A novel wireless temperature sensor is presented herein for high-temperature applications. This sensor is robust in harsh environments using stable materials and purely passive structures. The resonant frequency of the sensor is determined by the temperature-dependent dielectric constant of the substrate material. The temperature can be wirelessly detected by sensing the resonant frequency of the sensor. The integration of the resonator and antenna enables realization of low-profile and compact sensors. Measured resonant frequency of the sensor decreases from 5.12 to 4.74 GHz when the temperature increases from 50°C to 1000°C. This corresponds to a variation of dielectric constant from 9.7 to 11.2 for the alumina substrate. The presented se...
The temperature sensor presented in this paper is based on a microwave dielectric resonator, which u...
The temperature sensor presented in this paper is based on a microwave dielectric resonator, which u...
The context of this chapter is the development of passive sensors for temperature sensing applicatio...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 °...
This thesis explores design challenges and promising solutions for temperature sensors for high temp...
This thesis explores design challenges and promising solutions for temperature sensors for high temp...
This thesis explores design challenges and promising solutions for temperature sensors for high temp...
High temperature sensors capable of operating in harsh environments are needed in order to prevent d...
A novel wireless temperature sensing mechanism is proposed using a cylindrical cavity resonator load...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 d...
A novel wireless temperature sensing mechanism is proposed using a cylindrical cavity resonator load...
Wireless passive temperature sensors have been receiving increasing attention due to the ever-growin...
Wireless passive temperature sensors have been receiving increasing attention due to the ever-growin...
The temperature sensor presented in this paper is based on a microwave dielectric resonator, which u...
The temperature sensor presented in this paper is based on a microwave dielectric resonator, which u...
The context of this chapter is the development of passive sensors for temperature sensing applicatio...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
A novel wireless temperature sensor is presented herein for high-temperature applications. This sens...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 °...
This thesis explores design challenges and promising solutions for temperature sensors for high temp...
This thesis explores design challenges and promising solutions for temperature sensors for high temp...
This thesis explores design challenges and promising solutions for temperature sensors for high temp...
High temperature sensors capable of operating in harsh environments are needed in order to prevent d...
A novel wireless temperature sensing mechanism is proposed using a cylindrical cavity resonator load...
A novel wireless passive temperature sensor based on a reflective patch is demonstrated up to 1050 d...
A novel wireless temperature sensing mechanism is proposed using a cylindrical cavity resonator load...
Wireless passive temperature sensors have been receiving increasing attention due to the ever-growin...
Wireless passive temperature sensors have been receiving increasing attention due to the ever-growin...
The temperature sensor presented in this paper is based on a microwave dielectric resonator, which u...
The temperature sensor presented in this paper is based on a microwave dielectric resonator, which u...
The context of this chapter is the development of passive sensors for temperature sensing applicatio...