Claims
- 1. A transducer comprising:
an acoustic energy generating means for generating acoustic energy in the frequency range of 0.4 to 2.0 MHz, the acoustic energy generating means being adapted for delivering an approximately uniform amount of acoustic energy to each unit of surface area on a substrate in a given time period when a relative rotational motion exists between the substrate and the transducer, the acoustic energy generating means having a surface area that is less than the surface area of the substrate; and a resonator attached to the acoustic energy generating means for transmitting the acoustic energy to the substrate.
- 2. The transducer of claim 1 wherein the acoustic energy generating means comprises a wedge shaped piezoelectric crystal.
- 3. The transducer of claim 1 wherein the acoustic energy generating means comprises two or more piezoelectric crystal segments assembled to have a wedge shape.
- 4. The transducer of claim 1 wherein the acoustic energy generating means comprises a piezoelectric crystal having at least one electrode having a wedge shape.
- 5. The transducer of claim 1 wherein the resonator comprises a material selected from the group consisting of quartz, sapphire, silicon carbide, silicon nitride, ceramics, aluminum and stainless steel.
- 6. The transducer of claim 1 further comprising:
an attachment layer positioned between the acoustic energy generating means and the resonator for attaching the resonator to the acoustic energy generating means.
- 7. The transducer of claim 6 wherein the attachment layer comprises a material selected from the group consisting of indium, tin, indium alloys and tin alloys.
- 8. The transducer of claim 6 wherein the attachment layer comprises a material selected from the group consisting of electrically conductive epoxy, electrically nonconductive epoxy and non-epoxy adhesive.
- 9. The transducer of claim 1 wherein the substrate comprises a semiconductor wafer.
- 10. The transducer of claim 1 wherein the relative rotational motion is caused by rotating the substrate.
- 11. The transducer of claim 2 wherein the wedge shaped piezoelectric crystal comprises a planar surface comprised of a first side, a second side and a curved side, with an angle separating the first side from the second side, and the curved side connecting the first side and the second side.
- 12. The transducer of claim 2 wherein the wedge shaped piezoelectric crystal is a three-dimensional structure having a top planar surface that is bounded by a first side and a second side, with the first side and the second side each being approximately straight lines when viewed in two dimensions, with the first side and the second side being nonparallel so that an angle is formed between the first side and the second side.
- 13. A transducer comprising:
an acoustic energy generating means for generating acoustic energy in the frequency range of 0.4 to 2.0 MHz, the acoustic energy generating means being adapted for delivering an approximately uniform amount of acoustic energy to each unit of surface area on a substrate in a given time period when a relative rotational motion exists between the substrate and the transducer, the acoustic energy generating means having a surface area that is less than the surface area of the substrate; a vessel for holding the acoustic energy generating means, the vessel surrounding the acoustic energy generating means and protecting the acoustic energy generating means from moisture, the vessel having an inside surface on which the acoustic energy generating means is positioned; and an attachment layer positioned between the acoustic energy generating means and the inside surface for attaching the acoustic energy generating means to the vessel, with at least a part of the vessel acting to transmit the acoustic energy to the substrate.
- 14. The transducer of claim 13 wherein the acoustic energy generating means comprises a wedge shaped piezoelectric crystal.
- 15. The transducer of claim 13 wherein the acoustic energy generating means comprises two or more piezoelectric crystal segments assembled to have a wedge shape.
- 16. The transducer of claim 13 wherein the acoustic energy generating means comprises a piezoelectric crystal having at least one electrode having a wedge shape.
- 17. The transducer of claim 13 wherein the vessel comprises aluminum coated with an inert material.
- 18. The transducer of claim 13 wherein the relative rotational motion is caused by rotating the substrate.
- 19. A transducer comprising:
a piezoelectric crystal adapted for generating acoustic energy in the frequency range of 0.4 to 2.0 MHz; and a resonator attached to the piezoelectric crystal for transmitting the acoustic energy to a substrate, the resonator having a wedge shape for delivering an approximately uniform amount of acoustic energy to each unit of surface area on the substrate in a given time period when a relative rotational motion exists between the substrate and the transducer, the resonator having a surface area that is less than the surface area of the substrate.
- 20. The transducer of claim 19 wherein the relative rotational motion is caused by rotating the substrate.
Parent Case Info
[0001] This application claims the benefit of provisional application 60/350,206.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60350206 |
Nov 2001 |
US |