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Research on the Relationship between the Materials of Magnetic Cores and Sensitivity of the Micro Planar Inductive Sensor

机译:磁芯材料与微平面电感式传感器灵敏度之间关系的研究

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摘要

Small non-ferromagnetic metal particle and ferromagnetic metal particle could be detected with micro inductive sensor. However, the signal of the inductive sensor is very weak. In order to increase the amplitude of the signal, the relation between the material of magnetic core and the sensitivity of the micro planar inductive sensor is presented in this paper. Simulation models of the micro inductive sensor with different magnetic cores are built with Ansoft software. The simulation results indicate that the magnetic core with high permeability and high conductivity could improve the sensitivity of planar inductive sensor for the detection of both iron particles and copper particles. The simulation results also indicate that the sensitivity of detecting copper particles is increased with the increase in thickness of the iron magnetic core, but the sensitivity of detecting iron particles is decreased with the increase in thickness of iron magnetic core. This paper also introduced the recent patents which are designed to improve the sensitivity of inductive sensor. This research has reference value for the design of inductive sensor.
机译:微感应传感器可以检测到小的非铁磁性金属颗粒和铁磁性金属颗粒。但是,感应传感器的信号非常弱。为了增大信号幅度,提出了磁芯材料与微型平面电感传感器灵敏度之间的关系。使用Ansoft软件构建了具有不同磁芯的微感应传感器的仿真模型。仿真结果表明,高磁导率和高电导率的磁芯可以提高平面电感传感器同时检测铁颗粒和铜颗粒的灵敏度。仿真结果还表明,随着铁磁芯厚度的增加,检测铜颗粒的灵敏度增加,但随着铁磁芯厚度的增加,检测铁颗粒的灵敏度降低。本文还介绍了旨在提高感应式传感器灵敏度的最新专利。该研究对电感传感器的设计具有参考价值。

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