Haitao ChengRende MuSiamak EbadiYaohan ChenLinan AnXun Gong
Wireless passive temperature sensors for harsh-environment applications based on cylindrical microwave cavity resonators are presented herein. Slot antennas are integrated with sensors with zero additional volume. The resonant frequencies of the sensors are determined by the dielectric constants of the ceramic materials, which monotonically increase versus temperature. Silicoboron carbonitride (SiBCN) ceramic materials, which are very robust inside harsh environments featuring high temperatures and corrosive gases, are optimized in this paper to reduce dielectric losses and increase sensing ranges and accuracies. A robust interrogation antenna is developed to wirelessly measure the sensors up to 1300 °C. Two sensors based on Si 6 B 1 and Si 4 B 1 ceramics are measured up to 1050 °C and 1300 °C, respectively, with a sensitivity of ~0.78 MHz/°C at 1050 °C. This type of wireless, passive, and robust sensor can be used for many harsh-environment applications, such as gas turbines.
Haitao ChengGang ShaoSiamak EbadiRende MuKyle HarrisJian LiuChengying XuLinan AnXun Gong
Qiulin TanTanyong WeiXiaoyong ChenTao LuoGuozhu WuChen LiJijun Xiong
Kavin Sivaneri Varadharajan IdhaiamEdward M. SabolskyKatarzyna SabolskyLawrence RedingerHarish PalakurthiDaryl ReynoldsKostas Sierros
Ya WangYi JiaQiushui ChenYanyun Wang