Claims
- 1. A magnetostatic wave device of the kind wherein an external magnetic field is applied to a thin film of a magnetic single-crystal having a garnet structure in the direction parallel to a plane of said thin film, characterized in that said thin film of the magnetic single-crystal is formed so as to have an axis of easy magnetization, the direction of which is parallel to the direction of said externally applied magnetic field for providing stability in filtering characteristics.
- 2. The magnetostatic wave device according to claim 1, further comprising a first transducer for signal inputs located on a principal plane of said thin film of the magnetic single-crystal; and a second transducer for signal outputs arranged in parallel with said first transducer on said principal plane of the thin film of the magnetic single-crystal, said first and second transducers being arranged at an angle relative to the axis of easy magnetization of said thin film.
- 3. A magnetostatic wave device comprising a thin film of a magnetic single-crystal having a garnet structure, a first transducer for signal inputs formed on said thin film of the magnetic single-crystal, and a second transducer for signal outputs formed in parallel with said first transducer on a principal plane of said thin film of the magnetic single-crystal, wherein said thin film of the magnetic single-crystal is formed on a substrate and has an axis of easy magnetization, the direction of which is parallel to the direction of an external magnetic field applied in the direction parallel to a plane of said thin film for providing stability in filtering characteristics.
- 4. The magnetostatic wave device according to claim 3, wherein said first and second transducers are arranged on said thin film of magnetic single-crystal at an angle relative to the axis of easy magnetization of said thin film.
- 5. The magnetostatic wave device according to claim 4 wherein said thin film of the magnetic single-crystal is a magnetic garnet film epitaxially grown on a substrate of gadolinium-gallium-garnet.
- 6. The magnetostatic wave device according to claim 5 wherein said angle of said first and second transducers falls in the range of -5.degree. to +5.degree..
- 7. A magneto static wave device comprising a thin film of a magnetic single-crystal having a garnet structure, a first transducer for signal inputs formed on said thin film of the magnetic single-crystal, and a second transducer for signal outputs formed in parallel with said first transducer on a principal plane of said thin film of the magnetic single-crystal, wherein said thin film of the magnetic single-crystal is formed on a substrate and has an axis of easy magnetization oriented in the same direction as that of an external magnetic field applied in the direction parallel to a plane of said thin film, and wherein said substrate comprises a strip of a single crystal of Gadolinium-Gallium-Garnet cut along a (011) plane thereof, and wherein said film is epitaxialy grown on the (011) plane of said substrate.
- 8. The magnetostatic wave device according to claim 7, wherein the axis of easy magnetization of the film is oriented in the direction of an �011! axis of the crystal.
- 9. The magnetostatic wave device according to claim 7, wherein said external magnetic filed is applied to the device in a direction parallel to the direction of an �011! axis of the single crystal.
- 10. A magnetostatic wave device comprising a thin film of a magnetic single-crystal having a garnet structure, a first transducer for signal inputs formed on said thin film of the magnetic single-crystal, and a second transducer for signal outputs formed in parallel with said first transducer on a principal plane of said thin film of the magnetic single-crystal, wherein said thin film of the magnetic single-crystal is formed on a substrate and has an axis of easy magnetization oriented in the same direction as that of an external magnetic field applied in the direction parallel to a plane of said thin film, and wherein said substrate is composed of a strip of a single crystal of Gadolinium-Gallium-Garnet cut along a (001) plane of the crystal.
- 11. The magnetostatic wave device according to claim 10, wherein the axis of easy magnetization is oriented in a direction of an �011! or �010! axis of the crystal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-229727 |
Aug 1993 |
JPX |
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Parent Case Info
This is a Continuation of application Ser. No. 08/284,151, filed on Aug. 2, 1994 now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4853660 |
Schloemann |
Aug 1989 |
|
5289143 |
Tsutsumi |
Feb 1994 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
143009 |
Nov 1980 |
JPX |
191108 |
Jul 1993 |
JPX |
Non-Patent Literature Citations (2)
Entry |
Lax et al., Microwave Ferrites and Ferrimagnetics, 1962, pp. 467-468. |
Adam et al., "Magnetostatic-Wave Group-Delay Equaliser," Electronics Letters, vol. 9, No. 24, 29 Nov. 73, pp. 557-578. |
Continuations (1)
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Number |
Date |
Country |
Parent |
284151 |
Aug 1994 |
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