• @PenisWenisGenius
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    6
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    7 months ago

    I mean, if you put in the work to figure all the stuff out when the alternative is to pay $400 for 5 pcbs that take 2 month to get delivered, then yes it is a more viable option. Luckily that’s not the case anymore, but if things so south in China I imagine the only hobbyiest pcbs you can get will be via this method again.

    You’ll have to modify or build a heated laminator until it can apply photoresist film perfectly to a sheet of copper clad fr4. The you’ll have to build a uv exposure chamber and a light diffuser (I used a picture frame and a shower curtain). Then put that on a turntable for even light distribution like in a microwave and figure out some way of pressing all the layers together tightly enough so it turns out right and light doesn’t get under the clear stencil you printed the pcb layout to. This will take a lot of trial and error to get right. Then you have to figure all the variables to get it to etch properly through even more trial and error.

    Once you have all this stuff figured out, you have to figure out a way to deal with vias. The best way I found was to manually solder a wire or pin for each one and make sure to make them big enough that this can be done by hand. Keep in mind that regular through hole pads won’t be connected on both sides so you need to solder the unused ones for your design to work out.

    I wouldn’t go as far as to call this “worth attempting”, especially if you’re trying to make stuff more complicated than an 8 bit computer but for really simple stuff that doesn’t require high precision, super thin traces and lots of vias, it’s not too bad. Simple designs won’t require the same levels of process perfection as trying to make something like an atx motherboard.

    • @[email protected]
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      fedilink
      17 months ago

      With the rise of inexpensive 3d printers, I wonder if milling would be a cheaper option.

      We had a PCB mill at the university I went to, a “few” years ago.