Claims
- 1. A surface acoustic wave device comprising:
- a piezoelectric substrate for propagating surface acoustic waves;
- an input and an output interdigital transducer aligned with each other on said substrate;
- said input and output transducers being slanted at predetermined equal and opposite angles to each other;
- each transducer having a plurality of interdigital electrodes, the periodicity of which varies in a predetermined manner along the length of each transducer, the periodicity variation being the same for corresponding portions of the two transducers;
- and a reflective array aligned with said interdigital transducers and positioned on said substrate a distance from said output transducer on the side thereof opposite that of said input transducer;
- said reflective array having a plurality of shorted interdigital electrodes the periodicity of which corresponds to that of the output transducer;
- said reflective array being disposed on said substrate at an angle the same as that of said output transducer, selected electrodes of said reflective array being at least partially inactivated, the distance between the electrodes of said reflective array and the electrodes of said output transducer being equal to N.lambda./2, where N is an integer and .lambda. is acoustic wavelength corresponding to the frequency of operation
- 2. The surface acoustic wave device as defined in claim 1 wherein a portion of said selected electrodes of said reflective array are partially or fully inactivated and a portion of said selected electrodes of said reflective array are fully activated.
- 3. The surface acoustic wave device as defined in claim 2 wherein some of said selected electrodes of said reflective array are fully inactivated by fully removing said electrodes.
- 4. The surface accoustic wave device as defined in claim 3 wherein said selected electrodes of said reflective array are partially inactivated by open-circuiting some of said selected electrodes.
- 5. The surface acoustic wave device as defined in claim 4 further comprising a thin-film phase correction strip disposed halfway between said input and output transducer.
- 6. The surface acoustic wave device as defined in claim 5 further comprising a means for absorbing acoustic waves disposed on said substrate edges.
- 7. The surface acoustic wave device as defined in claim 6 wherein N may be equal to 1,2,3 . . .
- 8. The surface acoustic wave device as defined in claim 7 wherein said transducers and said reflective array are photo-etched in thin film metal on said substrate.
Government Interests
The invention described herein may be manufactured, used and licensed by or for the Government without payment to us of any royalty thereon.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4633117 |
Bloch et al. |
Dec 1986 |
|
Non-Patent Literature Citations (2)
Entry |
"Surface Acoustic Wave Slanted Correlators for Linear FM Pulse-Compressor by B. R. Potter and C. S. Hartmann, Texas Instruments Incorporated, 1977 Ultrasonics Symposium Proceedings, IEEE, Cat. #77CH1264-ISU, pp. 607-610. |
"Phase Compensation of Linear FM Slanted Transducers by Use of Metallized Stripes", by J. B. Cooper and B. R. Potter, Texas Instruments Incorporated, 1982 Ultrasonics Symposium, pp. 96-66. |