Design of a dynamic calibrator with high accuracy and linearity

Zhao Hao, Xu Dawang
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Abstract

In RF/microwave power measurement using diodes, the detecting inherent characteristics lead to an open-loop measurement because there is no DC-substitution. Sensitivity and linearity differences between sensors or the drift due to aging or temperature can result in a different DC output voltage for the same RF power. So a calibrator is needed to absolute the incident power. In this paper, after the common principles of power reference source are presented, a dynamic calibrator source with high accuracy and linearity is fully discussed. The emphases are put on the methods to ensure the technical specifications associated with the accuracy, linearity, and temperature stability. The results show that the techniques of Automatic-Level-Control, the software compensation and synchronous detection compensation can dramatically improve the key performances.
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一种高精度线性动态校准器的设计
在使用二极管的射频/微波功率测量中,由于没有直流替换,检测固有特性导致开环测量。传感器之间的灵敏度和线性度差异或由于老化或温度引起的漂移可能导致相同射频功率的直流输出电压不同。因此需要一个校准器来确定入射功率。本文在介绍了功率基准源的一般原理的基础上,对一种高精度、线性度高的动态校准源进行了全面的讨论。重点介绍了确保与精度、线性度和温度稳定性相关的技术指标的方法。结果表明,采用自动电平控制、软件补偿和同步检测补偿技术可以显著提高系统的关键性能。
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