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Tunneling Magnetoresistance DC Current Transformer for Ion Beam Diagnostics

机译:用于离子束诊断的隧道磁阻直流电流互感器

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摘要

In this paper, open loop and closed loop Tunneling Magnetoresistance (TMR) DC Current Transformers (DCCTs) for ion beam diagnostics are presented. The DCCTs employ MR sensors to measure the DC component of the accelerator’s ion beam. A comparative study between Giant Magnetoresistance (GMR) and TMR sensors is presented to illustrate the sensor selection criterion for the DCCT application. The two proposed DCCTs are studied in open and closed loop configurations. A closed loop feedback electronic system is designed to generate a feedback current equivalent to the ion beam current such that the sensor operates at zero flux. Furthermore, theoretical and experimental results for the TMR-based DCCT including noise analysis are presented for both open loop and closed loop configurations. Both configurations’ minimum detectable currents are in the range of microampere. The proposed closed loop hardware prototype has a settling time of less than 15 μs. The measured minimum detectable currents for the open and closed loop TMR-based DCCTs are 128.2 μA/Hz and 10.14 μA/Hz at 1 Hz, respectively.
机译:在本文中,提出了用于离子束诊断的开环和闭环隧道磁阻(TMR)DC电流互感器(DCCTS)。 DCCTS使用MR传感器来测量加速器离子束的直流分量。提出了巨磁阻(GMR)和TMR传感器之间的比较研究以说明DCCT应用的传感器选择标准。在开放和闭环配置中研究了两个提出的DCCT。闭环反馈电子系统被设计为产生等于离子束电流的反馈电流,使得传感器在零通量处运行。此外,对于包括噪声分析的基于TMR的DCCT的理论和实验结果是针对开环和闭环配置提供了噪声分析。这两个配置的最小可检测电流都处于微安的范围内。所提出的闭环硬件原型具有小于15μs的稳定时间。所测量的打开和闭环TMR基DCCT的最小可检测电流分别为128.2μA/ Hz和10.14μA/ Hz,分别为1 Hz。

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