Claims
- 1. An amplitude error compensated SAW reflective array correlator comprising:
- a piezoelectric crystal substrate having a pair of oppositely disposed ends and a planar surface between said ends;
- input interdigital transducer means disposed on said substrate surface adjacent one of said pair of substrate ends for propagating SAW signals along a first path on said substrate surface toward the other of said pair of substrate ends in response to an input RF signal applied to said transducer means;
- output interdigital transducer means disposed on said substrate surface adjacent said one substrate end for converting SAW signals travelling along a second path on said substrate surface from said other substrate end toward said one substrate end to an output RF signal, said output RF signal containing known amplitude errors at known frequencies, said second path being substantially parallel to said first path;
- first dispersive reflective array grating means disposed along said first path for reflecting the SAW signals travelling along said first path along a plurality of frequency dispersed third paths on said substrate surface toward said second path, said third paths traversing said second path;
- second dispersive reflective array grating means disposed along said second path for reflecting the SAW signals travelling along said plurality of third paths along said second path toward said one substrate end;
- third dispersive reflective array grating means having a frequency and amplitude selective configuration disposed along a fourth path on said substrate surface for reflecting along said fourth path toward said one substrate end amplitude error compensation SAW signals selected from leakage SAW signals leaking through said second reflective array grating means along said third paths, said fourth path being substantially parallel to said second path, said amplitude error compensation SAW signals having amplitudes and frequencies which correct for said known amplitude errors at said known frequencies in said output RF signal when said amplitude error compensation SAW signals travelling along said fourth path are combined with said SAW signals travelling along said second path and fed to the input of said output interdigital transducer means; and
- means for combining said amplitude error compensation SAW signals travelling along said fourth path with said SAW signals traveling along said second path and feeding the resultant combined SAW signals to the input of said output interdigital transducer means to produce an amplitude error compensated RF output signal from said output interdigital transducer means.
- 2. An amplitude error compensated SAW reflective array correlator as claimed in claim 1 wherein each of said first, second and third reflective array grating means comprises a linearly dispersive reflective array grating.
- 3. An amplitude error compensated SAW reflective array correlator as claimed in claim 2
- wherein said first, second and third dispersive reflective array gratings have the same periodicity and
- wherein said frequency and amplitude selective configuration of said third dispersive reflective array grating comprises a plurality of discrete packets of reflectors disposed along said fourth path.
- 4. An amplitude error compensated SAW reflective array correlator as claimed in claim 3 wherein said means for combining said second path SAW signals with said fourth path amplitude error compensation SAW signals and feeding said resultant combined SAW signals to said output interdigital transducer means comprises a multistrip coupler.
- 5. An amplitude error compensated SAW reflective array correlator as claimed in claim 3 wherein each of the reflectors in said plurality of discrete packets of reflectors comprises a metallic strip reflector disposed on said surface of said substrate.
- 6. An amplitude error compensated SAW reflective array correlator as claimed in claim 3 wherein each of the reflectors in said plurality of discrete packets of reflectors comprises a groove formed in said surface of said substrate.
- 7. An amplitude error compensated SAW reflective array correlator as claimed in claim 3 wherein the number of reflectors in each of said plurality of discrete packets of reflectors is selectively varied to control the amplitudes and frequencies of said fourth path amplitude error compensation SAW signals.
- 8. An amplitude error compensated SAW reflective array correlator as claimed in claim 3 wherein the shape of the envelope of at least one of said plurality of discrete packets of reflectors is selectively varied by selectively controlling the lengths of the reflectors in each of said packets to control the amplitudes and frequencies of said fourth path amplitude error compensation SAW signals.
- 9. An amplitude error compensated SAW reflective array correlator as claimed in claim 6 wherein the depths of the grooves in each of said plurality of discrete packets of reflectors is selectively varied to control the amplitudes and frequencies of said fourth path amplitude error compensation SAW signals.
GOVERNMENT INTEREST
The invention described herein may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment to me of any royalties thereon.
US Referenced Citations (10)