HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR
A high-sensitivity magnetometer based on new type magnetoelectric sensor was fabricated. The sensor contains a composite structure of ferromagnetic and piezoelectric layers placed inside an electromagnetic coil. Magnetoelectric effect in the structure arises due to combination of magnetostriction of...
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MIREA - Russian Technological University
2016-10-01
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doaj-bfd6f634ec0645799edf7e8e0f3add902021-07-28T13:30:09ZrusMIREA - Russian Technological UniversityРоссийский технологический журнал2500-316X2016-10-0145243710.32362/2500-316X-2016-4-5-24-3736HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSORV. N. Serov0L. Y. Fetisov1Y. K. Fetisov2E. I. Shestakov3Moscow Тechnological University (MIREA)Moscow Тechnological University (MIREA)Moscow Тechnological University (MIREA)Moscow Тechnological University (MIREA)A high-sensitivity magnetometer based on new type magnetoelectric sensor was fabricated. The sensor contains a composite structure of ferromagnetic and piezoelectric layers placed inside an electromagnetic coil. Magnetoelectric effect in the structure arises due to combination of magnetostriction of the ferromagnetic layer and piezoelectricity of the piezoelectric layer. Under simultaneous action of pumping magnetic field with frequency f and dc field to be measured, the structure generates voltage harmonics with frequencies f, 2f, 3f. Amplitudes of the 1st and the 3d harmonics are linear functions of H, which is used for measurements. The field, frequency, and amplitude characteristics of the sensor were investigated. The electronics circuits used for signals processing are described. The battery powered proto-type of the magnetometer operates in the 0.1-200 mOe magnetic field range with accuracy of 0.1 mOe. The proposed magnetoelectric magnetometer may compete with fluxgate magne-tometers and find applications in geophysics, navigation, defectoscopy, and medicine.https://www.rtj-mirea.ru/jour/article/view/36magnetoelectric effectmagnetometermagnetic field sensormagnetostrictionpiezoelectric effectphase-lockingautonomous measuring devices |
collection |
DOAJ |
language |
Russian |
format |
Article |
sources |
DOAJ |
author |
V. N. Serov L. Y. Fetisov Y. K. Fetisov E. I. Shestakov |
spellingShingle |
V. N. Serov L. Y. Fetisov Y. K. Fetisov E. I. Shestakov HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR Российский технологический журнал magnetoelectric effect magnetometer magnetic field sensor magnetostriction piezoelectric effect phase-locking autonomous measuring devices |
author_facet |
V. N. Serov L. Y. Fetisov Y. K. Fetisov E. I. Shestakov |
author_sort |
V. N. Serov |
title |
HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR |
title_short |
HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR |
title_full |
HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR |
title_fullStr |
HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR |
title_full_unstemmed |
HIGH-SENSITIVITY MAGNETOMETER BASED ON A MAGNETOELECTRIC SENSOR |
title_sort |
high-sensitivity magnetometer based on a magnetoelectric sensor |
publisher |
MIREA - Russian Technological University |
series |
Российский технологический журнал |
issn |
2500-316X |
publishDate |
2016-10-01 |
description |
A high-sensitivity magnetometer based on new type magnetoelectric sensor was fabricated. The sensor contains a composite structure of ferromagnetic and piezoelectric layers placed inside an electromagnetic coil. Magnetoelectric effect in the structure arises due to combination of magnetostriction of the ferromagnetic layer and piezoelectricity of the piezoelectric layer. Under simultaneous action of pumping magnetic field with frequency f and dc field to be measured, the structure generates voltage harmonics with frequencies f, 2f, 3f. Amplitudes of the 1st and the 3d harmonics are linear functions of H, which is used for measurements. The field, frequency, and amplitude characteristics of the sensor were investigated. The electronics circuits used for signals processing are described. The battery powered proto-type of the magnetometer operates in the 0.1-200 mOe magnetic field range with accuracy of 0.1 mOe. The proposed magnetoelectric magnetometer may compete with fluxgate magne-tometers and find applications in geophysics, navigation, defectoscopy, and medicine. |
topic |
magnetoelectric effect magnetometer magnetic field sensor magnetostriction piezoelectric effect phase-locking autonomous measuring devices |
url |
https://www.rtj-mirea.ru/jour/article/view/36 |
work_keys_str_mv |
AT vnserov highsensitivitymagnetometerbasedonamagnetoelectricsensor AT lyfetisov highsensitivitymagnetometerbasedonamagnetoelectricsensor AT ykfetisov highsensitivitymagnetometerbasedonamagnetoelectricsensor AT eishestakov highsensitivitymagnetometerbasedonamagnetoelectricsensor |
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1721273406971707392 |