of said second terminals of another demultiplexing system of said plurality of demultiplexing system.
- 11. The system of claim 10 wherein each of said second terminals in a group of said second terminals optically coupled together in parallel connected to similar said at lest one of said decoding devices.
- 12. The system of claim 7 wherein said system produced in a medium selected from a group of media including open space, radiation guides, fiber optics, waveguides, and planar waveguides fabricated on a chip.
- 13. The system of claim 7 wherein said system is a part of a DWDM optical communication system.
- 14. The system of claim 7 wherein said decoding devices further include threshold mechanisms.
- 15. The system of claim 14 wherein said threshold mechanisms are adjustable.
- 16. The system of claim 14 wherein said threshold mechanisms include optical sensors and electronic threshold mechanisms.
- 17. The system of claim 14 wherein said threshold mechanisms include optical threshold mechanisms.
- 18. An optical system for decoding, switching, demultiplexing, and routing of optical encoded data symbols from multiple inputs to multiple outputs, comprising:
a) a plurality of demultiplexing systems, each of said demultiplexing system comprising:
i. an input for receiving the encoded data symbols; ii. a plurality of radiation guides having first and second terminals; iii. a splitting mechanism for directing said encoded data symbols from said input to each of said first terminals; iv. a plurality of decoding devices, each of said decoding devices produces one of a plurality of decoded signals in response to one of said encoded data symbols; and v. each of said radiation guides includes, between said first and second terminals, at least one of said decoding devices to produce one of said plurality of decoded signals at one of said second terminals in response to one of said encoded data symbols; and b) a coupling mechanism for coupling said second terminals of said plurality of demultiplexing systems to allow said encoded data symbols received by said input of each of said plurality of demultiplexing systems to produce said decoded signals at said second terminals of said plurality of demultiplexing systems.
- 19. The system of claim 18 wherein said system is a part of a DWDM optical communication system.
- 20. An optical system for decoding, switching, demultiplexing, and routing of optical encoded data symbols from multiple inputs to multiple outputs, comprising:
a) a plurality of demultiplexing systems, each of said demultiplexing system comprising:
i. an input for receiving the encoded data symbols; ii. a first plurality of radiation guides having first and second terminals; iii. a first splitting mechanism for directing said encoded data symbols from said input to each of said first terminals of said radiation guides of said first plurality of radiation guides; iv. a plurality of decoding devices each of said decoding devices includes a second plurality of radiation guides, each of said radiation guides of said second plurality of radiation guides associated with one of the ports of a second splitting mechanism and with one of the ports of a combining mechanism, said decoding devices arranged for producing decoded signals in response to said encoded data symbols; and v. each of said optical paths includes, between said first and second terminals, at least one of said decoding devices to produce one of said decoded signals at one of said second terminals in response to one of said encoded data symbols; and b) a coupling mechanism for coupling said second terminals of said plurality of demultiplexing systems to allow each of said encoded data symbols received by said input of each of said plurality of demultiplexing systems to produce said decoded signals at said second terminals of said plurality of demultiplexing systems.
REFERENCE TO OTHER APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/405,697, filed Aug. 22, 2002, entitled “Streaming signal control system for digital communications”, and of U.S. Provisional Patent Application Serial No. 60/420,112, filed Oct. 21, 2002, entitled “Streaming signal control system for digital communications”.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60405697 |
Aug 2002 |
US |
|
60420112 |
Oct 2002 |
US |