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The Behringer was sampling at 48kHz, the CM6206 at 44.1kHz. The explanation is simple: to prevent clipping the inputs were sometimes scaled.
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The frame-rate increases down the page: the somewhat odd numbers simply reflect choosing round-numbers for delay constants and speeds in the code generating the signals.Īlert readers might notice that sometimes the Behringer signals appear to be larger despite this unit having lower sensitivity. In all of the plots below, you can see the results for both the Behringer (on the left) and the CM6202 (on the right) interfaces. I essentially repeated the experiments I tried with XY plotting on scopes. If you do have the right libraries and data to hand, it’s easy to use: $ python xy-plot-wav.py foo.wav bar.wav. You will need to have the numpy, scipy and matplotlib packages installed. the inevitable helpful article on Stackoverflow.Plotting Eye Diagrams from the SciPy cookbook 12.It crashes unceremoniously if you use other formats. I was lazy and so my code assumes that you’ll give it a 16-bit signed PCM WAV file. I wrote some (bad) python to do this, which you can see on GitHub 10 or just download. If you’re using the Behringer card, SoX can even invert the signals for you on the fly: $ sox -d -e signed-integer -b 16 foo.wav trim 0 5 remix 1i 2i Plotting the WAV file data Once installed these runes will save 5 seconds of data to foo.wav: $ sox -d -e signed-integer -b 16 foo.wav trim 0 5 However, you can do that with the ‘Sound’ control in System Preferences. The only problem with SoX is that I couldn’t get it to select the correct input device.
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9 Again it’s cross-platform, and on OS X you can install it with homebrew: $ brew install sox
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It runs on OS X, Windows and Linux, and it’s easy to select the USB sound interface, capture the data, then export them as a WAV file.Īlternatively if you prefer command-line tools, you’ll like SoX. If you like graphical applications, then Audacity 8 fits the bill. There are a couple of good, free, programs for grabbing the data. I wrote a program to do this: you might know of better ways.
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It’s probably fine for other jobs though. It was also a complete waste of money, because it has only one input channel. El-cheapo dongleĪt about £1 this was the cheapest device.
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I made some more extensive notes 3 elsewhere. I tried a three different sound cards, and perhaps unsurprisingly found that cost mattered. Proceed at your own risk! Cheap USB sound interfaces Instead, I tried some cheap USB sound interfaces: happily these worked tolerably well.Īlthough using an external sound interface connected by USB reduces the risk of destroying the computer, it doesn’t completely protect it. for most applications you’ll need some sort of input protection or processing.Ĭomputers are expensive, and so I was wary of using the internal sound hardware.most sound cards will inly digitize signals in the 20Hz-20kHz audio band.to get two input channels, we will need a stereo input.2Įven if this works, it is important to realize: It is worth saying that this is not a new idea: just ask Google, 1 or follow this Instructable. So it’s natural to ask if we could use that instead. However, many people do have a dual channel analogue input device for their computer in the form of a sound interface.
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Although the natural way to plot two signals against each other is with a dual-channel oscilloscope, regrettably not everyone has such an animal.