Title :
SAR500 - A high-precision high-stability butterfly gyroscope with north seeking capability
Author :
Lapadatu, Daniel ; Blixhavn, Bjorn ; Holm, Reidar ; Kvisteroy, Terje
Author_Institution :
Sensonor Technol. AS, Horten, Norway
Abstract :
This paper describes a novel high-precision, low-noise, high-stability, calibrated and compensated digital oscillatory gyroscope with SPI interface, housed in custom-made ceramic packages. The device is factory-calibrated and compensated for temperature effects to provide high-accuracy digital output over a broad temperature range. Optimized tuning of the excitation and detection frequencies, as well as optimized mechanical and electrical balancing result in low sensitivity to shock and vibrations. By utilizing a unique sealed cavity technology, the vibrating elements of the gyroscope are contained within the low-pressure hermetic environment needed for high Q factors. Further on, improved stability of the device is achieved by full design symmetry, high thermal efficiency and choice of crystalline materials in the entire structure.
Keywords :
Ceramics; Electric shock; Frequency; Gyroscopes; Packaging; Q factor; Temperature distribution; Temperature sensors; Tuning; Vibrations; high-performance; high-stability; low-noise; north seeking capable MEMS gyroscope;
Conference_Titel :
Position Location and Navigation Symposium (PLANS), 2010 IEEE/ION
Conference_Location :
Indian Wells, CA, USA
Print_ISBN :
978-1-4244-5036-7
Electronic_ISBN :
2153-358X
DOI :
10.1109/PLANS.2010.5507139