Claims
- 1. A tunable optical device comprising:
a compression tuned optical structure, responsive to an optical signal, and further responsive to a displacement sensor signal, for providing a compression tuned optical structure signal containing information about a change in an optical characteristic of the compression tuned optical structure, and for further providing an excitation caused by a change in a displacement of the compression tuned optical structure; and a optical displacement sensor, responsive to the excitation, including a grating for providing the displacement sensor signal containing information about the change in the displacement of the compression tuned optical structure.
- 2. A tunable optical device comprising:
a compression tuned optical structure, responsive to an optical signal, and further responsive to a sensor signal, for providing a compression tuned optical structure signal containing information about a change in an optical characteristic of the compression tuned optical structure, and for further providing an excitation caused by a change in a physical parameter in relation to the compression tuned optical structure; and a sensor, responsive to the excitation, including a grating for providing the sensor signal containing information about the change in the physical parameter in relation to the compression tuned optical structure.
- 3. A tunable optical device according to claim 20, wherein the sensor senses a displacement in relation to the compression tuned optical structure.
- 4. A method for tuning a wavelength of a grating comprising the steps of:
obtaining a compression tunable element having a Bragg grating therein, the compression tunable element having a capacitor across the Bragg grating, the capactitor having plates and a gap in between that is related to the wavelength of the grating; measuring a reflective wavelength of a second Bragg grating; and compressing the compression tunable element to set a desired grating wavelength based on the capacitive value.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. patent application, Ser. No. 09/519,802, filed Mar. 6, 2000, which is incorporated by reference in its entirety.
[0002] Also, copending U.S. patent applications, Ser. No. (CiDRA Docket No. CC-000036B), entitled “Bragg Grating Pressure Sensor”, Ser. No. (CiDRA Docket No. CC-0078B), entitled “Tube-Encased Fiber Grating”, and Ser. No. (CiDRA Docket No. CC-0230), entitled “Large Diameter Optical Waveguide, Grating and Laser” all filed Dec. 6, 1999, and U.S. patent applications, Ser. No. (CiDRA Docket No. CC-0254), entitled “Tunable External Cavity Semiconductor Laser Incorporating a Tunable Bragg Grating” filed Nov. 3, 2000; U.S. patent application Ser. No. (CiDRA Docket No. CC-0234A), entitled “Temperature Compensated Optical Device”, filed Oct. 30, 2000, U.S. patent application Ser. No. (CiDRA Docket No. CC-0243), entitled “Large Diameter Multi-Core Waveguide”, filed Mar. 16, 2001, and U.S. patent application Ser. No. (CiDRA Docket No. CC-0129D), entitled “Compression-Tuned Bragg Grating-Based Laser”, filed contemporaneously herewith, contains subject matter related to that disclosed herein, and which are incorporated by reference in their entirety.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09519802 |
Mar 2000 |
US |
Child |
09950509 |
Sep 2001 |
US |