Claims
- 1. An actuation mechanism for tuning an optical filter comprising:
a slide for translating between a first and second position in a direction of translation, the slide having an engagement surface wherein the engagement surface is sloped relative to the direction of translation; a drive mechanism coupled to the slide for translating the slide between the first and second position in response to a drive signal; and a displacement arm having a first end and a second end, one portion of the second end engaging the engagement surface of the slide and another portion of the second end engaging the optical filter, whereby translation of the slide between the first and second position displaces the another portion of the second end of the displacement arm in a direction of displacement to tune the optical filter.
- 2. The actuation mechanism of claim 1, wherein the slide includes a wedge mounted to a platform, the wedge having the engagement surface.
- 3. The actuation mechanism of claim 1, wherein the drive mechanism comprises a leadscrew coupled to a motor for driving an arm, which is coupled to the slide, in the direction of translation.
- 4. The actuation mechanism of claim 1, further comprising a controller for providing the drive signal in response to a command signal representative of the desired displacement of the second end of the displacement arm.
- 5. The actuation mechanism of claim 1, wherein the displacement arm is flexible to permit movement of the second end of the displacement arm relative to the first end.
- 6. The actuation mechanism of claim 1, wherein the displacement arm includes a flexure hinge.
- 7. The actuation mechanism of claim 1, wherein the first end of the displacement arm is pivotally mounted.
- 8. The actuation mechanism of claim 1, wherein the hinge is disposed along a linear line that is substantially perpendicular to the direction of displacement.
- 9. The actuation mechanism of claim 1, wherein the displacement arm includes a bearing mounted to the second end of the displacement arm for engaging the engagement surface of the slide.
- 10. The actuation mechanism of claim 1, wherein the displacement arm includes a pad mounted to the second end of the displacement arm for contacting the optical filter.
- 11. The actuation mechanism of claim 1, wherein the leadscrew is coated with a polymeric material.
- 12. A tunable optical filter comprising:
a tunable optical filter unit for receiving an optical input light comprising a plurality of optical channels, the optical filter including an optical waveguide having at least one reflection element for reflecting at least one channel and passing the remaining channels; and an actuator mechanism for straining the optical waveguide to reflect the desired at least one channel; the actuator mechanism comprising:
a slide for translating between a first and second position in a direction of translation, the slide having an engagement surface wherein the engagement surface is sloped relative to the direction of translation; a drive mechanism coupled to the slide for translating the slide between the first and second position in response to a drive signal; and a displacement arm having a first end and a second end, one portion of the second end engaging the engagement surface of the slide and another portion of the second end engaging the optical filter, whereby translation of the slide between the first and second position displaces the another portion of the second end of the displacement arm in a direction of displacement to strain the optical waveguide.
- 13. The optical filter of claim 12, wherein the tunable optical filter unit is a compression-tuned.
- 14. The optical filter of claim 12, wherein the tunable optical filter unit is tension-tuned.
- 15. The optical filter of claim 12, wherein the optical waveguide is an optical fiber.
- 16. The optical filter of claim 12, wherein the optical waveguide is a bulk waveguide.
- 17. The optical filter of claim 12, wherein drive mechanism comprises a leadscrew coupled to a motor for driving an arm, which is coupled to the slide assembly, in the direction of translation.
- 18. The optical filter of claim 12, further comprising a controller for providing the drive signal in response to a command signal representative of the desired displacement of the displacement arm.
- 19. The optical filter of claim 12, wherein the displacement arm is flexible to permit movement of the second end of the displacement arm relative to the first end.
- 20. The optical filter of claim 12, wherein the displacement arm includes a bearing mounted to the second end of the displacement arm for engaging the engagement surface of the slide.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Co-pending U.S. patent application Ser. No. 09/648,525, entitled “Optical Filter Having A Shaped Filter Function”, filed Aug. 26, 2000; and co-pending U.S. patent applications Ser. No. ______ (CiDRA Docket No. CC-0274A), entitled “Wide Range Tunable Optical Filter”, filed contemporaneously; contain subject matter related to that disclosed herein, and which are incorporated herein by reference in their entirety.