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 20 µL, 350 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. The vendor part is a sealed polymer body — this is a different monolithic construction that reproduces the chamber's fluidic spec only. Footprint 29.9782 × 7.7809 × 2.15 mm.
The footprint here is ours, not the vendor’s. microfluidic ChipShop publishes only the chamber volume (20 µL) and its depth (350 µm). Those two numbers are the functional specification of a reaction chamber and the model reproduces them exactly — the mesh measures 19.9955 µL, -0.022% from target. The shape is not on record. This stadium comes from an inverse-solve: area = volume ÷ depth = 57.1429 mm², then a width chosen to hold the same stadium aspect ratio (L/w = 2.7146) as chamberchip_f584 — that is w = √(A/2.5) = 4.7809 mm, giving a chamber length of 12.9783 mm. The width is ours; only the volume and depth are the vendor’s. It will not fit a ChipShop holder and is not dimensionally interchangeable with the vendor part.
Verification
| metric | value |
|---|---|
| Chamber volume — vendor target | 20 µL |
| Chamber volume — measured on the model's mesh | 19.9955 µL (-0.022% vs target) |
| Chamber depth — vendor | 350 µm |
| Chamber area (volume ÷ depth) | 57.1429 mm² |
| Chamber stadium (L × w) — OUR design | 12.9783 × 4.7809 mm OUR DESIGN |
| Stadium aspect ratio (L/w) | 2.7146 — held from chamberchip_f584 so the family is geometrically similar |
| Footprint (L × W × H) — OUR design | 29.9782 × 7.7809 × 2.15 mm OUR DESIGN |
| 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 = 350/19) | 18.42 px |
| Min feature vs Phrozen 12K Y (px_min = 350/24) | 14.58 px |
| Min feature vs BYU Nordin (px_min = 350/7.6) | 46.05 px |
All geometry checks run with trimesh (merged vertices) on the exported STLs. See the bundled README for the full method.
Cross-family consistency. This inverse-solve reproduces the vendor volume to -0.022% here, and to the same −0.022% on every other chamber in this family — f843 (2.5 µL), f750 (5 µL), f585 (10 µL), f559 (20 µL), f842 (50 µL) and the original f584 (20 µL). Agreement to three decimal places across a 20× volume range is the only cross-check available for parts the vendor describes by volume alone, and it shows the solve behaves identically at every scale.
Source & print adaptation
Source dimensions are what the originating design publishes; ours are what our CAD model is drawn at. Where the two are the same number, no feature was resized to print. No public URL for the source is on record in this repository, so it is cited as plain text rather than linked.
Provenance & caveats
Vendor-attributed: chamber volume (20 µL) and chamber depth (350 µm) — product page. Nothing else. OURS (not the vendor’s): the chamber shape, the whole footprint, the feed-channel geometry and the port style. Ports are simplified straight cylindrical bores, standing in for the vendor’s MFCS Mini Luer sockets. Printability: px_min = 18.42 px in X and 14.58 px in Y on the Phrozen Sonic Mighty 12K (19 × 24 µm), and 46.05 px on the BYU Nordin printer (7.6 µm/px). These are pixel counts; for the process limits on record for each printer, see Hardware and process. Status — Phrozen Sonic Mighty 12K design, checked in CAD: the geometry is watertight and volumetrically checked in CAD — see the Verification table above.
Files to download
- SCAD
chamberchip_f559.scad12.5 KBDownload - STL
chamberchip_f559.stl210.7 KBDownload - STL
void_chamberchip_f559.stl207.8 KBDownloadFor inspection, not for printing: the fluid network, every space that holds liquid, as a solid. - PNG
chamberchip_f559_xray.png168.0 KBDownload - PNG
chamberchip_f559_section.png22.4 KBDownload - MD
README.md1.8 KBDownload