Analysis of Vector Network Analyzer Thermal Drift Error

A. Bystrov, Yi Wang, P. Gardner
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引用次数: 2

Abstract

Ensuring a high accuracy when measuring the parameters of devices under testing is an important task when conducting research in the terahertz-frequency range. The purpose of this paper is a practical study of the thermal drift errors of a vector network analyzer using low-terahertz-frequency extender modules. For this, the change in the measurement error, which is a function of time, was analysed using system, based on Keysight N5247B vector network analyzer and covering the frequency ranges of 220–330 GHz, 500–750 GHz, and 750–1100 GHz. The results of our experiment showed that the measurement error decreased rapidly during the first half hour of warm-up and stabilized by 3 h after turning on the equipment. These results allow for an estimation of the necessary warm-up time depending on the requirements for the measurement’s accuracy. This makes it possible to optimize the experiment and reduce its duration.
矢量网络分析仪热漂移误差分析
在太赫兹频率范围内进行研究时,确保被测器件参数测量的高精度是一项重要任务。本文的目的是对使用低太赫兹频率扩展模块的矢量网络分析仪的热漂移误差进行实际研究。为此,采用Keysight N5247B矢量网络分析仪,在220 ~ 330 GHz、500 ~ 750 GHz和750 ~ 1100 GHz频率范围内,分析了测量误差随时间的变化。实验结果表明,在预热前半小时测量误差迅速下降,开机后3小时测量误差趋于稳定。这些结果允许根据测量精度的要求估计必要的预热时间。这使得优化实验和缩短实验时间成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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