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Stax aftermarket cables

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I figured it was worth its own thread to look at these aftermarket cables that have popped up. Now I don't really want to be a part of the whole cable mess but with electrostatics it is rather simple... the main component is capacitance. The cable will always add some and it determines how hard the entire system is to drive. So TLDR, more capacitance... everything is worse. The amp has to work much harder to try and push current into the top and bottom end.

As a baseline, I tested a spare SR-X1 driver I had here and between the +/- inputs it is right on 40pF. We want to keep this as low as possible to keep the load low. So first off we have this ebay find, staight out of China:

i-img1200x1200-17863965219832fscku31056.jpg

I was roughly 130$ shipped for the 2.5M version but I've seen them go for a lot more than that. It has the off the shelf Stax connectors on either end and they are nice enough quality. The wire is the cheapest, thinnest crap possible though.

IMG_5326.JPEG

As a comparison the plan was to use a SR-X1/007S/009D cable but I only found a SRE-725 extension cable. Same length at 2.5m but is might be a tiny bit worse as the flat ribbon needs to connect to the Stax socket on the other end with wires will cross a bit doing that. Should be a small one but worth noting. I tested between the L+ and L- (I also compared against the R+ and R- but it should read the same) using a basic Uni-T capacitance meter at 1kHz. Both cables strewn out as long as they go on a wooden floor so minimal impact from that. So first off, here is the Stax SRE-725:

IMG_5324.JPEG

That is 0.061nF or 61pF. Not bad and what I'd expect from the Wide PC-OCC cables. Now here we have the ebay cable...

IMG_5325.JPEG

That is 0.46nF or 460pF. Yeah... that is not great is it. So as a comparison, the whole system capacitance with the Stax cable is 101pF, with the ebay cable it is 500pF. Yeah... this is utterly terrible and will make the headphones sound terrible.

Now a second possible issue is how much voltage can the cable withstand. Again here we are hooked up to the L+ and L- simply because those pins are the easiest to get to with the large clips.

IMG_5327.JPEG

This cable passes at 1500V with flying colors, almost 30 seconds and at almost 6 gigaohms so no issues there. I'm guessing this is actually double insulated as there is not a whole lot of wire in there.

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