2 <;/span> eff in the range of 14.2 to 16%, which the author"/>
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Highly Doped AlScN 3.5 GHz XBAW Resonators with 16% K2eff for 5G RF Filter Applications

PROCEEDINGS OF THE 2020 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS)(2020)

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摘要
The authors report 3.5 GHz bulk acoustic wave resonators with an observed k<;span style="font-size: 14.5px;"> 2 <;/span> eff in the range of 14.2 to 16%, which the authors believe to be amongst the highest reported for a Sc mole fraction of 28%. The measured Q p is as high as 951 at 3.5 GHz, which is 3.8 times higher than recently reported for resonators at comparable Sc mole fractions. A high Q max of 1070 combined with the high k<;span style="font-size: 14.5px;"> 2 <;/span> eff achieves the highest reported FOM at 158 for a Sc mole fraction of 28%. Furthermore, randomly selected 3.5 GHz devices mounted on evaluation PCB boards were power tested and damaged at CW power levels between +40 dBm and +41.5 dBm, indicating high power performance capability.
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关键词
RF Filters,mobile communication,piezoelectric devices,AlScN,electromechanical devices,MEMs,wide band gap semiconductors,bulk acoustic wave resonators,5G,acoustic filters,coexistence,BAW filters,WiFi
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