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  4. Offset And Drift Analysis Of The Hall Effect Sensors. The Geometrical Parameters Influence
 
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research article

Offset And Drift Analysis Of The Hall Effect Sensors. The Geometrical Parameters Influence

Paun, Maria-Alexandra  
•
Sallese, Jean-Michel  
•
Kayal, Maher  
2012
Digest Journal Of Nanomaterials And Biostructures

Several Hall sensor configurations have been integrated in CMOS 0.35 mu m technology and analyzed in terms of offset at room temperature and offset drift. We searched for the best geometry that would minimize the offset and its corresponding drift. The targeted specifications were +/- 30 mu T for offset at room temperature and +/- 0.3 mu T/degrees C for the drift. The measurement setup developed to test the Hall Effect sensors allows a clean, reliable and fast analysis of a high number of the same type of cell, located on different positions on the chip. For each structure, information about the absolute sensitivity, residual offset and its drift is obtained. An important number of chips were tested in order to also provide statistical data. Maximization of the geometrical correction factor was also performed for Hall structures with small sensing contacts in order to ensure maximum sensitivity.

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Type
research article
Web of Science ID

WOS:000312709300004

Author(s)
Paun, Maria-Alexandra  
•
Sallese, Jean-Michel  
•
Kayal, Maher  
Date Issued

2012

Publisher

Inst Materials Physics

Published in
Digest Journal Of Nanomaterials And Biostructures
Volume

7

Issue

3

Start page

883

End page

891

Subjects

Hall effect sensor

•

Offset

•

Temperature drift

•

Absolute sensitivity

•

Automated measurements

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GR-KA  
EDLAB  
Available on Infoscience
March 28, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/91051
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