Jiang Yuan, Zhao Yuan, Zhang Lin, Liu Bohua, Li Quanning, Zhang Menglun, Pang Wei
State Key Laboratory of Precision Measuring Technology and Instruments, Tianjin University, Tianjin, 300072, China.
College of Precision Instrument and Opto-electronics Engineering, Tianjin University, Tianjin, 300072, China.
Small. 2018 May;14(20):e1703644. doi: 10.1002/smll.201703644. Epub 2018 Mar 30.
This paper presents a flexible radiofrequency filter with a central frequency of 2.4 GHz based on film bulk acoustic wave resonators (FBARs). The flexible filter consists of five air-gap type FBARs, each comprised of an aluminum nitride piezoelectric thin film sandwiched between two thin-film electrodes. By transfer printing the inorganic film structure from a silicon wafer to an ultrathin polyimide substrate, high electrical performance and mechanical flexibility are achieved. The filter has a peak insertion loss of -1.14 dB, a 3 dB bandwidth of 107 MHz, and a temperature coefficient of frequency of -27 ppm °C . The passband and roll-off characteristics of the flexible filter are comparable with silicon-based commercial products. No electrical performance degradation and mechanical failure occur under bending tests with a bending radius of 2.5 mm or after 100 bending cycles. The flexible FBAR filters are believed to be promising candidates for future flexible wireless communication systems.
本文介绍了一种基于薄膜体声波谐振器(FBAR)的中心频率为2.4 GHz的柔性射频滤波器。该柔性滤波器由五个气隙型FBAR组成,每个FBAR由夹在两个薄膜电极之间的氮化铝压电薄膜构成。通过将无机薄膜结构从硅片转移印刷到超薄聚酰亚胺基板上,实现了高电气性能和机械柔韧性。该滤波器的峰值插入损耗为-1.14 dB,3 dB带宽为107 MHz,频率温度系数为-27 ppm/°C。该柔性滤波器的通带和滚降特性与硅基商用产品相当。在弯曲半径为2.5 mm的弯曲测试下或经过100次弯曲循环后,未出现电气性能下降和机械故障。柔性FBAR滤波器被认为是未来柔性无线通信系统的有前途的候选者。