Library / Reference Chips / 100 × 200 µm, 18 mm long — 1 of 16 channels (Fluidic 142)

100 × 200 µm, 18 mm long — 1 of 16 channels (Fluidic 142)

channelchip_f142

reference chip Phrozen Sonic Mighty 12K design, checked in CAD channel-chip 100 × 200 µm

Ali Tahmasbizadeh, Gale Lab, University of Utah

100 × 200 µm, 18 mm long — 1 of 16 channels (Fluidic 142). A computer render of the design, not a photograph: its body drawn see-through, its channels in orange. The chip is 22.5 mm × 4.5 mm × 1.9 mm. Beside it, its cross-section across the middle, and a 500 µm window around the channel, which is 200 µm wide and 100 µm deep there.
Rendered from its design files, not photographed: the body see-through, the channels orange, and its cross-section beside it. Pictures in one family share one scale.

Internal geometry — X-ray

X-ray see-through view of 100 × 200 µm, 18 mm long — 1 of 16 channels (Fluidic 142): plan footprint (true scale) and z-exaggerated isometric of the internal channel and two bores

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 = channel + bores. 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 block for resin SLA with one straight rectangular channel 100 µm deep × 200 µm wide, running the full 18.0 mm port-to-port at mid-height, a solid floor below and ceiling above, and two Ø1.5 mm vertical access bores to the top surface. The vendor part is a sealed polymer body carrying 16 identical parallel channels — this reproduces ONE of them, in a different physical construction. Footprint 22.5 × 4.5 × 1.9 mm.

This models one channel of 16. The microfluidic ChipShop part is a flow cell carrying 16 identical parallel channels. The vendor publishes the channel cross-section and length but no channel pitch and no chip outline, so reproducing the array would mean inventing the spacing. One channel is modelled at the vendor’s exact dimensions instead.

Verification

metricvalue
Channel cross-section (H × W) — vendor100 × 200 µm
Channel length — vendor18.0 mm
Channels on the vendor part16 identical parallel — one reproduced here
Footprint (L × W × H) — OUR design22.5 × 4.5 × 1.9 mm OUR DESIGN
Channel volume — analytic (nominal)0.3600 µL
Channel volume — measured on the model's mesh0.3680 µL
Δ (mesh − analytic)+2.22% — uniform 0.4 mm boolean overrun; cross-section exact
Void watertightTrue
Void connected bodies1 — bore→channel→bore continuous
Chip watertightTrue
Chip Euler number0 — genus-1: one cavity, two vents
Min feature vs Phrozen 12K X (px_min = 100/19)5.26 px
Min feature vs Phrozen 12K Y (px_min = 100/24)4.17 px
Min feature vs BYU Nordin (px_min = 100/7.6)13.16 px

All geometry checks run with trimesh (merged vertices) on the exported STLs. See the bundled README for the full method.

Provenance & caveats

Vendor-attributed: channel cross-section H × W, channel length (18.0 mm), and the 16-channel count (product page). OUR design (not the vendor’s): the chip footprint. One channel of many: the vendor part carries 16 identical parallel channels; this models ONE. The vendor publishes no channel pitch and no chip outline, so an 16-channel copy would require inventing the spacing. Ports are simplified straight cylindrical bores, standing in for the vendor’s MFCS Mini Luer sockets. Printability: px_min = 5.26 px in X and 4.17 px in Y on the Phrozen Sonic Mighty 12K (19 × 24 µm), and 13.16 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 for the numbers.

Files to download

  • SCADchannelchip_f142.scad10.0 KBDownload
  • STLchannelchip_f142.stl138.2 KBDownload
  • STLvoid_channelchip_f142.stl133.9 KBDownloadFor inspection, not for printing: the fluid network, every space that holds liquid, as a solid.
  • PNGchannelchip_f142_xray.png149.6 KBDownload
  • PNGchannelchip_f142_section.png22.8 KBDownload
  • MDREADME.md1.6 KBDownload

Tags

  • channel-chip
  • not-tested
  • straight-channel
  • adaptation
  • chipshop-adapted
  • sla-print
  • continuous-flow
  • platform-agnostic
  • scad-source
  • stl-included
  • 100x200um

Provenance & license

Ali Tahmasbizadeh, Gale Lab, University of Utah

SLA adaptation. Channel cross-section (H × W), channel length and channel count taken from the microfluidic ChipShop product page. This is a monolithic 3D-print adaptation of ONE channel of a multi-channel flow cell, NOT a vendor part.

License: MIT