DocumentCode :
1381776
Title :
Differential Fringe-Field MEMS Accelerometer
Author :
Langfelder, Giacomo ; Tocchio, Alessandro
Author_Institution :
Dept. of Electron. & Inf., Politec. di Milano, Milan, Italy
Volume :
59
Issue :
2
fYear :
2012
Firstpage :
485
Lastpage :
490
Abstract :
A new differential microelectromechanical systems accelerometer based on fringe-field sensing is presented. The basic working principle relies on the generation of fringe electric fields in the volume in between and over two biased coplanar interconnections; a grounded suspended micromachined mass, moving in this fringe volume, differently intercepts the electric field lines for different positions, giving rise to capacitance changes between the interconnections, used as electrodes. The capacitance variation can be then transformed into a voltage signal using standard capacitive readout techniques. The design exploits a new geometry, a technological scaling, and for the first time, a differential configuration to reach a measured sensitivity of 2.7 fF/g in the tested range of ±2 g of external acceleration. With respect to parallel-plate configurations, the device is immune from in-plane pull-in instability as the suspended mass does not face fixed parts biased at different voltages.
Keywords :
accelerometers; capacitive sensors; electric fields; interconnections; micromachining; microsensors; readout electronics; biased coplanar interconnection; capacitance variation; capacitive readout technique; differential fringe-field MEMS accelerometer; differential microelectromechanical systems; electric field lines; electrodes; fringe electric field generation; fringe-field sensing; grounded suspended micromachined mass; in-plane pull-in instability; parallel-plate configurations; technological scaling; voltage signal; Accelerometers; Actuators; Capacitance; Electrodes; Sensitivity; Sensors; Springs; Inertial sensors; MEMS accelerometers; surface micromachining;
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2011.2174994
Filename :
6086606
Link To Document :
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