DocumentCode
590470
Title
Sensitivity characteristics in the packaged inline RF MEMS power sensors under different temperature and humidity environments
Author
Zhiqiang Zhang ; Xiaoping Liao
Author_Institution
Key Lab. of MEMS of the Minist. of Educ., Southeast Univ., Nanjing, China
fYear
2012
fDate
28-31 Oct. 2012
Firstpage
1
Lastpage
4
Abstract
This paper presents the research on sensitivity characteristics in the packaged 8-10 GHz GaAs MMIC-based inline RF MEMS power sensors under different temperature and humidity environments. In order to achieve inline self-detection systems in RF receivers and transmitters under different operation environments, the effects of the temperature between 5 °-75 ° and the relative humidity between 25%-95% on the linearity and the sensitivity of the packaged power sensors are investigated. Measured results show that the packaged inline power sensors under different temperature and relative humidity maintain the good linearity of the output response at 8-10 GHz. Furthermore, experiments demonstrate that the effects of the temperature on the output thermovoltages and the sensitivity are larger at 8-10 GHz, which result in the 33.3% increase in sensitivity at 10 GHz for the temperature from 5 ° to 75 °. While the effects of the relative humidity on that are smaller at 8-10 GHz, which result in only the 7.9% increase in sensitivity at 10 GHz for the relative humidity from 25% to 95%.
Keywords
MMIC; gallium arsenide; integrated circuit packaging; microsensors; microwave measurement; power measurement; radio receivers; radio transmitters; GaAs; MMIC based inline RF MEMS; RF receivers; RF transmitters; frequency 8 GHz to 10 GHz; humidity environment; packaged inline RF MEMS power sensors; self-detection systems; sensitivity characteristics; temperature 5 C to 75 C; temperature environment; Humidity; Micromechanical devices; Radio frequency; Sensitivity; Temperature measurement; Temperature sensors;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensors, 2012 IEEE
Conference_Location
Taipei
ISSN
1930-0395
Print_ISBN
978-1-4577-1766-6
Electronic_ISBN
1930-0395
Type
conf
DOI
10.1109/ICSENS.2012.6411284
Filename
6411284
Link To Document