Claims
- 1. A method for producing optically planar surfaces for micro-electromechanical system devices (MEMS), comprising the steps of:
a) depositing a first layer over a substrate; b) forming a channel in the first layer wherein the channel has a depth defined by thickness of the first layer and a width greater than 10 microns; c) depositing a second layer over the first layer wherein the second layer has a thickness greater than the depth of the channel and is composed of a different material than the first layer; d) removing the second layer from outside the channel leaving an overlap at the edge of the channel; and e) polishing the second layer that fills the channel and any overlap of the second layer to obtain an optically planar surface for the MEMS device.
- 2. The method as claimed in claim 1 wherein a complete removal of the second layer is done such that there remains an overlap of the second layer with the first layer beyond the channel.
- 3. The method as claimed in claim 2 wherein the overlap of the second layer with the first layer beyond the channel is less than 2 microns.
- 4. The method as claimed in claim 1 wherein the step of removing the second layer comprises:
a) protecting a portion of the second layer from subsequent etching, with an etch mask; b) completely etching an unprotected area of the second layer to expose the first layer; and c) removing the etch mask.
- 5. The method as claimed in claim 1 wherein the step of polishing the second layer that fills the channel and any overlap of the second layer is done by chemical-mechanical polishing.
- 6. The method as claimed in claim 1 wherein the first layer is silicon dioxide.
- 7. The method as claimed in claim 1 wherein the second layer is polysilicon.
- 8. The method as claimed in claim 1 wherein the second layer is polyimide.
- 9. The method as claimed in claim 1 wherein the width of the channel is between 10 and 200 microns.
- 10. The method as claimed in claim 1 wherein the channel has standoffs.
- 11. A method for producing optically planar free-standing structures, comprising the steps of:
a) depositing a first layer having a channel over a substrate wherein the channel has a depth defined by thickness of the first layer and any subsequent layers, and a width greater than 10 microns; b) depositing a sacrificial second layer over the first layer wherein the sacrificial second layer has a thickness greater than the depth of the channel and is composed of a differing material to the first layer; c) removing the sacrificial second layer outside the area of the channel, including any support region of a free-standing structure, and leaving an overlap at the edge of the at least one channel; d) polishing the second layer that fills the channel and any overlap of the second layer to obtain an optically planar surface for the MEMS device; e) building an optical device on top of the optically planar surface; and f) completely removing any remaining sacrificial layer within the channel so that the optical device becomes an optically planar free-standing structure.
- 12. A method as claimed in claim 11 wherein the optically planar free-standing structure is a micro-electromechanical structure.
- 13. The method as claimed in claim 11 wherein the removing of the second layer is done such that there is overlap of the second layer with the first layer beyond the channel.
- 14. The method as claimed in claim 11 wherein the overlap of the second layer with the first layer beyond the channel is less than 2 microns.
- 15. The method as claimed in claim 11 wherein the step of removing the second layer comprises:
a) providing an etch mask to protect the material of the second layer within the area of the channel; b) completely etching the area of the second layer unprotected by the etch mask to expose the first layer; and c) removing the etch mask.
- 16. The method as claimed in claim 11 wherein the step of polishing the second layer that fills the channel and any overlap of the second layer is done by chemical-mechanical polishing.
- 17. The method as claimed in claim 11 wherein the first layer is silicon dioxide.
- 18. The method as claimed in claim 11 wherein the second layer is polysilicon.
- 19. The method as claimed in claim 11 wherein the second layer is polyimide.
- 20. The method as claimed in claim 11 wherein the width of the channel is between 10 and 200 microns.
- 21. The method as claimed in claim 11 wherein the channel has standoffs.
- 22. A method for producing optically planar free-standing structures, comprising the steps of:
a) providing a first layer with a least two channels containing at least one intermediate support over a substrate wherein said channels have a depth defined by the thickness of the first layer, and a width greater than 10 microns; b) depositing a sacrificial second layer over the entire area of the first layer wherein the sacrificial second layer has a thickness greater than the depth of the channels and is composed of a differing material to the first layer; c) removing the sacrificial second layer outside the area of at least two channels, including any intermediate support regions, and leaving an overlap at the edges of the at least two channels; d) polishing the sacrificial second layer within at least two channels and any overlap of the second layer to obtain an optically planar surface; e) building an optical device on top of the optically planar surface; and f) completely removing any remaining sacrificial layer within the at least two channels so that the optical device becomes an optically planar free-standing structure.
- 23. A method as claimed in claim 22 wherein the optically planar free-standing structure is a micro-electromechanical structure.
- 24. The method as claimed in claim 22 wherein the removing of the second layer is done such that there is overlap of the second layer with the first layer beyond the channel.
- 25. The method as claimed in claim 22 wherein the overlap of the second layer with the first layer beyond the channel is less than 2 microns.
- 26. The method as claimed in claim 22 wherein the step of removing the second layer comprises:
a) providing an etch mask to protect the material of the second layer within the area of the channel; b) completely etching the area of the second layer unprotected by the etch mask to expose the first layer; and c) removing the etch mask.
- 27. The method as claimed in claim 22 wherein the step of polishing the second layer that fills the channels and any overlap of the second layer is done by chemical-mechanical polishing.
- 28. The method as claimed in claim 22 wherein the first layer is silicon dioxide.
- 29. The method as claimed in claim 22 wherein the second layer is polysilicon.
- 30. The method as claimed in claim 22 wherein the second layer is polyimide.
- 31. The method as claimed in claim 22 wherein the width of the channel is between 10 and 200 microns.
- 32. The method as claimed in claim 22 wherein the channel has standoffs.
- 33. An article made by the method of claim 1.
- 34. An article made by the method of claim 11.
- 35. An article made by the method of claim 22.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This is a continuation-in-part of U.S. application Ser. No. 09/215,973, filed Dec. 18, 1998 by Jech Jr. et al., entitled Method for Producing Co-Planar Surface Structures.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09215973 |
Dec 1998 |
US |
Child |
09867928 |
May 2001 |
US |