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  • For anyone jumping into this thread hoping to see capacitor use for timing, there is this blog post about something like that:

    https://notes-huy-rocks.translate.goog/posts/diy-pomodoro-ti...

    (google translate link because the original post was in Vietnamese)

  • Based. Unhinged. Don't try this at home.

    But it is also art. It represents the waste in our devices that play out over 1-4 years (or say a few weeks for a vape) but in one night.

    But yeah. Don't do it. Indoors? wtf!!!!

  • There's a video demonstration about halfway down the GitHub

    https://github.com/ArcaEge/capacitor-alarm-clock#Demo

  • Sorry I'm late, the capacitor didn't blow.

    Did anyone else smell capacitors when they watched the video? The brain does funny things.

  • Tangent: I remember when hackaday posts about building cool and or useless circuits were posted constantly to HN. Now I can't remember the last time I saw one. (I know this link isn't hackaday, but it's exactly like what they feature).
  • I expected an alarm clock using a capacitor for timing. Either charge it to a delay-dependent level, or charge it to a fixed level and discharge through a delay-dependent path, or trigger when it drops below a delay-dependent level.
    by kps
  • The actual "make it go bang" bit here isn't the most potent. (I think I have capacitors here which wouldn't care in the least about this, despite their datasheet ratings.)

    If you need to take it to the next level, consider something based on a xenon photoflash driver. These aren't as common as they used to be, but they're still not hard to make. I had to make one of these a while back and ended up using one of those $5 LTC chips but that was appropriate for the situation; there are certainly other ways to do it. This will basically charge a 400V capacitor up for you, which you can then dump into the 5V part. High-quality 5V capacitors will handle small spikes of this. But using a big 400V capacitor will make a big spike, which is not kind to the other capacitor. (I must confess I didn't try blowing up a lot of things on the one I made, but it was medical test gear, not technically a capacitor-blower-uper, and I was on deadline anyway. I also had other, significantly more destructive, equipment available to me should that be the goal.)

  • This reminded me of a Blog entry I wrote about in 2013 on "Massive Electro-Pyrotechnic Initiator Chip Resistor (MEPIC)". These are 0805 chip resisters that are by design meant to let out the Magic Smoke that runs all electronic parts.

    Sadly I could not get free samples from my Vishay Rep, that I was in good standing with. MEPIC85N8R0KTT come in lots of 10,000 to buy.

    Be sure to check out the application note "A Guide to Using EPIC / MEPIC Igniters in Pyrotechnic Applications".

    https://www.vishay.com/en/product/53058/

    National Semiconductor, bought by TI, used to make a similar part, check out the application note:

    https://www.ti.com/lit/an/snoa217/snoa217.pdf

    This is what I wrote about the MEPIC parts a long time ago:

    "MEPIC resistors, also known as bridge resistors, are resistive elements that convert electrical energy into heat energy in a precise electro-thermal profile for the purpose of initiating a series of pyrotechnic events in a controlled energetic reaction. [They go BOOM on command, which is different than Rapid Spontaneous Self-Disassembly.]

    The new Vishay Sfernice resistor is optimized for electronic igniter applications in automotive safety systems for the deployment of airbags and other safety devices; digital blasting in mining applications; and in fireworks applications for better synchronization of fireworks, music, and special effects.

    With firing energy down to 1.5 mJ and a typical ohmic range of 2 Ohms (+/- 10 %), the device provides designers with very predictable, reproducible, and reliable behavior.

    Offered in the standard 0805 case size for the wraparound and flip chip versions, with other sizes available upon request, the resistor features easy set-up of firing levels, and is compatible with various pyrotechnic compositions.

    Offering ESD withstanding to 25 kV without extra protection, the MEPIC resistor's performance meets no fire/all fire conditions and the requirements of USCAR, AKLV16, and major car manufacturer standards.

    The device is RoHS-compliant and conforms to Vishay "Green" standards. [Is it not great that Fuzes are 'Green'?]"

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