Comparison of PCB Based Actuator Coils for Untethered Actuation

Erdem Dogus Akkus, L. Çetin
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Abstract

Recently magnetic actuation has become a versatile tool for manipulation on both the micro and macro scale. Due to the problems arising from scale, conventional electromagnet production methods are insufficient to produce the desired electromagnets to be used for this purpose. To solve the problems arising from this situation, researchers have been forced to work in alternative electromagnet production and application areas and paved the way for PCB-based electromagnetic actuators. For this reason, this article will explain the design principles of PCB planar coils for electromagnetic actuator applications and will provide the basis for later studies to create a coil matrix using this coil design and an actuator that can move ferromagnetic particles or magnets in the plane with this 2D coil matrix. The presented project design steps can be listed as follows; First of all, to be able to design a coil that consists of copper paths on the PCB and can meet expectations (homogeneous magnetic field, high magnetic force/current ratio). PCB coils consisting of square, circular and hexagonal coils are manufactured and various measurements are made. The measured results are consistent with the simulated results proving the accuracy and applicability of PCB coil actuators, and they are highly suitable for a new actuator version. In the tests carried out, coils energized with 1A can provide a maximum field strength of 1400 (A/m) and an average of 900 (A/m) and due to the lack of magnetic core, the created magnetic field has the shape of a bell. In order to overcome this situation, it is foreseen that making studies to increase the working current and, as a more important development, switching from the planar single-layer structure to the structure of two or more layers can increase the magnetic field produced by this type of coils, but this layer increase should take into account the cost and PCB production and application capabilities. should be made available.
基于PCB的非系留驱动线圈的比较
近年来,磁致动已成为一种用于微观和宏观操作的通用工具。由于规模问题,传统的电磁铁生产方法不足以生产出用于这一目的的所需电磁铁。为了解决这种情况所带来的问题,研究人员被迫在替代电磁铁生产和应用领域工作,为基于pcb的电磁执行器铺平了道路。因此,本文将解释用于电磁执行器应用的PCB平面线圈的设计原理,并将为后续研究提供基础,以使用该线圈设计创建线圈矩阵,并使用该二维线圈矩阵创建可以在平面上移动铁磁颗粒或磁体的执行器。提出的方案设计步骤如下:首先,能够在PCB上设计一个由铜路组成的线圈,并且能够满足期望(磁场均匀,磁力/电流比高)。PCB线圈由方形、圆形和六角形线圈组成,并进行各种测量。实测结果与仿真结果一致,证明了PCB线圈作动器的精度和适用性,非常适合于新版本的作动器。在进行的测试中,用1A通电的线圈可以提供1400 (a /m)的最大场强和900 (a /m)的平均场强,由于缺乏磁芯,产生的磁场具有钟形。为了克服这种情况,可以预见,研究增加工作电流,从平面单层结构切换到两层或多层结构,作为一个更重要的发展,可以增加这类线圈产生的磁场,但这种层数的增加应考虑到成本和PCB的生产和应用能力。应该是可用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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