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Extending the Operating Distance of Inductive Proximity Sensor Using Magnetoplated Wire

机译:磁控导线延长电感式接近传感器的工作距离

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摘要

Inductive proximity sensors are noncontact sensing devices used to detect the approach of a target by an increase in coil resistance due to eddy current loss. Extending the operating distance of these sensors is demanded. In this paper, we propose the use of a magnetoplated wire (MPW) as a sensing coil. The MPW is a copper wire, whose circumference is plated with a magnetic thin film. We analyze the impedance of a proximity sensor using a copper wire (COW) and MPW coils by a finite element method. The use of the MPW results in a decrease in AC resistance due to the proximity effect, an increase in inductance, and the generation of a higher flux than when the COW is used. Therefore, it is possible to increase the quality factor $Q$ of the MPW coil. As a result, the operating distances of the MPW and COW coils are 5.0 and 3.8 mm, respectively. The operating distance of the MPW coil is 1.3-fold that of the COW coil.
机译:电感式接近传感器是非接触式传感设备,用于通过检测由于涡流损耗引起的线圈电阻的增加来检测目标的接近。需要延长这些传感器的工作距离。在本文中,我们建议使用磁化线(MPW)作为感应线圈。 MPW是铜线,其外围镀有磁性薄膜。我们通过有限元方法分析了使用铜线(COW)和MPW线圈的接近传感器的阻抗。与使用COW相比,使用MPW会由于邻近效应而导致AC电阻减小,电感增大以及产生更高的磁通量。因此,可以增加MPW线圈的品质因数$ Q $。结果,MPW和COW线圈的工作距离分别为5.0和3.8 mm。 MPW线圈的工作距离是COW线圈的1.3倍。

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