Kochhar Abhay, Yamamoto Yasuo, Teshigahara Akihiko, Hashimoto Ken-Ya, Tanaka Shuji, Esashi Masayoshi
IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Jul;63(7):953-60. doi: 10.1109/TUFFC.2016.2539226. Epub 2016 Mar 11.
Some previously reported surface acoustic wave (SAW) devices using bulk piezoelectric substrates showed higher acoustic power radiated in either forward or backward wave propagation direction depending on their crystal orientations and are called natural single-phase unidirectional transducers (NSPUDT). While these reports were based on bulk piezoelectric substrates, we report directionality in the c-axis tilted 44% scandium doped aluminum nitride thin piezoelectric film-based SAW devices on sapphire. It is worth noting that our observance of directionality is specifically in Sezawa mode. We produced a c-axis tilt up to 5.5° over the single wafer and examined the directionality by comparing the forward and backward insertion loss utilizing split finger electrodes as a receiver. The wave propagation direction and c-axis tilt angle influence on the performance of SAW devices is evaluated. Furthermore, return loss and insertion loss data are presented for various SAW propagation directions and c-axis tilt angles. Finally, the comparison for both acoustic modes, i.e., Rayleigh and Sezawa, is reported.
一些先前报道的使用块状压电基片的表面声波(SAW)器件,根据其晶体取向,在向前或向后波传播方向上表现出更高的声功率辐射,这些器件被称为天然单相单向换能器(NSPUDT)。虽然这些报道基于块状压电基片,但我们报道了在蓝宝石上基于c轴倾斜44%的掺钪氮化铝压电薄膜的SAW器件中的方向性。值得注意的是,我们观察到的方向性具体是在泽瓦模式下。我们在单个晶圆上实现了高达5.5°的c轴倾斜,并通过使用分裂指状电极作为接收器比较向前和向后插入损耗来研究方向性。评估了波传播方向和c轴倾斜角对SAW器件性能的影响。此外,还给出了各种SAW传播方向和c轴倾斜角的回波损耗和插入损耗数据。最后,报道了对瑞利和泽瓦这两种声学模式的比较。