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杨晓静

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[问答]

X2000系列的直方图

嗨,我对X2000(70MHz,4ch)示波器上的抖动测量感兴趣。
我看到的一种方法是在边缘上触发,然后在时间上查看相同类型边缘的过渡的直方图。
我的目标是比较音频振荡器(10-25MHz范围)和音频测试信号(1-20kHz)的不同XO和电源拓扑。
我查看了X2000上的菜单,但没有找到类似“直方图”或“抖动”的内容。
有没有办法在我的范围内衡量这些事情?
我可以买一个选项来启用它吗?
谢谢,Borge

以上来自于谷歌翻译


     以下为原文

  Hi,  

I'm interested in jitter measurements on my X2000 (70MHz, 4ch) scope. One method I've seen is to trig on an edge and then view a histogram of the transitions of the same type of edge ahead in time.  

My goal is to compare different XOs and power supply topoligies for audio oscillators (10-25MHz range) and also for audio test signals (1-20kHz).  

I've looked through the menus on my X2000 without finding anything resembling "histogram" or "jitter". Is there a way to measure such things on my scope? Is there an option I can buy to enable it?

Thanks,
Borge  

回帖(1)

周菊

2019-7-8 14:22:22
有关抖动的论文已经写过。
正确和准确地测量和/或估计抖动是一个“硬”问题,需要大量工作才能正确,并且可能需要大量处理能力。
安捷伦的许多更高性能示波器都具有抖动选项。
一般来说,单独使用该选项的成本是您拥有的DSOX2004A成本的3-5倍。
加上范围的成本,你会发现它在范围帽子上不可用的原因不到2000美元。
成本稍低的解决方案。
获取InfiniiView的副本,并购买抖动包。
您可以将示波器数据卸载到运行InfiniiView的PC上,并对捕获的数据进行抖动分析。
InfiniView和Jitter软件包都提供免费的30天许可证,因此,如果这是一次性的事情,您可能不需要购买任何东西。
只需很少或不需要任何费用,您可以获得Python的副本,并编写自己的抖动包,然后准确地进行您感兴趣的测量.Al

以上来自于谷歌翻译


     以下为原文

  Treatises have been written about Jitter. Measuring and/or estimating jitter correctly and accurately is a "hard" problem, requiring a lot of work to get right, and potentially a lot of processing power.

Many of Agilent's higher performance scopes have jitter options. In general, that option alone costs 3-5 times the cost of the DSOX2004A that you have. Add in the cost of the scope, and you see the reason it's not available on a scope hat costs less than $2000.

There is a slightly lower cost solution. Get a copy of InfiniiView, and buy a jitter package to go with it. You can unload the scope data onto a PC running InfiniiView and do jitter analysis on the captured data.

Both InfiniView and the Jitter packages are available with free 30 day licenses, so if this is a one time thing, you may not have to buy anything.

For little or no cost, you could get a copy of Python, and write your own jitter package, then make exactly the measurements you are interested in.

Al
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