This paper presents a passive wireless resonating sensor that is based on a ferroelectric varactor. The sensor replies with its data at an intermodulation frequency when a reader device illuminates it at 2 closely located frequencies. The paper derives a theoretical equation for the response of such a sensor, verifies the theory by simulations, and demonstrates a temperature sensor based on a ferroelectric varactor
High temperature sensors capable of operating in harsh environments are needed in order to prevent d...
For the first time, a lateral-extensional piezoelectric MEMS resonator is utilized to enable wireles...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 °...
This paper presents a passive wireless resonating sensor that is based on a ferroelectric varactor. ...
Described herein is a passive wireless resonating non-linear sensor that is typically based on a fer...
This paper presents a method of wirelessly sensing the resonant frequency of passive resonators usin...
A novel wireless temperature sensing mechanism is proposed using a cylindrical cavity resonator load...
This paper presents a new passive wireless sensor platform on the basis of the intermodulation commu...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
This paper reviews different kinds of passive wireless sensors utilizing the intermodulation communi...
This paper presents a general intermodulation read-out principle for passive wireless sensors. A sen...
To meet measurement needs in harsh environments, such as high temperature and rotating applications,...
A wireless passive sensing approach is proposed to measure the resonant frequency of a dielectricall...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
The context of this chapter is the development of passive sensors for temperature sensing applicatio...
High temperature sensors capable of operating in harsh environments are needed in order to prevent d...
For the first time, a lateral-extensional piezoelectric MEMS resonator is utilized to enable wireles...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 °...
This paper presents a passive wireless resonating sensor that is based on a ferroelectric varactor. ...
Described herein is a passive wireless resonating non-linear sensor that is typically based on a fer...
This paper presents a method of wirelessly sensing the resonant frequency of passive resonators usin...
A novel wireless temperature sensing mechanism is proposed using a cylindrical cavity resonator load...
This paper presents a new passive wireless sensor platform on the basis of the intermodulation commu...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
This paper reviews different kinds of passive wireless sensors utilizing the intermodulation communi...
This paper presents a general intermodulation read-out principle for passive wireless sensors. A sen...
To meet measurement needs in harsh environments, such as high temperature and rotating applications,...
A wireless passive sensing approach is proposed to measure the resonant frequency of a dielectricall...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
The context of this chapter is the development of passive sensors for temperature sensing applicatio...
High temperature sensors capable of operating in harsh environments are needed in order to prevent d...
For the first time, a lateral-extensional piezoelectric MEMS resonator is utilized to enable wireles...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 °...