首页> 外文期刊>IEEE Transactions on Magnetics >Effect of Amorphous Wire Core Diameter on the Noise of an Orthogonal Fluxgate
【24h】

Effect of Amorphous Wire Core Diameter on the Noise of an Orthogonal Fluxgate

机译:非晶丝芯直径对正交磁通门噪声的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Cobalt-rich amorphous wires have been extensively used as a core of many types of magnetic field sensors, notably of a fundamental model orthogonal fluxgates, because they allow us to manufacture sensors with very low noise. However, commercial wires are available only in one diameter, namely, 125 μm; therefore, most of the literature is always referred to this diameter. In this paper, we investigated the effects of different diameters versus the noise of the sensor. Our purpose is to understand that if there is a room for improvement of noise by producing amorphous wires with different diameters. We casted wires with (Co0.94Fe0.06)72.5Si12.5B15 composition and a diameter spanning from 80 to 220 μm, and we discovered that the wires show crystalline structure starting from 200 μm. This means we can increase the diameter to values higher than 125 μm and still achieve an amorphous structure, considering the upper limit of 200 μm. Then, we studied the noise of the sensors based on wires with three different diameters, namely, 80, 120, and 175 μm. Because the diameter affects the demagnetizing factor, we also changed the length of the wire in the range from 40 to 120 mm. We discovered that increasing the diameter of the wire always decreases the noise, regardless of the demagnetizing effect, which indicates larger cross section of the wire is a predominant factor.
机译:富钴非晶线已被广泛用作许多类型磁场传感器(尤其是基本模型正交磁通门)的核心,因为它们使我们能够制造噪声极低的传感器。但是,市售电线只能使用一种直径,即125μm。因此,大多数文献始终将其称为直径。在本文中,我们研究了不同直径对传感器噪声的影响。我们的目的是要了解是否存在通过生产不同直径的非晶线来改善噪声的空间。我们铸造了具有(Co0.94Fe0.06)72.5Si12.5B15成分且直径范围从80到220μm的金属丝,发现这些金属丝显示出从200μm开始的晶体结构。这意味着我们可以将直径增加到大于125μm的值,并且考虑到200μm的上限,仍然可以实现非晶结构。然后,我们研究了基于三种不同直径(即80、120和175μm)的导线的传感器的噪声。由于直径会影响退磁系数,因此我们还将导线的长度从40毫米更改为120毫米。我们发现,增大导线直径始终会降低噪声,而与消磁效果无关,这表明导线的较大横截面是主要因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号