非常感谢。
本文和应用笔记150肯定为我清除了一些东西。
基于我所读到的,我在确定如何让频谱分析仪报告FFT的奈奎斯特积分时间时遇到了一些麻烦。
例如,假设我想确定信号的大小,该信号在某些RBW中可见为高于频谱分析仪本底噪声的3西格玛偏差。
我将使用以下等式:3 = P_sig /(k_B * T_N)* sqrt(t / RBW)其中t是积分时间。
我注意到t可能与测量时间不同,因为除了为处理添加的“盲时间”之外,足够宽的跨度FFT可能包括几个缝合在一起的BW“块”。
是否有一种简单的方法可以直接访问奈奎斯特积分,还是必须使用信号发生器校准自己?
再次感谢你的帮助。
干杯,安德鲁
以上来自于谷歌翻译
以下为原文
Thanks very much. This article and Application Note 150 have definitely cleared a few things up for me. Based on what I've read I am having some trouble determining how to get the spectrum analyzer to report the Nyquist integration time for an FFT. For instance suppose I want to determine the size of a signal that would visible as a 3 sigma deviation above the spectrum analyzer noise floor in some RBW. I would use the equation: 3 = P_sig/(k_B*T_N)*sqrt(t/RBW) where t is the integration time. I've noted that t may not be the same thing as the measurement time since a wide enough span FFT may consist of several stitched together BW "chunks" in addition to the "blind time" added for processing. Is there an easy way to access the Nyquist integration directly or do you have to calibrate that your self using a signal generator? Thanks again for all your help.
Cheers,
Andrew
非常感谢。
本文和应用笔记150肯定为我清除了一些东西。
基于我所读到的,我在确定如何让频谱分析仪报告FFT的奈奎斯特积分时间时遇到了一些麻烦。
例如,假设我想确定信号的大小,该信号在某些RBW中可见为高于频谱分析仪本底噪声的3西格玛偏差。
我将使用以下等式:3 = P_sig /(k_B * T_N)* sqrt(t / RBW)其中t是积分时间。
我注意到t可能与测量时间不同,因为除了为处理添加的“盲时间”之外,足够宽的跨度FFT可能包括几个缝合在一起的BW“块”。
是否有一种简单的方法可以直接访问奈奎斯特积分,还是必须使用信号发生器校准自己?
再次感谢你的帮助。
干杯,安德鲁
以上来自于谷歌翻译
以下为原文
Thanks very much. This article and Application Note 150 have definitely cleared a few things up for me. Based on what I've read I am having some trouble determining how to get the spectrum analyzer to report the Nyquist integration time for an FFT. For instance suppose I want to determine the size of a signal that would visible as a 3 sigma deviation above the spectrum analyzer noise floor in some RBW. I would use the equation: 3 = P_sig/(k_B*T_N)*sqrt(t/RBW) where t is the integration time. I've noted that t may not be the same thing as the measurement time since a wide enough span FFT may consist of several stitched together BW "chunks" in addition to the "blind time" added for processing. Is there an easy way to access the Nyquist integration directly or do you have to calibrate that your self using a signal generator? Thanks again for all your help.
Cheers,
Andrew
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