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April 3, 2026The Physics of Metals and Metallography0 citations

Comparative Study of Inductive Circuit Configurations with Planar Coils for Magnetic Particle Detection

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AAAdrian AcunaAIAlexander IgnatovNYN. A. Yudanov

Key Points

  • This research aims to compare two inductive circuit configurations using planar coils for detecting magnetic particles.
  • Evaluated two circuit designs: a Colpitts oscillator and a modified Maxwell bridge.
  • Used flat PCB coils as sensor elements for compact design.
  • Conducted experiments with magnetic samples varying in iron content to assess performance.
  • The modified Maxwell bridge showed higher sensitivity and a linear response compared to the Colpitts oscillator.
  • Both circuits effectively correlated voltage changes with varying iron content in the samples.

Abstract

This study presents a comparative investigation of two inductive circuit configurations employing planar coils for magnetic particle detection. The sensor element was a flat PCB coil, which proved to be effective while maintaining a compact design. The first circuit, based on a Colpitts oscillator, has relatively low sensitivity, however, offers the possibility of digital detection through frequency variation. In contrast, the second configuration, a modified Maxwell bridge composed of resonant second-order differential filters, exhibited significantly higher sensitivity and a linear response for small inductance variations. Experimental validation with magnetic samples of varying magnetic iron content confirmed that both circuits are capable of correlating voltage variations with the content iron.

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Cite This Study

Acuna et al. (2025) studied this question.

synapsesocial.com/papers/69cf5f225a333a821460e17chttps://doi.org/10.1134/s0031918x25602045
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