Design of matching layers for high-frequency ultrasonic transducers

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Abstract

Matching the acoustic impedance of high-frequency (≥100 MHz) ultrasound transducers to an aqueous loading medium remains a challenge for fabricating high-frequency transducers. The traditional matching layer design has been problematic to establish high matching performance given requirements on both specific acoustic impedance and precise thickness. Based on both mass-spring scheme and microwave matching network analysis, we interfaced metal-polymer layers for the matching effects. Both methods hold promises for guiding the metal-polymer matching layer design. A 100 MHz LiNbO 3 transducer was fabricated to validate the performance of the both matching layer designs. In the pulse-echo experiment, the transducer echo amplitude increased by 84.4% and its -6dB bandwidth increased from 30.2% to 58.3% comparing to the non-matched condition, demonstrating that the matching layer design method is effective for developing high-frequency ultrasonic transducers.

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Fei, C., Ma, J., Chiu, C. T., Williams, J. A., Fong, W., Chen, Z., … Zhou, Q. (2015). Design of matching layers for high-frequency ultrasonic transducers. Applied Physics Letters, 107(12). https://doi.org/10.1063/1.4931703

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