Claims
- 1. A method for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising the steps of:applying at least one inductance in series and/or in parallel to the transducer electrical terminals to obtain a decreased dead zone of the transducer; and applying at least one passive electrical circuit in series and/or parallel to the inductance; and applying a different electrical passive circuit to the transducer when the transducer is in a transmission mode than when the transducer is in a reception mode.
- 2. The method of claim 1, wherein the at least one electrical passive circuit is a non-linear circuit.
- 3. The method of claim 1, wherein the at least one electrical passive circuit is a linear circuit.
- 4. The method of claim 3, further comprising the step of synthesizing the linear circuit using known input impedance/admittance of the transducer.
- 5. The method of claim 4, further comprising the step of optimizing the linear circuit on the basis of a broadband matching theory.
- 6. The method of claim 5, further comprising the step of optimizing the generator output impedance to obtain a predetermined ringing at a given input signal.
- 7. The method of claim 3, further comprising the step of constructing the linear circuit with a higher order transfer function and including at least one capacitor and at least one inductor.
- 8. An arrangement for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising:a first electrical passive circuit adapted to be coupled to the transducer, said first circuit including at least one inductance adapted to be in series and/or in parallel to the transducer to obtain a decreased dead zone of the transducer; a second electrical passive circuit adapted to be coupled to the transducer; and switching means for switching between said first and second circuits such that one of said first and second circuits is coupled to the transducer when the transducer is in a transmission mode and the other of said first and second circuits is coupled to the transducer when the transducer is in a reception mode.
- 9. The arrangement of claim 8, wherein said first circuit further comprising switching means for modifying said first circuit such that a first construction of said first circuit is coupled to the transducer when the transducer is in a transmission mode and a second construction of said first circuit, different from said first construction, is coupled to the transducer when the transducer is in a reception mode.
- 10. The arrangement of claim 8, wherein said first circuit is a non-linear circuit.
- 11. The arrangement of claim 8, wherein said first circuit is a linear circuit.
- 12. The arrangement of claim 11, wherein said linear circuit is synthesized using known input impedance/admittance of the transducer.
- 13. The arrangement of claim 12, wherein said linear circuit is optimized on the basis of a broadband matching theory.
- 14. The arrangement of claim 13, wherein the generator output impedance is optimized to obtain a predetermined ringing at a given input signal.
- 15. The arrangement of claim 11, wherein said linear circuit is constructed with a higher order transfer function and includes at least one capacitor and at least one inductor.
- 16. A method for reducing ringing of dual-function ultrasonic, air-coupled transducers, comprising the steps of:providing a plurality of electrical components at least one of which is capable of providing inductance; coupling a switching device with the components to enable the construction of at least a first circuit and a second circuit depending on the status of the switching device; selectively coupling the components to the transducer such that the inductance-providing component is in series and/or in parallel with the transducer; and controlling the switching device in conjunction with the operation of the transducer such that the first circuit is coupled to the transducer during a transmission mode of the transducer and the second circuit is coupled to the transducer during the reception mode of the transducer to obtain a decreased dead zone of the transducer.
- 17. A method for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising the steps of:applying at least one inductance in series and/or in parallel to the transducer electrical terminals to obtain a decreased dead zone of the transducer; and applying at least one passive electrical circuit in series and/or parallel to the inductance, the at least one electrical passive circuit being a linear circuit; and synthesizing the linear circuit using known input impedance/admittance of the transducer.
- 18. The method of claim 17, further comprising the step of optimizing the linear circuit on the basis of a broadband matching theory.
- 19. The method of claim 18, further comprising the step of optimizing the generator output impedance to obtain a predetermined ringing at a given input signal.
- 20. A method for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising the steps of:applying at least one inductance in series and/or in parallel to the transducer electrical terminals to obtain a decreased dead zone of the transducer; and applying at least one passive electrical circuit in series and/or parallel to the inductance, the at least one electrical passive circuit being a linear circuit; and constructing the linear circuit with a higher order transfer function and including at least one capacitor and at least one inductor.
- 21. An arrangement for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising:a first electrical passive circuit adapted to be coupled to the transducer, said first circuit including at least one inductance adapted to be in series and/or in parallel to the transducer to obtain a decreased dead zone of the transducer; said first circuit further comprising switching means for modifying said first circuit such that a first construction of said first circuit is coupled to the transducer when the transducer is in a transmission mode and a second construction of said first circuit, different from said first construction, is coupled to the transducer when the transducer is in a reception mode.
- 22. An arrangement for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising:a first electrical passive circuit adapted to be coupled to the transducer, said first circuit including at least one inductance adapted to be in series and/or in parallel to the transducer to obtain a decreased dead zone of the transducer, said first circuit being a linear circuit, said linear circuit being synthesized using known input impedance/admittance of the transducer.
- 23. The arrangement of claim 22, wherein said linear circuit is optimized on the basis of a broadband matching theory.
- 24. The arrangement of claim 23, wherein the generator output impedance is optimized to obtain a predetermined ringing at a given input signal.
- 25. An arrangement for reducing ringing of dual-function, air-coupled ultrasonic transducers, comprising:a first electrical passive circuit adapted to be coupled to the transducer, said first circuit including at least one inductance adapted to be in series and/or in parallel to the transducer to obtain a decreased dead zone of the transducer, said first circuit being a linear circuit, said linear circuit being constructed with a higher order transfer function and includes at least one capacitor and at least one inductor.
- 26. A dampening circuit for reducing ringing of dual-function, air-coupled ultrasonic transducers having a ring down time and an echo time, comprising:a resistor; an inductor connected in series with said resistor; and a switching device arranged to switch said resistor and said inductor into a circuit with the transducer during the ring down time and out of circuit with the transducer during the echo time.
- 27. A method for reducing ringing of dual-function ultrasonic, air-coupled transducers, comprising the steps of:providing a plurality of electrical components having variable characteristics, the electrical components including an inductor and a resistor; coupling the components to the transducer such that the inductor and resistor are in series and/or in parallel with the transducer; and controlling the characteristics of the electrical components in conjunction with the operation of the transducer such that a first circuit having specific characteristics is coupled to the transducer during a transmission mode of the transducer and a second circuit having different characteristics than the first circuit is coupled to the transducer during the reception mode of the transducer to obtain a decreased dead zone of the transducer.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No 10/100,282 filed Mar. 18, 2002, now abandoned.
This application claims priority of U.S. provisional patent application Ser. No. 60/276,461 filed Mar. 16, 2001 through U.S. patent application Ser. No. 10/100,282 filed Mar. 18, 2002.
US Referenced Citations (3)
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Date |
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|
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Oct 1978 |
A |
|
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|
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Non-Patent Literature Citations (2)
| Entry |
| Influence of Pulse Drive Shape and Tuning on the Broadband Response of a Transducer, Ron McKeighen, Proc. IEEE Ultrasonics Symposium, vol. 2, pp. 1637-1642, 1997. |
| The Design of Broadband and Efficient Acoustic Wave Transducers, C.H. Chou et al., 1980 Ultrasonics Symposium, Nov. 4-7, 1980. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/276461 |
Mar 2001 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
10/100282 |
Mar 2002 |
US |
| Child |
10/208522 |
|
US |