Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator

The paper presents results on research and optimization on the basis of device-technological modeling of the structural and operational characteristics of the magnetosensitive sensor with a disk-shaped integrated magnetic concentrator (IMC). The high magnetic permeability of the IMC material provide...

Full description

Saved in:
Bibliographic Details
Main Authors: V. R. Stempitsky, Dinh Ha Dao
Format: Article
Language:English
Published: Politehperiodika 2018-06-01
Series:Tekhnologiya i Konstruirovanie v Elektronnoi Apparature
Subjects:
Online Access:https://tkea.com.ua/index.php/journal/article/view/155
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850178109233430528
author V. R. Stempitsky
Dinh Ha Dao
author_facet V. R. Stempitsky
Dinh Ha Dao
author_sort V. R. Stempitsky
collection DOAJ
description The paper presents results on research and optimization on the basis of device-technological modeling of the structural and operational characteristics of the magnetosensitive sensor with a disk-shaped integrated magnetic concentrator (IMC). The high magnetic permeability of the IMC material provides a high value of the induction of the magnetic field along its edges, which leads to a significant enhancement of the applied external field. The IMC plays the role of a magnetic amplifier, and also affects the signal-to-noise and signal-to-bias ratios; the magnetic gain depends not only on the size of the IMC, but also on its shape. This research is devoted to the development of a disc-shaped magnetic concentrator integrated into the Hall sensor. The concentrator has a high magnetic flux gain and can be used in 3D magnetic field recording systems. Analysis of the geometric dimensions, deflection angle and the material of the integrated magnetic concentrator influence on the characteristics of a three-dimensional magnetic field sensor showed that the inclusion of a ferromagnetic concentrator in the Hall sensor design provides a significant (up to 10 times) increase in the magnetic flux gain. This makes it possible to use the investigated sensor designs to detect weak magnetic fields (from 0.01 μT to 2 mT). It is shown that a supermindure integrated magnetic disc-shaped concentrator with a diameter of D = 200 μm, a thickness of l = 10 μm and an angle of deflection of θ = 60° provides a magnetic flux gain G = 10.81 with a maximum external magnetic field of B0 = 120 mT. The obtained results indicate the prospects of using the proposed constructive solution for the practical manufacture of three-dimensional sensors of weak magnetic fields with a magnetic sensitivity up to 3026 V/(A·T) along the sensor surface. The type of sensor devices studied extends the scope of Hall sensors as an elemental base of medical equipment, equipment for magneto-resonant imaging (MRI), and also in instruments for geological and geodetic research.
format Article
id doaj-art-9b04173fef0a4a6bb4da2222d6e17fcc
institution OA Journals
issn 2225-5818
2309-9992
language English
publishDate 2018-06-01
publisher Politehperiodika
record_format Article
series Tekhnologiya i Konstruirovanie v Elektronnoi Apparature
spelling doaj-art-9b04173fef0a4a6bb4da2222d6e17fcc2025-08-20T02:18:50ZengPolitehperiodikaTekhnologiya i Konstruirovanie v Elektronnoi Apparature2225-58182309-99922018-06-013152110.15222/TKEA2018.3.15155Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentratorV. R. Stempitsky0Dinh Ha Dao1Belarusian State University of Informatics and Radioelectronics, Minsk, Republic of BelarusBelarusian State University of Informatics and Radioelectronics, Minsk, BelarusThe paper presents results on research and optimization on the basis of device-technological modeling of the structural and operational characteristics of the magnetosensitive sensor with a disk-shaped integrated magnetic concentrator (IMC). The high magnetic permeability of the IMC material provides a high value of the induction of the magnetic field along its edges, which leads to a significant enhancement of the applied external field. The IMC plays the role of a magnetic amplifier, and also affects the signal-to-noise and signal-to-bias ratios; the magnetic gain depends not only on the size of the IMC, but also on its shape. This research is devoted to the development of a disc-shaped magnetic concentrator integrated into the Hall sensor. The concentrator has a high magnetic flux gain and can be used in 3D magnetic field recording systems. Analysis of the geometric dimensions, deflection angle and the material of the integrated magnetic concentrator influence on the characteristics of a three-dimensional magnetic field sensor showed that the inclusion of a ferromagnetic concentrator in the Hall sensor design provides a significant (up to 10 times) increase in the magnetic flux gain. This makes it possible to use the investigated sensor designs to detect weak magnetic fields (from 0.01 μT to 2 mT). It is shown that a supermindure integrated magnetic disc-shaped concentrator with a diameter of D = 200 μm, a thickness of l = 10 μm and an angle of deflection of θ = 60° provides a magnetic flux gain G = 10.81 with a maximum external magnetic field of B0 = 120 mT. The obtained results indicate the prospects of using the proposed constructive solution for the practical manufacture of three-dimensional sensors of weak magnetic fields with a magnetic sensitivity up to 3026 V/(A·T) along the sensor surface. The type of sensor devices studied extends the scope of Hall sensors as an elemental base of medical equipment, equipment for magneto-resonant imaging (MRI), and also in instruments for geological and geodetic research.https://tkea.com.ua/index.php/journal/article/view/155magnetosensitive sensorintegrated magnetic concentratorhall sensorferromagnetic material
spellingShingle V. R. Stempitsky
Dinh Ha Dao
Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
Tekhnologiya i Konstruirovanie v Elektronnoi Apparature
magnetosensitive sensor
integrated magnetic concentrator
hall sensor
ferromagnetic material
title Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
title_full Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
title_fullStr Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
title_full_unstemmed Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
title_short Device-technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
title_sort device technological simulation of the magnetosensitive sensor with integrated magnetic concentrator
topic magnetosensitive sensor
integrated magnetic concentrator
hall sensor
ferromagnetic material
url https://tkea.com.ua/index.php/journal/article/view/155
work_keys_str_mv AT vrstempitsky devicetechnologicalsimulationofthemagnetosensitivesensorwithintegratedmagneticconcentrator
AT dinhhadao devicetechnologicalsimulationofthemagnetosensitivesensorwithintegratedmagneticconcentrator