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Design of GMI micro-magnetic sensor based on Co-based amorphous alloys for space applications

机译:基于Co-型非晶合金的空间应用GMI微磁传感器设计

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Giant magneto-impedance (GMI) magnetic sensors have great potential to be next generation of magnetic sensors for space applications. This article concerns the design of a GMI micro-magnetic sensor based on amorphous alloys using the theory of GMI effect, which covers sensing materials, construction of sensor, working principle and signal detection method. Co-based amorphous ribbons are selected as the preferred sensing elements since they have good soft magnetic properties, such as high saturated magnetization, low coercivity, high magnetic permeability and excellent mechanical properties. Co-based amorphous ribbons of 20 ~ 60 μm thick and 1 ~ 3mm wide are fabricated and their magnetic properties, mechanical properties and GMI effects are studied for their applications as GMI sensing elements. Sensor output can be acquired by utilizing phase-sensitive detection method with higher noise suppression. This work provides a preliminary investigation into the high performance of a micro-magnetic sensor for space applications.
机译:巨型磁阻(GMI)磁传感器具有很大的磁传感器,用于空间应用。本文涉及使用GMI效应理论基于非晶合金的GMI微磁传感器的设计,该效应涵盖了传感材料,传感器施工,工作原理和信号检测方法。选择Co-碱性丝带作为优选的感测元件,因为它们具有良好的软磁性,例如高饱和磁化,低矫顽力,高磁导率和优异的机械性能。为20〜60μm宽的Co-型无定形丝带厚,宽1〜3mm宽,并为其应用作为GMI传感元件,研究其磁性,机械性能和GMI效应。可以通过利用具有更高噪声抑制的相敏检测方法来获取传感器输出。这项工作为空间应用的微磁传感器的高性能提供了初步调查。

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