Internal geometry — X-ray
See-through internal view. Left: fluid footprint in plan, true scale (teal); ports show as the wider circles. Right: isometric of the internal void, vertical z exaggerated 3× for visibility. The exterior is an opaque solid block — this is what is inside it.
Download: PNG (x-ray)
Longitudinal section & exterior
Longitudinal section at y=0 (left): grey = solid, white = fluid voids. Exterior isometric (right): the outside of the CAD model, drawn opaque. Click either for full resolution.
Download: PNG (section) · PNG (top) · PNG (iso)
Description
A single monolithic resin-SLA block with one 10 µL, 500 µm-deep stadium reaction chamber, two straight 0.5 mm feed channels on the same floor, and two Ø1.5 mm vertical access bores to the top surface. Footprint 24.678 × 5.8284 × 2.3 mm.
The target is a 10 µL chamber, 500 µm deep. The model reproduces it exactly — the mesh measures 9.9977 µL, -0.023% from target. The stadium is sized by an inverse-solve: area = volume ÷ depth = 20 mm², then a width chosen to hold the same stadium aspect ratio (L/w = 2.7146) as the 20 µL chamber chip, 500 µm deep — that is w = √(A/2.5) = 2.8284 mm, giving a chamber length of 7.6781 mm.
Verification
| metric | value |
|---|---|
| Chamber volume — target | 10 µL |
| Chamber volume — measured on the model's mesh | 9.9977 µL (-0.023% vs target) |
| Chamber depth — target | 500 µm |
| Chamber area (volume ÷ depth) | 20 mm² |
| Chamber stadium (L × w) | 7.6781 × 2.8284 mm |
| Stadium aspect ratio (L/w) | 2.7146 — held from chamber_20ul_500um so the family is geometrically similar |
| Footprint (L × W × H) | 24.678 × 5.8284 × 2.3 mm |
| Chip watertight | True |
| Chip Euler number | 0 — genus-1: one cavity, two vents |
| Void connected bodies | 1 — chamber and both bores continuous |
| Min feature vs Phrozen 12K X (px_min = 500/19) | 26.32 px |
| Min feature vs Phrozen 12K Y (px_min = 500/24) | 20.83 px |
| Min feature vs BYU Nordin (px_min = 500/7.6) | 65.79 px |
All geometry checks run with trimesh (merged vertices) on the exported STLs. See the bundled README for the full method. The minimum-feature rows are pixel counts; for each printer’s process limits, see Hardware and process.
Cross-family consistency. This inverse-solve reproduces the target volume to -0.023% here, and to within 0.023% on every chamber in this family — the 2.5, 5, 10 and 50 µL chambers and the 20 µL chambers 350 and 500 µm deep. Agreement to three decimal places across a 20× volume range shows the solve behaves identically at every scale.
Print adaptation
Target dimensions are what the design aims at; drawn dimensions are what its CAD model is drawn at. Where the two are the same number, no feature was resized to print.
Credits
Design: Ali Tahmasbizadeh, Gale Lab, University of Utah.
Files to download
- SCAD
chamber_10ul_500um.scad12.1 KBDownload - STL
chamber_10ul_500um.stl206.7 KBDownload - STL
void_chamber_10ul_500um.stl204.0 KBDownloadFor inspection, not for printing: the fluid network, every space that holds liquid, as a solid. - PNG
chamber_10ul_500um_xray.png145.8 KBDownload - PNG
chamber_10ul_500um_section.png18.5 KBDownload - MD
README.md1.4 KBDownload