Claims
- 1. An electrical multibandpass filter device used at frequencies above 300 GHZ comprising:
- an acoustic diffractometer means which comprises a substrate of bulk gallium arsenide and at least two alternating layers of piezoelectrically active but electrically inactive GaAs material, and piezoelectrically inactive insulator with acoustic mismatch, GaAlAs material, respectively, on said substrate defining an acoustically mismatched superlattice the number and thicknesses of the alternating layers defining the frequency of the pass bands;
- electrical input means to said filter device comprising acoustic wedges, angle cut to permit efficient transmission into the superlattice including means for transducing an input electrical signal for launching the input as an acoustical wave in said acoustic diffractometer means; and
- electrical output means for said filter device comprising acoustic wedges on the opposite side of said device than the input wedges, and angle cut to permit efficient transmission out from the superlattice including means for transducing an output acoustical wave signal received from said acoustic diffractometer means into an output electrical signal.
- 2. The device of claim 1 wherein material on said substrate is in the cubic class43 m.
- 3. The device of claim 1 wherein material on said substrate is from the II-VI compound semiconductor group.
- 4. The device of claim 1 wherein material on said substrate is from the III-V compound semiconductor group.
- 5. The device of claim 1 wherein the material on said substrate comprises epitaxially grown layers of semi-conducting material.
- 6. An electrical multibandpass filter device used at frequencies above 300 GHZ comprising:
- an acoustic diffractometer means which comprises a substrate of bulk gallium arsenide and at least two alternating layers of piezoelectrically ative but electrically inactive GaAs material, and piezoelectrically inactive insulator, with acoustic mismatch, GaAlAs material respectively, on said substrate defining an acoustically mismatched superlattice, the number and thicknesses of the alternating layers defining the frequency of the pass bands;
- electrical input means to said filter device comprising interdigital transducer arrays including means for transducing an input electrical signal for launching the input as an acoustical wave in said acoustic diffractometer means, wherein the interdigital transducer arrays comprise multiple interdigital transducers, plural taps of which may selectively be used as input or output ports respectively, enabling a selectivity of response characteristics possible to the user; and
- electrical output means for said filter device comprising interdigital transducer arrays on the same side of the superlattice as the said input means including means for transducing an output acoustical wave signal received from said acoustic diffractometer means into an output electrical signal, wherein the interdigital transducer arrays comprise multiple interdigital transducers, plural taps of which may selectively be used as input or output ports respectively, enabling a selectivity of response characteristics possible to the user.
Parent Case Info
This application is a continuation of application Ser. No. 269,,283, filed June 1, 1981 now abandoned.
Government Interests
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 or therefor.
US Referenced Citations (5)
Continuations (1)
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Number |
Date |
Country |
Parent |
269283 |
Jun 1981 |
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