Thin film bulk acoustic wave (BAW) resonators (FBAR) are fabricated on a silicon nitride bridge using a ZnO piezolayer on a glass substrate and surface micromachining by standard thin film technology. These resonators exhibit a coupling constant kt2 = 7.8% at the first thickness extensional wave mode and are used as impedance elements in a ladder filter in the 1-GHz frequency band of mobile telecommunications. An electrical equivalent circuit is used to characterize the properties of the resonators and to show how the performance of the filter depends on the parameters of the resonators. 2.5% bandwidth, 2.8-dB insertion loss, and 35-dB selectivity are obtained in a filter with six resonators. The technology can be used to manufacture miniat...
Acoustically coupled thin-film bulk acoustic wave resonator filters, in which the coupling takes pla...
The development of mobile 5G technology poses new challenges for high-frequency and high-performance...
The development of mobile 5G technology poses new challenges for high-frequency and high-performance...
Thin film bulk acoustic wave (BAW) resonators (FBAR) are fabricated on a silicon nitride bridge usin...
Band pass filters for microwave frequencies realized with thin film bulk acoustic wave resonators (F...
Band pass filters for microwave frequencies realized with thin film bulk acoustic wave resonators (F...
Abstract- In recent years, there has been an exponential growth in wireless communication systems. T...
Thin film bulk acoustic wave (BAW) resonators and filters operating in the GHz range are used in mob...
Modelling and development of high Q thin-film bulk acoustic wave (BAW) devices is a topic of researc...
In the first edition of "The Nano-Micro Interface," we discussed the piezoelectric quality of zinc o...
Thin-film bulk-acoustic-wave (BAW) devices are used for RF selectivity in mobile communication syste...
The RF band pass filters are important for wireless communication applications. They can be realized...
Bulk acoustic wave (BAW) resonators are widely applied in filters and gravimetric sensors for physic...
Modelling and development of high Q thin-film bulk acoustic wave (BAW) devices is a topic of researc...
[[abstract]]A 2.45-GHz filter is fabricated by thin film bulk acoustic wave resonator (FBAR) technol...
Acoustically coupled thin-film bulk acoustic wave resonator filters, in which the coupling takes pla...
The development of mobile 5G technology poses new challenges for high-frequency and high-performance...
The development of mobile 5G technology poses new challenges for high-frequency and high-performance...
Thin film bulk acoustic wave (BAW) resonators (FBAR) are fabricated on a silicon nitride bridge usin...
Band pass filters for microwave frequencies realized with thin film bulk acoustic wave resonators (F...
Band pass filters for microwave frequencies realized with thin film bulk acoustic wave resonators (F...
Abstract- In recent years, there has been an exponential growth in wireless communication systems. T...
Thin film bulk acoustic wave (BAW) resonators and filters operating in the GHz range are used in mob...
Modelling and development of high Q thin-film bulk acoustic wave (BAW) devices is a topic of researc...
In the first edition of "The Nano-Micro Interface," we discussed the piezoelectric quality of zinc o...
Thin-film bulk-acoustic-wave (BAW) devices are used for RF selectivity in mobile communication syste...
The RF band pass filters are important for wireless communication applications. They can be realized...
Bulk acoustic wave (BAW) resonators are widely applied in filters and gravimetric sensors for physic...
Modelling and development of high Q thin-film bulk acoustic wave (BAW) devices is a topic of researc...
[[abstract]]A 2.45-GHz filter is fabricated by thin film bulk acoustic wave resonator (FBAR) technol...
Acoustically coupled thin-film bulk acoustic wave resonator filters, in which the coupling takes pla...
The development of mobile 5G technology poses new challenges for high-frequency and high-performance...
The development of mobile 5G technology poses new challenges for high-frequency and high-performance...