DocumentCode :
3721977
Title :
Robust digital calibration engine for MEMS inertial sensor systems
Author :
Sascha Heinssen;Nico Hellwege;Nils Heidmann;Steffen Paul;Dagmar Peters-Drolshagen
Author_Institution :
Institute of Electrodynamics and Microelectronics (ITEM.me) University of Bremen, Bremen, Germany
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
The precise measurement of acceleration is usually performed by MEMS capacitive sensors, which provide very low signal amplitudes. Therefore, a robust and highly accurate read-out system is required to process these output signals. In this paper we present an innovative concept for relaxing the requirements on the analog components of the read-out system by using digital calibration techniques. The design uses adaptive filters in a correlation-based calibration system, which continuously detects errors and corrects the digital output signal without interrupting normal sensor activities. Permanent and time-variant linear gain errors can be corrected and the complete sensor system becomes more robust against changing ambient conditions. The proposed concept has been successfully verified to correct different gain errors in a 350nm CMOS sensor interface.
Keywords :
"Calibration","Sensor systems","Temperature sensors","Engines","Micromechanical devices","Gain","Robustness"
Publisher :
ieee
Conference_Titel :
SENSORS, 2015 IEEE
Type :
conf
DOI :
10.1109/ICSENS.2015.7370520
Filename :
7370520
Link To Document :
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