Workshop

Things that get built

I keep printers, needles, and a soldering iron in roughly the same room. These are the hobbies that produce an object at the end.

3D printing

I run a dual-nozzle enclosed machine with a heated chamber for the serious work. I also keep a small bedslinger that still earns its shelf space. The interesting part is not the printing, it is the calibration.

  • Filament profiling and flow calibration
  • Multi-material and multi-color prints
  • Functional parts: organizers, fixtures, brackets, jigs
  • Parametric bin and insert generation for drawer systems

Fur, foam, and fabric

Costume construction is engineering with a nap direction. I pattern to fit a real head, carve foam to a shape that reads well from three meters away, and then tuft fur so the seams disappear.

  • Head patterning and foam carving
  • Fur tufting and seam hiding
  • Machine sewing on a mechanical Singer
  • Hand finishing where the machine cannot reach

Soldering and rework

I work with a portable iron, a hot plate, and a lot of patience. Most of the work is small. This includes reflowing LED emitters onto MCPCBs (metal core printed circuit boards), replacing connectors, and rescuing things that were declared dead.

  • Emitter desoldering and reflow on metal core boards
  • Connector and wire repair
  • Firmware flashing on driver boards
  • Board-level diagnosis before parts get ordered

Flashlight modding

This is the hobby that quietly became a research project. I swap the emitter, flash better firmware, and then argue about optics. Reflectors, TIR (total internal reflection) lenses, and aspheric lenses each lie to you in a different way.

  • Emitter swaps for output, tint, or throw
  • Advanced open-source UI firmware
  • Reflector, TIR, and aspheric beam behavior compared side by side
  • In progress: a dual-emitter host with two independent channels

Cells and chargers

Lithium-ion cells are the most interesting component in any of this gear. They are also the component most often treated as a black box. A four-channel analyzing charger turns the marketing numbers into measured ones.

  • Capacity and internal resistance testing
  • Cell selection for high-drain versus runtime
  • Safe charging practice and cell care
  • Building and testing custom packs

Home automation

I run a local-first smart home on a self-hosted hub, with sensors that report to a dashboard instead of to a cloud service. Half the fun is modifying cheap consumer hardware until it speaks the right protocol.

  • Self-hosted automation hub
  • ESP32 sensor nodes, including retrofit builds
  • Addressable LED lighting with open firmware
  • Printer, air quality, and power monitoring

Build log

Open projects

  • Dual-emitter host. Two LED types run on two channels from one battery, and the driver selection is the current bottleneck.
  • Maximum-output headlamp. The host is stock and everything inside it has been replaced, as far as the thermals allow.
  • Drawer organization system. The bins are parametric and sized to one specific set of drawers, so they are generated rather than modeled by hand.
  • Air quality sensor retrofit. A cheap consumer particulate sensor gets a microcontroller and a way to report what it sees.
  • Suit parts. This one is ongoing, and it has been ongoing for a while.
On documentation. Every one of these has notes, because the version of me that comes back in six months has no idea what the settings were. If you are starting a hobby like this, start the notebook on day one. It is the cheapest tool in the shop.
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Printers earning their keep
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Soldering iron, heavily used
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Project boxes, unlabeled