C-Axis oriented ScAlN/SiO2 multilayer BAW transformer for rectifying antenna applications

研究成果: Conference contribution

抄録

Energy harvesting from surrounding electromagnetic wave is attractive for IoT passive sensor platform. A rectifying antenna (rectenna), which is composed of antenna and diode, is generally used for RF-DC conversion in energy harvesting systems. voltage-boosting devices should be integrated into rectennas for high conversion efficiency. We have previously reported the bulk acoustic wave (BAW) transformer based on c-axis zig-zag multilayers ScAlN film in order to use as a voltage-boosting device in the rectenna. However, it is tough to grow this multilayer in a large area for the present. In this study, we introduce a new type of BAW transformer based on alternate layers of piezoelectric and non-piezoelectric thin films, which can be fabricated in a large area easily by using common sputtering systems. BAW transformers, which were based on 4 layers ScAlN/ SiO2 film were fabricated. ScAlN thin films were used as piezoelectric layers and SiO2 thin films were used as non-piezoelectric layers. The experimental voltage gain was calculated using S parameters of the BAW transformer measured by a network analyzer (E5071C). The theoretical voltage gain was simulated by Mason's equivalent circuit model. As a result, voltage gain approaching +9.5dB with the 4 layers BAW transformer was obtained. This structure is suitable for BAW transformer applications.

本文言語English
ホスト出版物のタイトルIUS 2020 - International Ultrasonics Symposium, Proceedings
出版社IEEE Computer Society
ISBN(電子版)9781728154480
DOI
出版ステータスPublished - 2020 9 7
イベント2020 IEEE International Ultrasonics Symposium, IUS 2020 - Las Vegas, United States
継続期間: 2020 9 72020 9 11

出版物シリーズ

名前IEEE International Ultrasonics Symposium, IUS
2020-September
ISSN(印刷版)1948-5719
ISSN(電子版)1948-5727

Conference

Conference2020 IEEE International Ultrasonics Symposium, IUS 2020
国/地域United States
CityLas Vegas
Period20/9/720/9/11

ASJC Scopus subject areas

  • 音響学および超音波学

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