Claims
- 1. A surface acoustic wave (SAW) device comprising:
- a quartz substrate having a SAW propagation surface; and
- at least one interdigital transducer having electrodes on the surface for launching and/or detecting surface acoustic waves, wherein a surface wave direction of propagation is along an X' axis, the substrate further having an Z' axis normal to the surface, and a Y' axis along the surface and perpendicular to the X' axis, the quartz substrate further having a crystal orientation defined by crystal axes X,Y, and Z, the relative orientation of device axes X', Y', and Z' being defined by Euler angles lambda, mu, and theta, wherein lambda has a value ranging from -5.degree. to 5.degree., mu has a value ranging from 37.degree. to 46.degree., and theta has a value ranging from 20.degree. to 26.degree..
- 2. The device according to claim 1, wherein the interdigital electrodes have an orientation generally perpendicular to a direction of wave propagation generally defined by the crystal orientation Euler angle theta.
- 3. The device according to claim 1, wherein the interdital electrodes have a tapered alignment, and wherein the periodicity of electrodes changes along a direction generally orthogonal to an acoustic wave axis of propagation through the transducer, the direction defined by the crystal orientation Euler angle theta.
- 4. A surface acoustic wave substrate formed from a quartz single crystal, the substrate comprising a crystal orientation cut for forming a planar surface, the crystal orientation defined by Euler angles lambda and mu, wherein lambda has a value ranging from approximately -5.degree. to approximately 5.degree., and mu has a value ranging from approximately 37.degree. to 46.degree..
- 5. A method for forming a surface acoustic wave device comprising the steps of:
- providing a silicon dioxide (quartz) single crystal;
- orientating the crystal for cutting a planar surface, the crystal orientation defined by Euler angles lambda, mu, and theta;
- cutting the crystal for forming the planar surface, the cut defined by the Euler angles lambda, mu, and theta, wherein lambda has a value ranging from approximately -5.degree. to approximately 5.degree., mu has a value ranging from approximately 37.degree. to 46.degree., and theta has a value ranging from approximately 20.degree. to 26.degree.;
- preparing the planar surface for affixing a transducer thereon; and
- affixing an interdigitized transducer on the planar surface for propagating and detecting surface acoustic waves propagating in a direction generally along an axis of propagation defined by the crystal orientation angle theta.
- 6. The method according to claim 5, wherein the transducer affixing step comprises the step of orientating electrodes of the transducer generally perpendicular to the axis of propagation.
- 7. The method according to claim 5, wherein the transducer affixing step comprises the step of orientating electrodes in a tapered alignment, wherein the periodicity of electrodes changes along a direction generally orthogonal to an acoustic wave axis of propagation through the transducer, the direction defined by the crystal orientation Euler angle theta.
- 8. A method for forming silicon dioxide (quartz) single crystal substrate comprising the steps of:
- orientating the quartz crystal for cutting a planar surface, the crystal orientating defined by Euler angles lambda and mu; and
- cutting the crystal for forming the planar surface, the cut defined by the Euler angles lambda and mu, wherein lambda has a value ranging from approximately -5.degree. to approximately 5.degree. and mu has a value ranging from approximately 37.degree. to 46.degree..
- 9. A method for generally improving piezoelectric coupling, power flow angle, and diffraction in a surface acoustic wave device, the method comprising the steps of:
- providing a silicon dioxide (quartz) single crystal;
- orientating the quartz crystal for cutting a planar surface, the crystal orientating defined by Euler angles, wherein lambda has a value ranging from approximately -5.degree. to approximately 5.degree., mu has a value ranging from approximately 37.degree. to 46.degree., and theta has a value ranging from approximately 20.degree. to 26.degree.; and
- affixing interdigitized transducers on the planar surface for propagating and detecting surface acoustic waves in a direction generally along an axis of propagation defined by the crystal orientation angle theta.
RELATED APPLICATIONS
This Application is related to Provisional Application having Ser. No. 60/052,658, filed on Jul. 16, 1997 in the United States Patent and Trademark Office for An Optimal Cut For SAW Devices On Quartz, commonly owned with the instant application.
US Referenced Citations (17)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0 860 943 |
Aug 1998 |
EPX |