After optimizing for electromechanical coupling coefficient K2, the main performance improvement in the thin film bulk acoustic wave resonators and filters can be achieved by improving the Q value, i.e., minimizing the losses. In Bragg-reflector-based solidly mounted resonator technology, a significant improvement of Q has been achieved by optimizing the reflector not only for longitudinal wave, the intended operation mode, but also for shear waves. We have investigated the remaining acoustic radiation losses to the substrate in so-optimized 1850-MHz AlN resonators by removing the substrate underneath the resonators and comparing the devices with and without substrate by electrical characterization before and after the substrate removal. Se...
The tunable solidly mounted Ba0.25Sr0.75TiO3 (BSTO) thin film bulk acoustic wave resonators (TFBARs)...
Even though many thin-film piezoelectric aluminum nitride (AlN) on silicon (Si) Lamb wave resonators...
This work describes the performance of AlN-based bulk acoustic wave resonators built on top of insul...
After optimizing for electromechanical coupling coefficient K2, the main performance improvement in ...
Thin film bulk acoustic wave (BAW) resonators and filters operating in the GHz range are used in mob...
Mobile communication has grown explosively in recent years, leading to a strong demand for cheap, bu...
This dissertation presents the fabrication and characterization of the AlN thin film bulk acoustic w...
Correlations between microstructure and Q-factor of tunable solidly mounted Ba(0.25)Sr(0.75)TiO(3) (...
In recent years there has been a huge increase in the growth of communication systems such as mobile...
Modelling and development of high Q thin-film bulk acoustic wave (BAW) devices is a topic of researc...
Thin film bulk acoustic wave (BAW) resonators (FBAR) are fabricated on a silicon nitride bridge usin...
The acoustic wave fields excited in a 1.8 GHz AlN thin film bulk acoustic wave resonator are measure...
Film Bulk Acoustic wave Resonators (FBAR’s) are a promising new technology for high performance reso...
The quality factor (Q) of the Solidly Mounted Resonator is limited by acoustic losses caused by wave...
Thin-film bulk-acoustic-wave (BAW) devices are used for RF selectivity in mobile communication syste...
The tunable solidly mounted Ba0.25Sr0.75TiO3 (BSTO) thin film bulk acoustic wave resonators (TFBARs)...
Even though many thin-film piezoelectric aluminum nitride (AlN) on silicon (Si) Lamb wave resonators...
This work describes the performance of AlN-based bulk acoustic wave resonators built on top of insul...
After optimizing for electromechanical coupling coefficient K2, the main performance improvement in ...
Thin film bulk acoustic wave (BAW) resonators and filters operating in the GHz range are used in mob...
Mobile communication has grown explosively in recent years, leading to a strong demand for cheap, bu...
This dissertation presents the fabrication and characterization of the AlN thin film bulk acoustic w...
Correlations between microstructure and Q-factor of tunable solidly mounted Ba(0.25)Sr(0.75)TiO(3) (...
In recent years there has been a huge increase in the growth of communication systems such as mobile...
Modelling and development of high Q thin-film bulk acoustic wave (BAW) devices is a topic of researc...
Thin film bulk acoustic wave (BAW) resonators (FBAR) are fabricated on a silicon nitride bridge usin...
The acoustic wave fields excited in a 1.8 GHz AlN thin film bulk acoustic wave resonator are measure...
Film Bulk Acoustic wave Resonators (FBAR’s) are a promising new technology for high performance reso...
The quality factor (Q) of the Solidly Mounted Resonator is limited by acoustic losses caused by wave...
Thin-film bulk-acoustic-wave (BAW) devices are used for RF selectivity in mobile communication syste...
The tunable solidly mounted Ba0.25Sr0.75TiO3 (BSTO) thin film bulk acoustic wave resonators (TFBARs)...
Even though many thin-film piezoelectric aluminum nitride (AlN) on silicon (Si) Lamb wave resonators...
This work describes the performance of AlN-based bulk acoustic wave resonators built on top of insul...