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dc.contributor.authorTopalov, A.-
dc.contributor.authorKondratenko, Y.-
dc.contributor.authorLeontieva, V.-
dc.contributor.authorKondratieva, N.-
dc.date.accessioned2025-10-29T13:49:02Z-
dc.date.available2025-10-29T13:49:02Z-
dc.date.issued2025-
dc.identifier.issn16130073-
dc.identifier.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-105018667501&partnerID=40&md5=d27ea4fb0-
dc.identifier.urihttps://dspace.chmnu.edu.ua/jspui/handle/123456789/2996-
dc.descriptionTopalov, A., Kondratenko, Y., Leontieva, V., & Kondratieva, N. (2025). Simulation Modeling of the Hall Electromagnetic Transducer for Measuring the Thickness of a Ferromagnetic Film. In : Eds : L. David, Y. Kondratenko, V. Vychuzhanin, H. Yin, N. Rudnichenko. Information Control Systems and Technologies : 13th International Scientific and Practical Conference ICST 2025. CEUR Workshop Proceedings, 24–26 Sept. 2025. Odesa, 4048, (385–396). CEUR-WS. Odesa.uk_UA
dc.description.abstractThis paper presents a comprehensive study of 3D magnetic field modeling for a Hall effect-based electromagnetic transducer designed for high-precision, non-contact measurement of ferromagnetic film thickness. The transducer features a solenoidal coil and a sensitive gold Hall plate, with the test material placed between them. Magnetic field interaction with the material causes measurable changes in Hall voltage, correlating with layer thickness. A simulation model was developed in ANSYS Maxwell to visualize magnetic field distribution and study its dependence on geometry, material properties, and sensor positioning. Simulations with and without the specimen allowed analysis of system sensitivity and resolution, leading to the identification of optimal design parameters. The study demonstrates improved measurement accuracy for coating thicknesses from 1 to 400 um. Additionally, it underscores the importance of computational methods in the development, optimization, and validation of electromagnetic measurement systems. The integration of simulation tools enhances predictive capability and reduces reliance on costly experimental testing, making the approach valuable for industrial applications requiring precise, real-time thickness control.uk_UA
dc.language.isoenuk_UA
dc.publisherCEUR-WSuk_UA
dc.subjectelectromagnetic transduceruk_UA
dc.subjectferromagnetic filmuk_UA
dc.subjectHall effectuk_UA
dc.subjectmagnetic field simulationuk_UA
dc.subjectsimulation modelinguk_UA
dc.titleSimulation Modeling of the Hall Electromagnetic Transducer for Measuring the Thickness of a Ferromagnetic Filmuk_UA
dc.typeArticleuk_UA
Enthalten in den Sammlungen:Публікації науково-педагогічних працівників ЧНУ імені Петра Могили у БД Scopus

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