Claims
- 1. A mechanical grating device comprising:
a base having a surface; a spacer layer, having an upper surface, is provided above the base, and a longitudinal channel is formed in said spacer layer, said channel having a first and second opposing side wall and a bottom; a plurality of spaced apart deformable ribbon elements disposed parallel to each other and spanning the channel, said deformable ribbon elements defining a top and a bottom surface and are fixed to the upper surface of the spacer layer on each side of the channel, said deformable elements are organized in groups of N elements wherein N is greater than 2; and each of said groups forms a pattern of discrete levels in an actuated state wherein the pattern has n levels wherein n is greater than 2.
- 2. The mechanical grating device as recited in claim 1 has a plurality of standoffs provided, and according to the longitudinal direction of the device at least N-2 standoffs are associated with each group.
- 3. The mechanical grating device as recited in claim 2 wherein the standoffs are formed on the bottom of the channel.
- 4. The mechanical grating device as recited in claim 2 wherein the standoffs are formed on the bottom surface of the ribbon elements.
- 5. The mechanical grating device as recited in claim 2 wherein according to the width of said device each standoff is divided into a plurality of individual elements of equal height.
- 6. The mechanical grating device as recited in claim 1 wherein in the actuated state the levels of adjacent ribbon elements in each group are separated by
6λ2N+pλ2.
- 7. The mechanical grating device as recited in claim 6 wherein in the actuated state the levels of successive ribbon elements in each group are reduced by a constant amount with respect to the bottom of the channel, and thereby representing a staircase of equal steps.
- 8. The mechanical grating device as recited in claim 1 wherein said side walls are substantially vertically disposed with respect to the bottom.
- 9. The mechanical grating device as recited in claim 1 wherein said channel has a constant cross section along the entire length of the device.
- 10. The mechanical grating device as recited in claim 1 wherein a reflective layer is provided on the top surface of the ribbon elements.
- 11. An electro-mechanical grating device comprising:
a base having a surface; a spacer layer, having an upper surface, is provided above the base, and a longitudinal channel is formed in said spacer layer, said channel having a first and second opposing side wall and a bottom; a first conductive layer being provided below the bottom of the channel; a plurality of spaced apart deformable ribbon elements disposed parallel to each other and spanning the channel, said deformable ribbon elements defining a top and a bottom surface and are fixed to the upper surface of the spacer layer on each side of the channel, said deformable elements are organized in groups of N elements wherein N is greater than 2; each of said groups forms a pattern of discrete levels in an actuated state wherein the pattern has n levels wherein n is greater than 2; and a second conductive layer being part of each actuable ribbon element.
- 12. The electro-mechanical grating device as recited in claim 11 has a plurality of standoffs provided, and according to the longitudinal direction of the device at least N-2 standoffs are associated with each group.
- 13. The electro-mechanical grating device as recited in claim 12 wherein the standoffs are formed on the bottom of the channel.
- 14. The electro-mechanical grating device as recited in claim 12 wherein the standoffs are formed on the bottom surface of the ribbon elements.
- 15. The electro-mechanical grating device as recited in claim 12 wherein according to the width of said device each standoff is divided into a plurality of individual elements of equal height.
- 16. The electro-mechanical grating device as recited in claim 11 wherein in the actuated state the levels of adjacent ribbon elements in each group are separated by
7λ2N+pλ2.
- 17. The electro-mechanical grating device as recited in claim 16 wherein in the actuated state the levels of successive ribbon elements in each group with respect to the bottom of the channel are reduced by a constant amount, thereby representing a staircase of equal steps.
- 18. The electro-mechanical grating device as recited in claim 11 wherein said side walls are substantially vertically disposed with respect to the bottom.
- 19. The electro-mechanical grating device as recited in claim 11 wherein said channel has a constant cross section along the entire length of the device.
- 20. The electro-mechanical grating device as recited in claim 11 wherein a reflective layer is provided on the top surface of the ribbon elements.
- 21. The electro-mechanical grating device as recited in claim 11 comprises a driving means for applying a voltage between the first and the second conductive layer to actuate the ribbon elements.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Reference is made to U.S. Ser. No. 09/______ (EK Docket No. 78,657), filed concurrently, entitled “A Mechanical Grating Device,” and to U.S. Serial No. 09/______ (EK Docket No. 78,593), also filede concurrently, entitled, “Method for Producing Co-planar Surface Structures.”