Outline costing - GregoryPye/Trimix-analyser GitHub Wiki
The speed of sound approach relies on timing the duration between sending and receiving a pulse, and for the sake of containing the length of this post (fuller one to follow) appears to require timing precision down to a few microseconds. But, with modern digital systems this is actually pretty easy, and more to the point should be fairly cheap, like £10 for emitters and detectors, maybe an extra £5 for fast sampling. It might also need say £10 for a soundwave guide, though in practice the gas has to be routed through the device whatever method is used. This may all prove to be wildly wishful thinking, and there are some proper signal filtering challenges to handle as the time sensitivity is shorter than the wavelength of most ultrasonic sensors. But, ‘measure the speed of sound in air’ is regarded as a simple school level project for things like Arduino or Raspberry Pi, the approaches are similar so it should be possible, and anyway tinkering is fun 🙂 .
Once upon a time decent digital processing and good displays were expensive. Now they are cheap enough to allow use for hacking up all sorts of stuff, with £50 for hardware likely to give a bit of change. The cost of devices isn’t usually the hardware though, its the software and testing … but again that’s what hobby projects are all about; this is for fun!For avoidance of any doubt, if this ever become something that was useful outside those who worked on it and/or had the knowledge and skills to build and test it themselves, it would take a LOT more testing cost, including CE certification if it was sold, at which point the price point would suddenly change quite a lot. It might not actually be a deal breaker for a commercial version, but it would certainly take some thought about whether it was worth it.
There is always other stuff. Cases, batteries, faceplates, tubing and so on. That’s bound to cost a wee bit, with the case alone likely to be £20-30 (e.g. see here). Say £50 all in. On top of that one needs to allow for a flow rate reducer to get gas from a high pressure cylinder to the device. But, other simple oxygen analysers often rely on just cracking open the cylinder valve, and its not obvious why that approach wouldn’t work here, with a more sophisticated flow device used if desired.