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We had the need to test a custom module that came back from assembly. The module is meant to be soldered onto another PCB via castellated pins and is very small.
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We had the need to test a custom module that came back from assembly in modest quantity. The module is meant to be soldered onto another PCB via castellated pins and is very small.
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As holding a multimeter probe (even if its a PCBite) would be a nightmare for more than one piece, I designed a little test jig that uses 0.7mm (!) pogo pins ([[https://www.distrelec.ch/de/federkontakt-16-mm-rundkopf-ptr-hartmann-1007-7n-au-49/p/30019672?track=true&no-cache=true&marketingPopup=false|MPN: 1007-D-0.7N-AU-0.49]]). The pogo pin holder is 3d printed with the 0.4mm standard nozzle diameter and surprisingly comes out well. Even if it's hitting the resolution limit of the Prusa.
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Holding a multimeter probe (even if it's a PCBite) up to it by hand would be a nightmare so, I designed a little test jig that uses 0.7mm (!) pogo pins ([[https://www.distrelec.ch/de/federkontakt-16-mm-rundkopf-ptr-hartmann-1007-7n-au-49/p/30019672?track=true&no-cache=true&marketingPopup=false|MPN: 1007-D-0.7N-AU-0.49]]).
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The jig is 3d printed with the 0.4mm standard nozzle diameter and surprisingly comes out well. Even if it's hitting the resolution limit of the Prusa.
**Soldering process:**
**Soldering process:**
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blog/test_jig_for_castellated_pin_module.1617220194.txt.gz · Last modified: 2021/03/31 19:49 by bitmorse