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Noise and response characterization of an anisotropic magnetoresistive sensor working in a high-frequency flipping regime

机译:高频翻转态下各向异性磁阻传感器的噪声和响应特性

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We report on the characterization of the behaviour of an anisotropic magnetoresistive sensor undergoing a 100 kHz flipping of the magnetic domains, i.e. at frequencies two/three orders of magnitude higher than conventionally recommended. The noise analysis allows for the optimal setting of the relevant parameters de. ning such high-frequency, and hitherto unexplored, operation regime. Precision and accuracy performance in static conditions have been assessed by keeping into account the role of the sensor temperature. This last parameter has been evaluated by suitably manipulating the signals occurring at the sensor itself. The used technique can provide the base for a temperature sensor conditioning to be employed in magnetometers using this kind of devices.
机译:我们报告了各向异性磁阻传感器的行为特征,该传感器经历了100 kHz的磁畴翻转,即在比常规推荐频率高2/3个数量级的频率上。噪声分析允许相关参数de的最佳设置。这种高频的,迄今尚未探索的操作方式。通过考虑传感器温度的作用,评估了静态条件下的精度和准确度。最后一个参数已通过适当地处理传感器本身发生的信号进行了评估。使用的技术可以为使用此类设备的磁力计中使用的温度传感器调节提供基础。

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