DocumentCode :
3122589
Title :
Precise vector-2D magnetic field sensor system for electronic compass
Author :
Baschirotto, A. ; Dallago, E. ; Malcovati, P. ; Marchesi, M. ; Venchi, G.
Author_Institution :
Dept. of Innovation Eng., Lecce Univ., Italy
fYear :
2004
fDate :
24-27 Oct. 2004
Firstpage :
1028
Abstract :
An high sensitivity vector-2D magnetic sensor system for low magnetic field measurements has been realized and tested. The system, realized in PCB technology, consists of a double axis fluxgate magnetic sensor with its front-end electronic circuitry based on second-harmonic detection. The amorphous magnetic materials Vitrovac 6025X (25 μm thick) and Vitrovac 6025Z (20 μm thick) were used as a ferromagnetic core for the sensor. Applying a sinusoidal excitation current of 450 mA peak at 10 kHz with the Vitrovac 6025Z, the magnetic sensitivity was about 1.25 mV/μT, suitable for detecting the Earth´s magnetic field (±60 μT), while the linearity error is 1.5% full scale. Using the thicker Vitrovac 6025X, a maximum sensitivity of about 1.68 mV/μT and a linearity error of about 1.55% full scale in the range of ±60 μT were obtained with a larger sinusoidal excitation current of 600 mA peak at 10 kHz. The 2D vector sensor system presented is characterized by a very simple process fabrication due to the use of commercially available very thin ferromagnetic material.
Keywords :
amorphous magnetic materials; compasses; fluxgate magnetometers; magnetic sensors; measurement errors; navigation; printed circuits; 10 kHz; 20 micron; 25 micron; 450 mA; 600 mA; Earth magnetic field; PCB technology; Vitrovac 6025X amorphous magnetic materials; Vitrovac 6025Z amorphous magnetic materials; double axis fluxgate magnetic sensor; electronic compass; fabrication process; linearity error; low magnetic field measurements; magnetic sensitivity; second-harmonic detection based front-end electronic circuitry; sensor ferromagnetic core; sinusoidal excitation current; vector-2D magnetic field sensor system; Amorphous magnetic materials; Circuit testing; Earth; Linearity; Magnetic circuits; Magnetic cores; Magnetic field measurement; Magnetic sensors; Sensor systems; System testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors, 2004. Proceedings of IEEE
Print_ISBN :
0-7803-8692-2
Type :
conf
DOI :
10.1109/ICSENS.2004.1426349
Filename :
1426349
Link To Document :
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