Claims
- 1. An optical switch device for redirecting at least a portion of a beam of light traveling in free space along a first direction to a second direction different from the first direction, comprising:
a base member; a reflective panel pivotally connected to the base member and unbiasedly movable between a reflective state wherein the reflective panel is disposed to redirect the beam of light from the first direction to the second direction and a non-reflective state wherein the reflective panel is disposed to permit the beam of light to travel along the first direction; and an actuator connected to the base member and the reflective panel and operative to cause the reflective panel to move to and between the reflective state and the non-reflective state.
- 2. An optical switch device according to claim 1, wherein the reflective panel includes a first surface and a second surface disposed opposite the first surface, the first surface being reflective.
- 3. An optical switch device according to claim 2, wherein the second surface is reflective.
- 4. An optical switch device according to claim 1, wherein the reflective panel is fabricated from a material being partially reflective and partially transparent whereby, when the reflective panel is disposed in the reflective state, a portion of the beam of light is redirected to the second direction while a remaining portion of the beam of light continues in the first direction.
- 5. An optical switch device according to claim 1, wherein the reflective panel includes at least one hinge pin member and at least one hinge pin connecting member disposed apart from one another and connected to an edge portion of the reflective panel, the at least one hinge pin connecting member projecting outwardly from the edge portion of the reflective panel for mounting the at least one hinge pin member between the at least one hinge pin connecting member.
- 6. An optical switch device according to claim 5, further comprising a staple element having a channel sized to receive the at least one hinge pin member, the staple element connected to the base member with the at least one hinge pin member disposed within the channel to provide pivotal movement of the reflective panel about a pivot axis extending through the at least one hinge pin member.
- 7. An optical switch device according to claim 6, wherein the staple element and the at least one hinge pin member are disposed in close proximity to each another in a manner to permit the reflective panel to freely pivot about the pivot axis without interference from the staple element.
- 8. An optical switch device according to claim 1; wherein the actuator includes a hinge assembly and a translation plate, the hinge assembly having at least one connecting rod with a first end of the connecting rod pivotally connected to the reflective panel and an opposite second end pivotally connected to the translation plate, the translation plate slidably connected to the base member and movable between a first position wherein the reflective panel is in the reflective state and a second position wherein the reflective panel in the non-reflective state.
- 9. An optical switch device according to claim 8, wherein the actuator includes one of a scratch drive actuator mechanism and a comb drive mechanism, a respective one of the scratch drive actuator mechanism and the comb drive mechanism being connected to the translation plate and operative in conjunction with the base member to cause the translation plate to move to at least the first position.
- 10. An optical switch device according to claim 9, wherein the respective one of the scratch drive actuator mechanism and the comb drive mechanism causes the translation plate to move to the second position.
- 11. An optical switch device according to claim 9, wherein the actuator includes a spring element connected to and between the base member and the translation plate and operative to cause the translation plate to move from the first position to the second position.
- 12. An optical switch device according to claim 8, wherein the translation plate includes at least a first channel and a second channel and wherein the actuator includes a first driving pin and a second driving pin, the first driving pin sized for slidable engagement with the first channel and the second driving pin sized for slidable engagement with the second channel whereby the first driving pin slidably engages the first channel while the second driving pin retracts from the second channel so that the translation plate moves to the first position with the second driving pin being positioned offset relative to the second channel and the second driving pin slidably engages the second channel while the first driving pin retracts from the first channel so that the translation plate moves to the second position with the first driving pin being positioned offset relative to the first channel.
- 13. An optical switch device for reflecting at least one beam of light, comprising:
a base member; reflective means connected to the base member and unbiasedly movable between a reflective state for reflecting the at least one beam of light and a non-reflective state; and actuator means operative with the base member and the reflective means for causing the reflective means to move to and between the reflective state and the non-reflective state.
- 14. An optical switch device according to claim 13, wherein the reflective means includes a reflective panel having a first surface and a second surface disposed opposite the first surface, the first surface being reflective.
- 15. An optical switch device according to claim 14, wherein the second surface is reflective so that a second beam of light can be reflected while the first surface reflects the at least one beam of light.
- 16. An optical switch device according to claim 13, wherein the reflective means includes a reflective panel fabricated from a material being partially reflective and partially transparent whereby, when the reflective panel is disposed in the reflective state, a portion of the at least one beam of light is redirected to the second direction while a remaining portion of the at least one beam of light continues in the first direction.
- 17. An optical switch device according to claim 14, wherein the actuator means includes one of a scratch drive actuator mechanism and a comb drive mechanism.
- 18. A free-space optical matrix crossconnect apparatus, comprising:
a base member; an array of reflective elements operatively connected to the base member and arranged in a plurality of columns and rows, each reflective element including a reflective panel and an actuator, the reflective panel being pivotally connected to the base member and unbiasedly movable between a reflective state wherein the reflective panel is disposed perpendicularly relative to the base member and a non-reflective state wherein the reflective panel is disposed in a facially opposing relationship on the base member; a plurality of fiber optic ports, each fiber optic port disposed along a periphery of the base member at a respective one of the columns and rows and capable of emitting and receiving a light beam so that when the light beam from a light emitting fiber optic port located at a selected one of the columns and rows is transmitted to a selected light receiving fiber optic port located at a selected remaining one of the rows and columns, the optical switch device located at an intersection formed by the selected column and row is actuated by the actuator to move the reflective panel from the non-reflective state to the reflective state to reflect the light beam from the light emitting fiber optic port to the selected light receiving fiber optic port.
- 19. A free-space optical matrix crossconnect apparatus according to claim 18, further comprising a plurality of collimator elements, each collimator element being disposed adjacent to respective ones of each fiber optic port and between each fiber optic port and the reflective elements.
- 20. A free-space optical matrix crossconnect apparatus according to claim 19, wherein the plurality of collimator elements and the plurality of fiber optic ports are connected to the base member.
- 21. A free-space optical matrix crossconnect apparatus according to claim 18, wherein when the reflective element located at the intersection formed by the selected column and row is in the reflective state, remaining ones of the reflective elements located in the selected column and row are in the non-reflective state.
- 22. A free-space optical matrix crossconnect apparatus according to claim 21, wherein a plurality of light beams from a plurality of light emitting fiber optic ports located at selected ones of the columns and rows are transmitted to a plurality of selected light receiving fiber optic ports located at selected remaining ones of the rows and columns through a plurality of reflective elements located at respective intersections formed by the selected columns and rows in respective reflective states.
- 23. A free-space optical matrix crossconnect apparatus according to claim 18, wherein the plurality of rows are oriented parallel to each other, the plurality of columns are oriented parallel to each other and the plurality of rows and columns are oriented perpendicularly relative to each other.
Parent Case Info
[0001] This non-provisional application claims the benefit of U.S. Provisional Application Ser. No. 60/058,222, filed on Sep. 9, 1997.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60058222 |
Sep 1997 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09377694 |
Aug 1999 |
US |
Child |
09772849 |
Jan 2001 |
US |