Claims
- 1. A dispersion compensation system comprising:
a standard dispersion compensator having an internal input and an internal output; a plurality of trim sections which are interconnectable to achieve different dispersion compensation; and one or more of the plurality operably connected to the internal input and internal output to vary the dispersion compensation of the dispersion compensator system.
- 2. The dispersion compensation system of claim 1 wherein the plurality includes three trim sections.
- 3. The dispersion compensation system of claim 1 wherein the plurality contains at least one positive dispersion compensation trim section.
- 4. The dispersion compensation system of claim 1 wherein the plurality contains at least one negative dispersion compensation trim section.
- 5. The dispersion compensation system of claim 1 wherein the value of each of the trim sections has a different dispersion compensation value.
- 6. The dispersion compensation system of claim 1 wherein the length of the trim sections in the plurality is dictated by the series:
- 7. The dispersion compensation system of claim 1 wherein the plurality is contained in a rigid case.
- 8. The dispersion compensation system of claim 5 wherein the rigid case is curved to allow ease of interconnection of the trim sections.
- 9. The dispersion compensation system of claim 1 wherein the standard dispersion compensator will correct for 70 to 100 percent of the required dispersion in a fiber span.
- 10. The dispersion compensation system of claim 1 wherein the standard dispersion compensator will correct for 100 to 130 percent of the required dispersion in a fiber span.
- 11. A variable dispersion compensation system for a fiber span comprising:
a standard dispersion compensator having an internal input and an internal output, operatively connected to the fiber span, and at least two trimmers each having an input and an output allowing interconnection between the inputs, outputs, internal input and internal output to achieve varying values of dispersion compensation in the dispersion compensation system.
- 12. The dispersion compensation system of claim 11 wherein the plurality includes three trim sections.
- 13. The dispersion compensation system of claim 11 wherein the value of each of the three trim sections has a different dispersion compensation value.
- 14. The dispersion compensation system of claim 11 wherein the length of the trim sections in the plurality is dictated by the series:
- 15. The dispersion compensation system of claim 11 wherein the plurality is contained in a rigid case.
- 16. The dispersion compensation system of claim 15 wherein the rigid case is curved to allow ease of interconnection of the trim sections.
- 17. The dispersion compensation system of claim 11 wherein the standard dispersion compensator will correct for 70 to 100 percent of the required dispersion in a fiber span.
- 18. The dispersion compensation system of claim 11 wherein the standard dispersion compensator will correct for 100 to 130 percent of the required dispersion in a fiber span.
- 19. The variable dispersion compensation system of claim 111 wherein each input and output of the at least two trimmers is operatively attached to a means for electronically sensing the interconnection between the inputs and outputs.
- 20. The variable dispersion compensation system of claim 11 wherein means for electronically sensing includes a resistor ladder network.
- 21. A remotely detectable variable dispersion compensation module comprising:
a first spool of optical fiber having a first input end and a first output end; a second spool of optical fiber having a second input end and a second output end; a third spool of optical fiber having a third input end and a third output end; a voltage dividing resistance ladder having a first, second, third, fourth, fifth and sixth resistance level; a connection between the first input end and the first level, the first output end and the second level, the second input end and the third level, the second output end and the fourth level, the third input end and the fifth level, and the third output end and the sixth level; and an interconnection between at least two of the first input end, first output end, second input end, second output end, third input end and third output end whereby the dispersion compensation value of the module is varied and a total connection resistance of the voltage dividing resistance ladder is set.
- 22. The module of claim 21 wherein each level further comprises a voltage readout position.
- 23. The module of claim 21 further comprising a DC voltage source and wherein the first level is a ground reference.
- 24. The module of claim 21 wherein the interconnection includes interconnection with a standard dispersion compensation module connected to an optical fiber.
- 25. The module of claim 21 wherein the standard dispersion compensation module is between 70 and 100 percent.
- 26. The module of claim 21 wherein the standard dispersion compensation module is between 100 and 130 percent.
- 27. A dispersion compensation trimmer comprising:
two or more trim sections; and an optical switch for making interconnection between the trim sections.
- 28. The dispersion compensation trimmer of claim 27 wherein the state of the optical switch is readable.
- 29 The dispersion compensation trimmer of claim 27 wherein the optical switch is an optomechanical switch.
- 30. The dispersion compensation trimmer of claim 27 wherein the optical switch can be remotely activated.
- 31. A variable dispersion compensation system comprising:
a standard dispersion compensator having an internal input and an internal output; a plurality of adjacent fiber trimmers; and a connection means for logically interconnecting the fiber trimmers with the internal input and the internal output to vary the dispersion compensation of the system.
- 32. The variable dispersion compensation system of claim 31 wherein the connection means includes at least one optomechanical switch.
- 33. The variable dispersion compensation system of claim 31 wherein the connection means is an optical switching device.
- 34. The variable dispersion compensation system of claim 31 wherein the adjacent fiber trimmers contain different lengths of fiber.
- 35. The variable dispersion compensation system of claim 31 wherein the adjacent fiber trimmers have varied length of fibers according to the series:
- 36. The variable dispersion compensation system of claim 31 wherein the standard dispersion compensator will connect for 70 to 100 percent of the required dispersion.
- 37. The variable dispersion compensation system of claim 31 wherein the standard dispersion compensator will connect for 100 to 130 percent of the required dispersion.
- 38. The variable dispersion compensation system of claim 31 wherein the connection means can be remotely activated.
- 39. The variable dispersion compensation system of claim 31 wherein the connection means can be remotely polled to determine a status of interconnection.
- 40. A variable compensation system comprising:
a standard dispersion compensator having an internal input and an internal output; a first trimmer having a first input end and a first output end; a second trimmer having a second input end and a second output end; a third trimmer having a third input end and a fourth input end; the first input end in a first optical path with the internal input; the first output end in a second optical path with the second input end; the second output end in a third optical path with the third input end; the third output end in a fourth optical path with the internal output; a first optomechanical switch in the first optical path having in and out positions; a second optomechanical switch in the second optical path having in and out positions; a third optomechanical switch in the third optical path having in and out positions; a fourth optomechanical switch in the fourth optical path having in and out positions; the first optomechanical switch in its out position allowing optical communication between the internal input and the first input end; the first optomechanical switch in its in position allowing optical communication between the internal input and the in positions of the second, third and fourth optomechanical switches; the second optomechanical switch in its out position allowing optical communication between the first output end and the second input end and allowing optical communication from the first optomechanical switch in its in position to reach the in positions of the third and fourth optomechanical switches; the second optomechanical switch in its in position allowing communication from the first optomechanical switch in its in position to reach the second input end and allowing optical communication between the first output end and the in positions of the third and fourth optomechanical switches; the third optomechanical switch in its out position allowing optical communication between the second output end and the third input end and allowing optical communication from the first optomechanical switch in its in position and from the second optomechanical switch in its in position to reach the in position of the fourth optomechanical switch; the third optomechanical switch in its in position allowing communication from the first and second optomechanical switches in their in positions to reach the third input end and allowing communication between the second output end and the in position of the fourth optomechanical switch; the fourth optomechanical switch in its out position allowing optical communication between the third output end and the internal output; and when the fourth optomechanical switch is in its in position, allowing communication from the in positions of the first, second and third optomechanical switches to reach the internal input.
- 41. The variable dispersion compensation system of claim 40 wherein the standard dispersion compensator will connect for 70 to 100 percent of the required dispersion.
- 42. The variable dispersion compensation system of claim 40 wherein the standard dispersion compensator will connect for 100 to 130 percent of the required dispersion.
- 43. The variable dispersion compensation system of claim 40 wherein the positions of the first, second, third and fourth optomechanical switches are electronically readable.
- 44. The variable dispersion compensation system of claim 40 wherein the first, second, third and fourth optomechanical switches can be remotely activated.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to Provisional Application Serial No. 60/385,948 entitled “Configurable Dispersion Compensation Trimmer with Automatic Detection of Configuration”, by Guo, et al., filed Jun. 4, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60385948 |
Jun 2002 |
US |