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Artifacts and errors in cross-spectrum phase noise measurements

机译:跨频率相位噪声测量中的工件和错误

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摘要

This article deals with the erratic and inconsistent phase-noise spectra often seen in low-noise oscillators, whose floor is of the order of -180 dBc/Hz or less. Such oscillators are generally measured with two-channel instruments based on averaging two simultaneous and statistically independent measures. Our new method consists of inserting a dissipative attenuator between the oscillator under test and the phase-noise analyzer. The thermal noise of the attenuator introduces a controlled amount of phase noise. We compare the phase noise floor to the theoretical expectation with different values of the attenuation in small steps. The analysis reveals a negative bias (underestimation of phase noise) due to the thermal energy of the internal power splitter at the instrument input, and an uncertainty due to crosstalk between the two channels. In not-so-rare unfortunate cases, the bias results in a negative phase-noise spectrum, which is an obvious nonsense. Similar results are observed separately in three labs with instruments from the two major brands. We provide experimental evidence, full theory and suggestions to mitigate the problem, and a first attempt to assess the uncertainty. Our multiple-attenuators method provides quantitative information about the correlation phenomena inside the instrument.
机译:本文涉及在低噪声振荡器中经常看到的不稳定和不一致的阶段噪声谱,其地板是-180dBc / hz或更小的。这种振荡器通常基于平均两种同时和统计独立措施使用双通道仪器测量。我们的新方法包括在振荡器之间插入振荡器和相位噪声分析仪之间的耗散衰减器。衰减器的热噪声引入了受控相位噪声量。我们将阶段噪声底板与小步骤中的衰减值的理论期望进行比较。由于仪器输入处的内部电源分路器的热能,分析显示了负偏差(相位噪声的低估),并且由于两个通道之间的串扰导致的不确定性。在不太罕见的不幸情况下,偏差导致负相噪声谱,这是一个明显的废话。在两个主要品牌的仪器中分别观察到类似的结果。我们提供实验证据,全面理论和建议来减轻问题,并第一次尝试评估不确定性。我们的多衰减器方法提供有关仪器内部相关现象的定量信息。

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