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A Compact Inductive Position Sensor Made by Inkjet Printing Technology on a Flexible Substrate

机译:通过喷墨技术在柔性基板上制造的紧凑型感应式位置传感器

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This paper describes the design, simulation and fabrication of an inductive angular position sensor on a flexible substrate. The sensor is composed of meandering silver coils printed on a flexible substrate (Kapton film) using inkjet technology. The flexibility enables that after printing in the plane, the coils could be rolled and put inside each other. By changing the angular position of the internal coil (rotor) related to the external one (stator), the mutual inductance is changed and consequently the impedance. It is possible to determine the angular position from the measured real and imaginary part of the impedance, in our case in the frequency range from 1 MHz to 10 MHz. Experimental results were compared with simulation results obtained by in-house developed software tool, and very good agreement has been achieved. Thanks to the simple design and fabrication, smaller package space requirements and weight, the presented sensor represents a cost-effective alternative to the other sensors currently used in series production applications.
机译:本文介绍了在柔性基板上的感应角位置传感器的设计,仿真和制造。该传感器由使用喷墨技术印刷在柔性基板(Kapton膜)上的蜿蜒的银线圈组成。灵活性使得在平面上打印后,可以将线圈卷起来并放在彼此内部。通过改变与外部线圈(定子)相关的内部线圈(转子)的角位置,互感会发生变化,从而阻抗也会发生变化。在本例中,在1 MHz到10 MHz的频率范围内,可以从测量的阻抗的实部和虚部确定角位置。将实验结果与内部开发的软件工具获得的仿真结果进行了比较,并取得了很好的一致性。由于简单的设计和制造,更小的封装空间要求和更轻的重量,所提出的传感器代表了当前批量生产应用中使用的其他传感器的经济高效的替代产品。

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