Library / Reference Chips / 350 × 2775 µm — straight channel (Fluidic 560)

350 × 2775 µm — straight channel (Fluidic 560)

channelchip_f560

reference chip Phrozen Sonic Mighty 12K design, checked in CAD channel-chip 350 × 2775 µm

Ali Tahmasbizadeh, Gale Lab, University of Utah

350 × 2775 µm — straight channel (Fluidic 560). A computer render of the design, not a photograph: its body drawn see-through, its channels in orange. The chip is 24.5 mm × 5.78 mm × 2.15 mm. Beside it, its cross-section across the middle, and a 500 µm window around the channel, which is 2.77 mm wide and 350 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 350 × 2775 µm — straight channel (Fluidic 560): 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 (Phrozen Sonic Mighty 12K, 19 × 24 µm non-square) with one straight rectangular channel 350 µm deep × 2775 µm wide, running the full 20 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 COC body sealed with a foil lid — this is a different physical construction that reproduces only the channel cross-section. Footprint 24.5 × 5.775 × 2.15 mm.

Verification

metricvalue
Channel cross-section (H × W) — vendor350 × 2775 µm
Channel length — OUR design20 mm OUR DESIGN
Footprint (L × W × H) — OUR design24.5 × 5.775 × 2.15 mm
Channel volume — analytic (nominal)19.425 µL
Channel volume — measured on the model's mesh19.814 µL
Δ (mesh − analytic)+2.00% — 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 = 350/19)18.42 px
Min feature vs Phrozen 12K Y (px_min = 350/24)14.58 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: only the channel cross-section (H × W = 350 × 2775 µm) is taken from the vendor product page. OUR design (not the vendor’s): the channel length (20 mm) and the footprint. The envelope is our design; the vendor technical datasheet is robots-blocked. Ports are simplified straight cylindrical bores, standing in for the vendor’s MFCS Mini Luer sockets. 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_f560.scad9.6 KBDownload
  • STLchannelchip_f560.stl209.8 KBDownload
  • STLvoid_channelchip_f560.stl207.4 KBDownloadFor inspection, not for printing: the fluid network, every space that holds liquid, as a solid.
  • PNGchannelchip_f560_xray.png163.8 KBDownload
  • PNGchannelchip_f560_section.png21.6 KBDownload
  • MDREADME.md2.5 KBDownload

Tags

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

Provenance & license

Ali Tahmasbizadeh, Gale Lab, University of Utah

SLA adaptation. Channel cross-section (H × W) taken from the microfluidic ChipShop straight-channel series (vendor product page). This is a monolithic 3D-print adaptation, NOT a vendor part.

License: MIT