精密低频噪声测量

R. H. Hamstra
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引用次数: 0

摘要

在10/sup -3/-kHz至35hz或更高的范围内,已经开发出方便地进行精确(1%)噪声谱密度测量的技术。应用兴趣主要集中在放大器的l/f噪声测量领域。测量是通过快速傅里叶变换(FFT)的重叠平均和模拟噪声预处理来实现的。校准测量只需要一个已知的正弦波信号源。FFT的使用使得对测量结果的良好统计控制成为可能。在大多数情况下,FFT时间越长,效果越好。结果表明,为了得到准确的结果,需要在数字化前对数据进行高通滤波。更精确测量的最大限制,特别是在非常低的频率下,是获得大样本量所需的时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precision low frequency noise measurement
Techniques have been developed for conveniently making precision (1%) noise spectral density measurements in the 10/sup -3/-kHz to 35-Hz or higher range. Application interest is particularly in the area of amplifier l/f noise measurement. Measurements are made by overlap averaging of the fast Fourier transform (FFT) with analog preconditioning of the noise. Calibration of the measurements requires only a known sine wave signal source. The use of the FFT makes possible good statistical control of the measurement result. It was found in most cases that the longer the FFT, the better the results. It was shown that high-pass filtering of the data prior to digitization is required for accurate results. The biggest limitation to more accurate measurements, particularly at very low frequencies, is the time required to get a large sample size.<>
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