Claims
- 1. An optical positioning device, comprisingat least one actuator for generating a mechanical movement, a moveable optical element, and a unitary assembly having a first connection to an actuator, a second connection to the optical element, and a third connection to a support housing, the unitary assembly imparting amplified actuator motion in two orthogonal directions to the optical element relative to the support housing, in response to motion of the actuator.
- 2. An optical positioning device as in claim 1, wherein the motion of the optical element causes steering of an optical beam.
- 3. An optical positioning device as in claim 1, wherein the motion of the optical element causes formation and steering of an optical beam.
- 4. An optical positioning device according to claim 1, wherein the optical component includes a component selected from the group consisting of a fiber, a lens, a mirror, a collimator, a prism, a filter, and a grating.
- 5. An optical positioning device according to claim 1, wherein the unitary assembly comprises a compliant coupling between any combination of components selected from the group consisting of the actuator, the optical component, and support housing.
- 6. An optical positioning device according to claim 1, wherein the actuator includes an actuator selected from the group consisting of an electrostrictive actuator, a magnetostrictive actuator, an electrostatic actuator, a thermal actuator, an electromagnetic actuator, a shape memory alloy, and an electroactive polymer.
- 7. An optical positioning device according to claim 1, whereinthe unitary assembly includes a compliant coupling selected from the group consisting a bending flexure, a torsional flexure, an annular flexure, a lever arm, a rigid link, and a gimbal.
- 8. An optical positioning device according to claim 1, wherein the unitary assembly comprises a plurality of lever arms.
- 9. An optical positioning device according to claim 8, wherein with the first connection is disposed between the second and third connection so as to form a stroke amplifier that imparts to the second connection the amplifier linear actuator motion.
- 10. An optical positioning device according to claim 1, wherein the unitary assembly is formed from at least one layer.
- 11. An optical positioning device according to claim 1, wherein the unitary assembly is formed of a substrate.
- 12. An optical positioning device according to claim 1, wherein the unitary assembly comprises at least one microfabricated element.
- 13. An optical positioning device according to claim 1, wherein the actuator comprises a piezoelectric actuator.
- 14. An optical positioning device according to claim 1, wherein the unitary assembly comprises a membrane.
- 15. An optical switch with an optical positioning device, the optical positioning device comprisingat least one actuator for generating a mechanical movement, a moveable optical component, and a unitary assembly having a first connection to an actuator, a second connection to the optical component, and a third connection to a support housing, the unitary assembly imparting amplified actuator motion to the optical element relative to the support housing in two orthogonal directions, in response to motion of the actuator.
- 16. An optical positioning device according to claim 15, wherein the actuator comprises a piezoelectric actuator.
- 17. An optical positioning device according to claim 15, wherein the unitary assembly comprises a membrane.
- 18. An optical positioning device of the type that employs an actuator for moving an optical component, comprisinga unitary assembly having a first connection to an actuator, a second connection to the optical component, and a third connection to a support housing, the unitary assembly imparting amplified actuator motion to the optical element relative to the support housing in two orthogonal directions, in response to motion of the actuator.
- 19. An optical positioning device according to claim 18, wherein the actuator comprises a piezoelectric actuator.
- 20. An optical positioning device according to claim 18, wherein the unitary assembly comprises a membrane.
- 21. A unitary assembly for use in an optical positioning device that employs at least one actuator for imparting amplified actuator motion to an optical component in two orthogonal directions, comprisinga first connection to an actuator, a second connection to the optical component, and a third connection to a support housing, the unitary assembly imparting the amplified actuator motion to the optical element relative to the support housing, in response to motion of the actuator.
- 22. An optical positioning device according to claim 21, wherein the actuator comprises a piezoelectric actuator.
- 23. An optical positioning device according to claim 21, wherein the unitary assembly comprises a membrane.
CROSS-REFERENCE TO OTHER PATENT APPLICATIONS
This application claims the benefit of U.S. provisional Applications No. 60/326,775 and 60/326,780, having a common filing date of Oct. 3, 2001, and of U.S. provisional Applications No. 60/365,743, 60/365,457, and 60/365,739, having a common filing date of Mar. 18, 2002, the subject matter of which is incorporated herein in its entirety.
US Referenced Citations (15)
Foreign Referenced Citations (13)
| Number |
Date |
Country |
| 19706053 |
Aug 1998 |
DE |
| 59024804 |
Feb 1984 |
JP |
| 4275519 |
Oct 1992 |
JP |
| 06-228428 |
Apr 1994 |
JP |
| 6222292 |
Aug 1994 |
JP |
| 3129854 |
Jan 2001 |
JP |
| 2002139684 |
May 2002 |
JP |
| WO-9966354 |
Jun 1999 |
WO |
| WO-0076106 |
Jun 2000 |
WO |
| WO-0201274 |
Jun 2000 |
WO |
| WO-0150176 |
Jan 2001 |
WO |
| WO 0201274 |
Jan 2002 |
WO |
| WO-0246825 |
Jun 2002 |
WO |
Non-Patent Literature Citations (3)
| Entry |
| Claeyssen et al., “Mechanisms Based on Piezo Actuators,” Smart Structures and Materials 2001, pp. 225-233. |
| Glockner et al., “Piezoelectrically Drive Micro-Optic Fiber Switches,” Society of Photo-Optical Instrumentation Engineers, Apr. 1998, pp. 1229-1234. |
| Ozawa et al., “High-Speed Measuring Equipment of Fiber Core Position of Optical Fiber Array Using Piezo Actuator,” IEEE International Conference on Robotics and Automation, 1995, pp. 672-678. |
Provisional Applications (5)
|
Number |
Date |
Country |
|
60/365743 |
Mar 2002 |
US |
|
60/365457 |
Mar 2002 |
US |
|
60/365739 |
Mar 2002 |
US |
|
60/326775 |
Oct 2001 |
US |
|
60/326780 |
Oct 2001 |
US |