Assylbekova Meruyert, Pirro Michele, Zhao Xuanyi, Michetti Giuseppe, Simeoni Pietro, Rinaldi Matteo
SMART Center, Northeastern University, Boston, MA 02115, USA.
Micromachines (Basel). 2023 Feb 23;14(3):515. doi: 10.3390/mi14030515.
The increasing use of mobile broadband requires new acoustic filtering technologies that can operate efficiently at frequencies above 6 GHz. Previous research has shown that AlN Super High Frequency (SHF) Cross-Sectional Lamé Mode resonators (CLMRs) can address this challenge, but their performance is limited by the piezoelectric strength of AlN. In this work, we explore the use of substitutional doping of Al in AlN with Sc to enhance the kt2 values of SHF CLMRs. Our results showed that the measured kt2·Qm product of Al72Sc28N CLMRs was four times greater than that of AlN CLMRs operating at the same frequency. Additionally, the measured fractional bandwidth (FWB) of Al72Sc28N 2nd order ladder filters was 4.13%, a fourfold improvement over AlN filters with the same design. We also discuss other aspects of the technology, such as power handling, losses, and spurious mode suppression, and identify potential areas for future research.
移动宽带的使用日益增加,这就需要新的声学滤波技术,使其能够在6GHz以上的频率高效运行。先前的研究表明,氮化铝超高频(SHF)横截面拉梅模式谐振器(CLMR)能够应对这一挑战,但其性能受到氮化铝压电强度的限制。在这项工作中,我们探索通过用钪替代掺杂氮化铝中的铝来提高SHF CLMR的kt2值。我们的结果表明,Al72Sc28N CLMR的实测kt2·Qm乘积比在相同频率下工作的AlN CLMR大四倍。此外,Al72Sc28N二阶梯形滤波器的实测分数带宽(FWB)为4.13%,比采用相同设计的AlN滤波器提高了四倍。我们还讨论了该技术的其他方面,如功率处理、损耗和杂散模式抑制,并确定了未来研究的潜在领域。