Claims
- 1. A three axis controllable component actuator comprising:
a magnetic stator assembly having permanent magnets disposed therein and having a magnetic yoke assembly with a gap therebetween having magnetic flux therein; a carriage having electromagnetic coils wound around a first central and around a second central axis, the carriage flexibly mounted to the magnetic stator assembly with a portion of the electromagnetic coils disposed within the gap to permit controllable displacement of the carriage along at lease one of the first and the second axis in response to electric current flowing in the electromagnetic coils interacting with the magnetic flux within the gap; and, a linear actuator coupled to the magnetic stator assembly for moving the magnetic stator assembly in a substantially orthogonal direction in relation to the first and second axes.
- 2. A three axis controllable component actuator according to claim 1, wherein the first and the second axis are each substantially orthogonal one to another.
- 3. A three axis controllable component actuator according to claim 1, comprising at least two flexible members, wherein the carriage is mounted to the stator using the at least two flexible members.
- 4. A three axis controllable component actuator according to claim 3, wherein the at least two flexible members suspend the carriage for movement within the gap.
- 5. A three axis controllable component actuator according to claim 1, comprising a component holder for holding the component and for being releasably mounted to the carriage.
- 6. A three axis controllable component actuator according to claim 5, wherein the component holder has a metallic portion, and where the carriage comprises a magnet embedded within an upper portion of the carriage, opposite the magnetic stator assembly, the magnet for magnetically attracting the metallic portion of the component holder for facilitating releasable mounting of the component holder.
- 7. A three axis controllable component actuator according to claim 1, comprising:
a light source for providing light; a reflective portion for receiving light from the light source and for providing reflected light; a detector for receiving the reflected light from the reflective portion and for providing a feedback signal, the reflective portion fixed to the carriage for being displaced with the carriage causing an optical power variation detected on the detector in response thereto; and, a control circuit for receiving the feedback signal and for providing a control signal to at least one of the linear-actuator and the electromagnetic coils in response thereto.
- 8. A three axis controllable component actuator according to claim 7, wherein the control circuit comprises a lookup table for storing a relationship between the magnitude and the polarity of the control signal and the feedback signal.
- 9. A three axis controllable component actuator according to claim 1 wherein the component is an optical component.
- 10. A component actuator comprising:
a first linear actuator having a first stator and a first actuatable shaft, the first actuatable shaft for being displaced in a direction along a first axis and with a distance in proportion to a first control signal having a polarity and a magnitude and applied to the first linear actuator; a first magnet coupled to the first actuatable shaft; and, a carriage magnetically coupled to the first magnet and other than fixedly coupled to the first linear actuator, for, in use, moving along an axis substantially parallel to the first axis in dependence upon the first control signal.
- 11. A component actuator according to claim 10, comprising:
a second linear actuator having a second stator coupled to the first stator and a second actuatable shaft, the second actuatable shaft for being displaced in a direction along a second axis and with a distance in proportion to a second control signal having a polarity and a magnitude and applied to the second linear actuator; a first magnet coupled to the second actuatable shaft; and, a carriage magnetically coupled to the second magnet and other than fixedly coupled to the second linear actuator, for, in use, moving along an axis substantially parallel to the second axis in dependence upon the second control signal.
- 12. A component actuator according to claim 11, comprising:
a third linear actuator having a third stator coupled to the first stator and the second stator and a third actuatable shaft, the third actuatable shaft for being displaced in a direction along a third axis and with a distance in proportion to a third control signal having a polarity and a magnitude and applied to the third linear actuator; a first magnet coupled to the third actuatable shaft; and, a carriage magnetically coupled to the third magnet and other than fixedly coupled to the third linear actuator, for, in use, moving along an axis substantially parallel to the third axis in dependence upon the third control signal.
- 13. A component actuator according to claim 11, wherein the first and the second axes are substantially orthogonal one to another.
- 14. A component actuator according to claim 13, wherein the third axis is substantially orthogonal to the first and the second axes.
- 15. A component actuator according to claim 13 comprising a component holder for holding the component and for being releasably mounted to the carriage.
- 16. A component actuator according to claim 14 wherein the carriage comprises comprising a control circuit, the control circuit for providing at least one of the first control signal and second control signal and third control signal.
- 17. A component actuator according to claim 10 wherein the component is an optical component.
Parent Case Info
[0001] This application claims priority from Provisional Application No. 60/324,545 filed Sep. 26, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60324545 |
Sep 2001 |
US |