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首页> 外文期刊>IEEE Transactions on Magnetics >High-Temperature Operations of Rotation Angle Sensors With Spin-Valve-Type Magnetic Tunnel Junctions
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High-Temperature Operations of Rotation Angle Sensors With Spin-Valve-Type Magnetic Tunnel Junctions

机译:自旋阀型磁隧道结的旋转角度传感器的高温操作

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摘要

Direction detection of a magnetic field by spin-valve-type magnetic tunnel junction (MTJ) has been investigated at temperatures ranging from room to 150℃, concentrating on the magnetic property of the pinned layer. Angular dependencies of resistance curves show that detection errors from cosine curve increase with rising temperatures in MTJ with the IrMn/CoFe pinned layer. Measurements of the magnetization curves of the pinned layer found that detection errors are caused by rotation of the pinned layer magnetization, Direction detection of a magnetic field by MTJ with a IrMn/CoFe/Ru/CoFe of synthetic antiferromagnetic (SyAF) pinned layer, in which magnetizations of two CoFe layers nearly cancel each other, was also investigated. We confirmed that the pinned layer of SyAF structure in MTJ effectively reduces the dependence of detection errors on temperature.
机译:研究了自旋阀型磁隧道结(MTJ)在室温至150℃范围内的磁场方向检测,重点研究了被钉扎层的磁性。电阻曲线的角度相关性表明,在使用IrMn / CoFe固定层的MTJ中,余弦曲线的检测误差随温度升高而增加。测量被钉扎层的磁化曲线发现,检测错误是由于被钉扎层磁化的旋转所引起的,使用合成反铁磁(SyAF)被钉扎层的IrMn / CoFe / Ru / CoFe通过MTJ进行磁场方向检测,还研究了两个CoFe层的磁化强度几乎相互抵消。我们证实,MTJ中SyAF结构的固定层有效地降低了检测误差对温度的依赖性。

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