Claims
- 1. An ultrasonic transducer array for imaging a target, comprising a plurality of piezoelectric transducer elements aligned along an array axis in an imaging plane, each piezoelectric transducer element including:
- a piezoelectric substrate having a front surface and a rear surface;
- a patterned front electrode overlaying selected portions of the front surface of the piezoelectric substrate, such selected portions being less than the entire front surface;
- a rear electrode overlaying the rear surface of the piezoelectric substrate; and
- a first acoustic matching layer overlaying the patterned front electrode and conducting electrical signals to the front electrode;
- wherein the patterned front electrode is configured to provide a predetermined tapered weighting function distributed along an elevation axis, perpendicular to the imaging plane, thereby providing a beam of ultrasonic energy that is apodized in the elevation plane.
- 2. An ultrasonic transducer array as defined in claim 1, wherein the piezoelectric substrate of each transducer element has a series of slots cut into its front surface, the slots running in a direction substantially parallel to the array axis and forming acoustically isolated subelements.
- 3. An ultrasonic transducer array as defined in claim 2, wherein selected acoustically isolated subelements are coupled to the first acoustic matching layer by the patterned front electrode, so that the piezoelectric substrate emits an ultrasonic wave having a predetermined energy distribution.
- 4. An ultrasonic transducer array as defined in claim 1, wherein the predetermined tapered weighting function approximates a Hamming weighting function.
- 5. An ultrasonic transducer array as defined in claim 1, wherein the first acoustic matching layer includes an epoxy material layer and a metallic layer for conducting electrical signals.
- 6. An ultrasonic transducer array as defined in claim 1, wherein the first acoustic matching layer is made of an electrically conductive material.
- 7. An ultrasonic transducer array as defined in claim 1, wherein each transducer element is divided into subelements that are selectively overlaid by the patterned front electrode, such that the selected subelements are connected in parallel by the first acoustic matching layer.
- 8. An ultrasonic transducer array as defined in claim 1, wherein the front surface of the piezoelectric substrate of each transducer element has a concave shape in the elevation plane.
- 9. An ultrasonic transducer array as defined in claim 1, wherein the front surface of the piezoelectric substrate of each transducer element is substantially flat in the elevation plane.
- 10. An ultrasonic transducer array for imaging a target by scanning a narrow beam of ultrasonic energy in an imaging plane, the narrow beam having associated side lobes on both sides of a main lobe that extend in elevation away from the imaging plane, the transducer array comprising:
- a plurality of transducer elements aligned along an array axis in the imaging plane, each of the plurality of transducer elements including
- a piezoelectric substrate having a front surface and a rear surface,
- a front electrode overlaying selected portions of the front surface of the piezoelectric substrate, such selected portions being less than the entire front surface,
- a rear electrode overlaying the rear surface of the piezoelectric substrate, and
- a first acoustic matching layer overlaying the front electrode and conducting electrical signals to the front electrode,
- wherein the front electrode is configured to approximate a predetermined weighting function, so that the transducer element produces an apodized beam of ultrasonic energy directed toward the target and focused in the elevation plane, with the beam's side lobes having a lower magnitude than the side lobes that would be emitted by a piezoelectric element having a uniform front electrode.
- 11. A method for ultrasonic imaging, comprising:
- providing a plurality of piezoelectric transducer elements aligned along an array axis in an imaging plane, each piezoelectric transducer element including
- a piezoelectric substrate having a front surface and a rear surface,
- a patterned front electrode overlaying selected portions of the front surface of the piezoelectric substrate, such selected portions being less than the entire front surface and providing a predetermined tapered weighting function distributed along an elevation axis oriented perpendicular to the imaging plane,
- a rear electrode overlaying the rear surface of the piezoelectric substrate; and
- a first acoustic matching layer overlaying the front electrode and conducting electrical signals to the front electrode; and
- exciting each transducer element with an excitation signal applied between the rear electrode and the first acoustic matching layer, to cause those portions of the front surface of the piezoelectric substrate overlaid by the patterned front electrode to emit an ultrasonic beam toward a target, wherein the patterned front electrode is configured to provide an ultrasonic beam that is apodized in the elevation plane.
- 12. A method of ultrasonic imaging as defined in claim 11, wherein the piezoelectric substrate of each transducer element has a series of slots cut into its front surface, the slots oriented in a direction substantially parallel to the array axis and forming acoustically isolated subelements.
- 13. A method of ultrasonic imaging as defined in claim 12, wherein selected acoustically isolated subelements are coupled to the first acoustic layer by the patterned front electrode so that the piezoelectric substrate emits an ultrasonic beam having a predetermined energy distribution.
- 14. A method of ultrasonic imaging as defined in claim 11, wherein the first acoustic matching layer includes an epoxy material layer and a metallic layer for conducting electrical signals.
- 15. A method of ultrasonic imaging as defined in claim 11, wherein the first acoustic matching layer is made of an electrically conductive material.
- 16. A method of ultrasonic imaging as defined in claim 11, wherein each transducer element is divided into subelements that are selectively overlaid by the patterned front electrode, such that the selected subelements are connected in parallel by the first acoustic matching layer.
- 17. A method of ultrasonic imaging as defined in claim 11, wherein the front surface of the piezoelectric substrate of each transducer element has a concave shape in the elevation plane.
- 18. A method of ultrasonic imaging as defined in claim 11, wherein the front surface of the piezoelectric substrate of each transducer element is substantially flat in the elevation plane.
- 19. A method of ultrasonic imaging as defined in claim 11, wherein the predetermined weighing function approximates a Hamming weighting function.
Parent Case Info
This application is a continuation of application Ser. No. 08/324,104, filed Oct. 14, 1994, now abandoned.
US Referenced Citations (29)
Continuations (1)
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Number |
Date |
Country |
Parent |
324104 |
Oct 1994 |
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