Claims
- 1. An optical switch comprising:a substrate having a first optical waveguide having an output surface and a second optical waveguide having an input surface, the input surface and the output surface being separated by a cavity; an optical switch element positioned within the cavity and moveable between a first position and a second position; and a spring mounted actuator that moves the optical switch element between the first position and the second position to control transmission of light between the first optical waveguide and the second optical waveguide.
- 2. The optical switch of claim 1 further comprising a third optical waveguide coupled to the cavity such that the switch element couples light from the first waveguide in the first position.
- 3. The optical switch of claim 1 further comprising an array of input waveguides and an array of output waveguides, each pair of input and output waveguides having an optical switch element.
- 4. The optical switch of claim 1 wherein the substrate comprises a silica wafer.
- 5. The optical switch of claim 1 wherein the optical switch element comprises a reflector.
- 6. The optical switch of claim 1 wherein the spring comprises a plurality of spring elements attached at a first end to the substrate and at a second end to a moveable beam.
- 7. The optical switch of claim 1 wherein the spring has a stiffness between 1.0 and 5.0 N/m.
- 8. The optical switch of claim 1 wherein the switch element moves from the first position to the second position in less than 1 ms.
- 9. The optical switch element of claim 1 further comprising a control circuit that actuates movement of the switch, the circuit operating at a voltage in a range between 50 to 300V.
RELATED APPLICATIONS
This application is a divisional of application Ser. No. 09/645,203 filed Aug. 25, 2000 U.S. Pat. No 6,411,754. The entire teachings of the above-referenced application are incorporated herein by reference.
US Referenced Citations (12)
Foreign Referenced Citations (1)
| Number |
Date |
Country |
| WO 0025160 |
May 2000 |
WO |
Non-Patent Literature Citations (2)
| Entry |
| Cros, F. and Allen, M.G., “High Aspect Ratio Structures Achieved By Sacrifical Conformal Coating,” Solid-State Sensor and Actuator Workshop, Hilton Head Island, South Carolina, Jun. 8-11, 1998. |
| Hui, E.E., et al., “Carbonized Parylene As A Conformal Sacrificial Layer,” Solid-State Sensor and Actuator Workshop, Hilton Head Island, South Carolina, Jun. 8-11, 1998. |