Sensing systems are becoming less and less invasive. In this context, flexible materials offer new opportunities that are impossible to achieve with bulky and rigid chips. Standard silicon sensors cannot be adapted to curved shapes and are susceptible to big deformations, thus discouraging their use in wearable applications. Another step forward toward minimising the impacts of the sensors can be to avoid the use of cables and connectors by exploiting wireless transmissions at ultra-high frequencies (UHFs). Thin-film bulk acoustic wave resonators (FBARs) represent the most promising choice among all of the piezoelectric microelectromechanical system (MEMS) resonators for the climbing of radio frequencies. Accordingly, the fabrication of FBA...
Electroacoustic technology has in many ways revolutionised the wireless telecommunication industry. ...
ABSTRACT: This paper investigates the issues on acoustic energy reflection of flexible film bulk aco...
This work presents a promising ultrasound wearable technology based on a piezoelectric transducer, r...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
This paper reports a novel solid-mounted flexible film bulk acoustic resonator (FBAR) directly on po...
This paper reports a novel solid-mounted flexible film bulk acoustic resonator (FBAR) directly on po...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The utilisation of thin film technology to develop film bulk acoustic resonators (FBARs) and solidly...
Film bulk acoustic resonators (FBARs) and solidly mounted resonators (SMRs) have the potential to si...
This work makes an overview of the progress made during the last decade with regard to a novel class...
Wearable auditory sensors are critical in user-friendly sound-recognition systems for smart human-ma...
Electroacoustic technology has in many ways revolutionised the wireless telecommunication industry. ...
ABSTRACT: This paper investigates the issues on acoustic energy reflection of flexible film bulk aco...
This work presents a promising ultrasound wearable technology based on a piezoelectric transducer, r...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
The film bulk acoustic resonator (FBAR) is a widely-used MEMS device which can be used as a filter, ...
This paper reports a novel solid-mounted flexible film bulk acoustic resonator (FBAR) directly on po...
This paper reports a novel solid-mounted flexible film bulk acoustic resonator (FBAR) directly on po...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The utilisation of thin film technology to develop film bulk acoustic resonators (FBARs) and solidly...
Film bulk acoustic resonators (FBARs) and solidly mounted resonators (SMRs) have the potential to si...
This work makes an overview of the progress made during the last decade with regard to a novel class...
Wearable auditory sensors are critical in user-friendly sound-recognition systems for smart human-ma...
Electroacoustic technology has in many ways revolutionised the wireless telecommunication industry. ...
ABSTRACT: This paper investigates the issues on acoustic energy reflection of flexible film bulk aco...
This work presents a promising ultrasound wearable technology based on a piezoelectric transducer, r...