International audienceAnti-symmetrical Lamb wave mode A(0) presents a large sensitivity to mass loading and can be used in contact with liquids with a small attenuation. The advantages of this system are the possibility to get a large mass sensitivity. The sensitivity increases when the thickness of membrane decreases. Therefore the problem is to obtain thin piezoelectric membranes. A membrane of A1N with a thickness of 2 mu m has been made. The measured mass sensitivity with a fluid is 200 cm(2) g(-1). In a practical use point of view, the problem in this kind of sensor is its temperature sensitivity. In order to reduce effective temperature sensitivity, a device with thin metallic strips is presented. On the same membrane two different wa...
In this article, we present numerically and experimentally a tunable phononic membrane as an efficie...
In this article, we present numerically and experimentally a tunable phononic membrane as an efficie...
International audienceA novel Lamb wave resonator with fully suppressed acoustic radiation in water ...
International audienceBoth thermal sensitivity and mass sensitivity in liquid of the first antisymme...
AbstractThin film plate acoustic resonators (FPAR) devices operating in the lowest order symmetric L...
A piezoelectric AlN-on-SOI structured MEMS Lamb wave resonator (LWR) is presented for high-temperatu...
AbstractThin film plate acoustic resonators (FPAR) devices operating in the lowest order symmetric L...
In this letter, a Microelectromechanical system acoustic wave sensor, which has a dual mode (lateral...
The recent development of the commercially viable thin film electro-acoustic technology has triggere...
A piezoelectric FPW-sensor has been developed for a point of care device in this work. The Bio- MEMS...
International audienceOne method for evanescent wave measurement of the Lamb wave biosensor is propo...
The recent development of the commercially viable thin film electro-acoustic technology has triggere...
This paper describes the development of a novel ruggedized high-temperature pressure sensor operatin...
This paper describes the development of a novel ruggedized high-temperature pressure sensor operatin...
This work makes an overview of the progress made during the last decade with regard to a novel class...
In this article, we present numerically and experimentally a tunable phononic membrane as an efficie...
In this article, we present numerically and experimentally a tunable phononic membrane as an efficie...
International audienceA novel Lamb wave resonator with fully suppressed acoustic radiation in water ...
International audienceBoth thermal sensitivity and mass sensitivity in liquid of the first antisymme...
AbstractThin film plate acoustic resonators (FPAR) devices operating in the lowest order symmetric L...
A piezoelectric AlN-on-SOI structured MEMS Lamb wave resonator (LWR) is presented for high-temperatu...
AbstractThin film plate acoustic resonators (FPAR) devices operating in the lowest order symmetric L...
In this letter, a Microelectromechanical system acoustic wave sensor, which has a dual mode (lateral...
The recent development of the commercially viable thin film electro-acoustic technology has triggere...
A piezoelectric FPW-sensor has been developed for a point of care device in this work. The Bio- MEMS...
International audienceOne method for evanescent wave measurement of the Lamb wave biosensor is propo...
The recent development of the commercially viable thin film electro-acoustic technology has triggere...
This paper describes the development of a novel ruggedized high-temperature pressure sensor operatin...
This paper describes the development of a novel ruggedized high-temperature pressure sensor operatin...
This work makes an overview of the progress made during the last decade with regard to a novel class...
In this article, we present numerically and experimentally a tunable phononic membrane as an efficie...
In this article, we present numerically and experimentally a tunable phononic membrane as an efficie...
International audienceA novel Lamb wave resonator with fully suppressed acoustic radiation in water ...