Bogner Andreas, Steiner Carsten, Walter Stefanie, Kita Jaroslaw, Hagen Gunter, Moos Ralf
Department of Functional Materials, University of Bayreuth, 95447 Bayreuth, Germany.
Sensors (Basel). 2017 Oct 24;17(10):2422. doi: 10.3390/s17102422.
A planar microstrip ring resonator structure on alumina was developed using the commercial FEM software COMSOL. Design parameters were evaluated, eventually leading to an optimized design of a miniaturized microwave gas sensor. The sensor was covered with a zeolite film. The device was successfully operated at around 8.5 GHz at room temperature as a humidity sensor. In the next step, an additional planar heater will be included on the reverse side of the resonator structure to allow for testing of gas-sensitive materials under sensor conditions.
利用商业有限元软件COMSOL开发了一种基于氧化铝的平面微带环形谐振器结构。对设计参数进行了评估,最终得到了一种小型化微波气体传感器的优化设计。该传感器覆盖有沸石薄膜。该器件在室温下作为湿度传感器在8.5GHz左右成功运行。下一步,将在谐振器结构的背面增加一个平面加热器,以便在传感器条件下测试气敏材料。