A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment

Contactless magnetic position sensors are used in countless industrial and automotive applications. However, as a consequence of the electrification trend the sensors can be exposed to parasitic magnetic stray fields, and their desired robustness may be compromised. In this paper we publish for the...

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Main Authors: Samuel Huber, Jan-Willem Burssens, Nicolas Dupré, Olivier Dubrulle, Yves Bidaux, Gael Close, Christian Schott
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Proceedings
Subjects:
Online Access:https://www.mdpi.com/2504-3900/2/13/809
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spelling doaj-ef1ff38c89624d7e8810d91a7df1c6262020-11-24T21:28:33ZengMDPI AGProceedings2504-39002018-12-0121380910.3390/proceedings2130809proceedings2130809A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh EnvironmentSamuel Huber0Jan-Willem Burssens1Nicolas Dupré2Olivier Dubrulle3Yves Bidaux4Gael Close5Christian Schott6Melexis, 2022 Bevaix, SwitzerlandMelexis, 3980 Tessenderlo, BelgiumMelexis, 2022 Bevaix, SwitzerlandMelexis, 8900 Ieper, BelgiumMelexis, 2022 Bevaix, SwitzerlandMelexis, 2022 Bevaix, SwitzerlandMelexis, 2022 Bevaix, SwitzerlandContactless magnetic position sensors are used in countless industrial and automotive applications. However, as a consequence of the electrification trend the sensors can be exposed to parasitic magnetic stray fields, and their desired robustness may be compromised. In this paper we publish for the first time how this challenge is addressed and constructively solved using a complete paradigm change leaving conventional magnetic field measurement behind and entering into the realm of magnetic field gradient measurement. Our novel sensor system consists of an integrated Hall sensor realized in 0.18 μm CMOS technology with magnetic concentrators and a four-pole permanent magnet. The intrinsic angular accuracy was assessed comparing the rotary position of the permanent magnet with the sensor output showing angle errors below 0.3°. Additional end-of-line calibration can be applied using built-in memory and processing capability to further increase the accuracy. Finally, we demonstrate the immunity against stray fields of 4000 A/m which led to errors below 0.1°, corresponding to 0.06% of the sensors fullscale angular range. In conclusion, this novel sensor system offers a compact and flexible solution for stray-field immune rotary position measurement in harsh environment.https://www.mdpi.com/2504-3900/2/13/809hall effectmagnetic sensorgradiometerrotary position sensorstray-field immunity
collection DOAJ
language English
format Article
sources DOAJ
author Samuel Huber
Jan-Willem Burssens
Nicolas Dupré
Olivier Dubrulle
Yves Bidaux
Gael Close
Christian Schott
spellingShingle Samuel Huber
Jan-Willem Burssens
Nicolas Dupré
Olivier Dubrulle
Yves Bidaux
Gael Close
Christian Schott
A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment
Proceedings
hall effect
magnetic sensor
gradiometer
rotary position sensor
stray-field immunity
author_facet Samuel Huber
Jan-Willem Burssens
Nicolas Dupré
Olivier Dubrulle
Yves Bidaux
Gael Close
Christian Schott
author_sort Samuel Huber
title A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment
title_short A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment
title_full A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment
title_fullStr A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment
title_full_unstemmed A Gradiometric Magnetic Sensor System for Stray-Field-Immune Rotary Position Sensing in Harsh Environment
title_sort gradiometric magnetic sensor system for stray-field-immune rotary position sensing in harsh environment
publisher MDPI AG
series Proceedings
issn 2504-3900
publishDate 2018-12-01
description Contactless magnetic position sensors are used in countless industrial and automotive applications. However, as a consequence of the electrification trend the sensors can be exposed to parasitic magnetic stray fields, and their desired robustness may be compromised. In this paper we publish for the first time how this challenge is addressed and constructively solved using a complete paradigm change leaving conventional magnetic field measurement behind and entering into the realm of magnetic field gradient measurement. Our novel sensor system consists of an integrated Hall sensor realized in 0.18 μm CMOS technology with magnetic concentrators and a four-pole permanent magnet. The intrinsic angular accuracy was assessed comparing the rotary position of the permanent magnet with the sensor output showing angle errors below 0.3°. Additional end-of-line calibration can be applied using built-in memory and processing capability to further increase the accuracy. Finally, we demonstrate the immunity against stray fields of 4000 A/m which led to errors below 0.1°, corresponding to 0.06% of the sensors fullscale angular range. In conclusion, this novel sensor system offers a compact and flexible solution for stray-field immune rotary position measurement in harsh environment.
topic hall effect
magnetic sensor
gradiometer
rotary position sensor
stray-field immunity
url https://www.mdpi.com/2504-3900/2/13/809
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