Claims
- 1. A controller for a sampled grating distributed Bragg reflector (SGDBR) laser comprising:
a memory storing a table of settings representing a control surface, each setting corresponding to a separate operating point of the SGDBR laser; a first mirror current controller; and a second mirror current controller; wherein the first mirror controller and the second mirror current controller respectively control a first mirror current and a second mirror current about an estimated extremum point of the control surface to substantially maintain alignment between each of a first mirror and a second mirror, and an associated cavity mode.
- 2. The controller of claim 1, wherein each operating point comprises a first mirror current value, a second mirror current value, a phase current value and a gain current value.
- 3. The controller of claim 1, wherein the control surface is a gain voltage surface, a gain current surface, or a phase current surface.
- 4. The controller of claim 1, wherein the extremum is estimated using a least mean squares estimator.
- 5. The controller of claim 1, wherein the first mirror current and the second mirror current are locked at a substantially fixed distance from the extremum of the control surface.
- 6. The controller of claim 1, wherein the open loop controller is implemented in a digital signal processor.
- 7. The controller of claim 6, further comprising a power controller and a wavelength controller.
- 8. The controller of claim 7, wherein the power controller is comprised of adjusting the current to the gain section and the wavelength controller is comprised of adjusting the current to the phase section with error currents from the digital signal processor derived from signals from an external locker.
- 9. The controller of claim 7, wherein the power controller is comprised of adjusting the current to an integrated SOA with an error current from the digital signal processor derived from signals from an external locker.
- 10. The controller of claim 7, wherein the digital signal processor dithers the first mirror current and the second mirror current while operating under the power controller and the wavelength controller, and wherein the digital signal processor records a gain current and a phase current when the power and wavelength controllers are within a tolerance.
- 11. The controller of claim 7, wherein the digital signal processor dithers the first mirror current and the second mirror current while operating under the power controller and the wavelength controller, and wherein the digital signal processor records a gain voltage when the power and wavelength controllers are within a tolerance.
- 12. The controller of claim 6, wherein the open loop controller estimates a first and a second fit to the control surface as a function of the first mirror current and the second mirror current, respectively.
- 13. The controller of claim 6, wherein the control surface comprises a quadratic control surface and the open loop controller estimates a five-parameter fit to the control surface as a function of the first mirror current and the second mirror current.
- 14. A method of controlling a sampled grating distributed Bragg reflector (SGDBR) laser comprising the steps of:
providing a table of settings representing a control surface, each setting corresponding to a separate operating point of the SGDBR laser; controlling a first mirror current based on the control surface; controlling a second mirror current based on the control surface; and generating a laser output of the SGDBR laser; wherein the first mirror and the second mirror current are respectively controlled about an estimated extremum point of the control surface to substantially maintain alignment between each of a first mirror and a second mirror, and an associated cavity mode to produce the laser output.
- 15. The method of claim 14, wherein each operating point comprises a first mirror current value, a second mirror current value, a phase current value and a gain current value.
- 16. The method of claim 14, wherein the control surface is a gain voltage surface, a gain current surface, or a phase current surface.
- 17. The method of claim 14, wherein the extremum is estimated using a least mean squares estimator.
- 18. The method of claim 14, wherein the first mirror current and the second mirror current are locked at a substantially fixed distance from the extremum of the control surface.
- 19. The method of claim 14, wherein the open loop controller is implemented in a digital signal processor.
- 20. The method of claim 19, further comprising a controlling power and controlling wavelength of the laser output.
- 21. The method of claim 20, wherein the controlling power is accomplished with an error current to the gain section.
- 22. The method of claim 20, wherein the controlling power is accomplished with a error current to the SOA section.
- 23. The method of claim 20, wherein the digital signal processor dithers the first mirror current and the second mirror current while controlling the power and the wavelength of the laser output, and wherein the digital signal processor records a gain current and a phase current when the power and wavelength controllers are within a tolerance.
- 24. The method of claim 20, wherein the digital signal processor dithers the first mirror current and the second mirror current while controlling the power and the wavelength of the laser output, and wherein the digital signal processor records a gain voltage when the power and wavelength controllers are within a tolerance.
- 25. The method of claim 19, further comprising estimating a first and a second fit to the control surface as a function of the first mirror current and the second mirror current, respectively.
- 26. The method of claim 19, wherein the control surface comprises a quadratic control surface and further comprising estimating a five-parameter fit to the control surface as a function of the first mirror current and the second mirror current.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit under 35 U.S.C. §119(e) of the following co-pending and commonly-assigned U.S. patent application which are incorporated by reference herein:
[0002] Provisional Application Serial No. 60/291,375, filed May 15, 2001, by Larry A. Coldren and Paul F. Crowder, entitled “SGDBR LASER CONTROLLER,” attorneys' docket number 122.11-US-P1; and
[0003] Provisional Application Serial No.60/291,481, filed May 15, 2001, by Larry A. Coldren and Michael C. Larson, entitled “CONTROLLER CALIBRATION FOR SMALL FORM FACTOR SGDBR LASER,” with attorneys' docket number 122.10-US-P1.
[0004] This application is a continuation-in-part patent application of the following co-pending and commonly-assigned U.S. patent applications which are all incorporated by reference herein:
[0005] Utility application Ser. No.09/895,848, filed Jun. 29, 2001, by Paul F. Crowder, entitled “OPEN LOOP CONTROL OF SGDBR LASERS,” attorneys' docket number 122.4US-U1, which claims the benefit under 35 U.S.C. ∅119(e) of Provisional Application Serial No. 60/215,739, filed Jun. 29, 2000, by Paul F. Crowder, entitled “OPEN LOOP CONTROL OF SGDBR LASERS,” attorneys' docket number 122.4-US-P1;
[0006] Utility application Ser. No.09/895,598, filed Jun. 29, 2001, by Paul F. Crowder, entitled “POWER AND WAVELENGTH CONTROL OF SAMPLED GRATING DISTRIBUTED BRAGG REFLECTOR LASERS,” attorneys' docket number 122.5-US-U1, which claims the benefit under 35 U.S.C. §119(e) of Provisional Application Serial No. 60/215,739, filed Jun. 29, 2000, by Paul F. Crowder, entitled “POWER AND WAVELENGTH CONTROL OF SGDBR LASERS,” attorneys' docket number 122.5-US-P1; and
[0007] Utility application Ser. No.09/895,303, filed on Jun. 29, 2001, by Gregory A. Fish and Larry A. Coldren, entitled “GAIN VOLTAGE CONTROL OF SAMPLED GRATING DISTRIBUTED BRAGG REFLECTOR LASERS,” attorneys' docket number 122.6-US-U1, which claims the benefit under 35 U.S.C. §119(e) of Provisional Application Serial No. 60/215,742, filed Jun. 29, 2000, by Paul F. Crowder and Larry A. Coldren, entitled “GAIN VOLTAGE CONTROL OF SGDBR LASERS,” attorneys' docket number 122.6-US-P1.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/15287 |
5/15/2002 |
WO |
|