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Calibration and Characterization of a Reduced Form-Factor High Accuracy Three-Axis Teslameter

机译:校准和表征减少的形状高精度三轴Teslameter

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A new reduced form-factor three axes digital teslameter, based on the spinning current technique, has been developed. This instrument will be used to characterize the SwissFEL insertion devices at the Paul Scherrer Institute (PSI) for the ATHOS soft X-ray beamline. A detailed and standardized calibration procedure is critical to optimize the performance of this precision instrument. This paper presents the measurement techniques used for the corrective improvements implemented through non-linearity, temperature offset, temperature sensitivity compensation of the Hall probe and electronics temperature compensation. A detailed quantitative analysis of the reduction in errors on the application of each step of the calibration is presented. The percentage peak error reduction attained through calibration of the instrument for reference fields in the range of +/- 2 T is registered to drop from 1.94% down to 0.02%.
机译:已经开发出基于纺丝电流技术的新的减少的形状系数三轴数字Teslameter。 该仪器将用于在Paul Scherrer Institute(PSI)的Swissfel插入设备中为Athos软X射线束线。 详细和标准化的校准程序对于优化该精密仪器的性能至关重要。 本文介绍了用于通过非线性,温度偏移,霍尔探头温度敏感性补偿和电子温度补偿实现的矫正改进的测量技术。 介绍了对校准每个步骤的应用中误差减少的详细定量分析。 通过校准+/- 2 T范围内的参考领域校准的百分比峰值差异减少,登记到下降至0.02%。

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