microArch® S240A

Photosensitive resin, ceramic slurry

Print material

10μm

Optical resolution

100mm(L)×100mm(W)×75mm(H)

Maximum build size

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Features
  • Ultra-high precision

    Ultra-high precision

    XY printing resolution: 10 μm

  • Thick at the bottom

    Thick at the bottom

    Small layer thickness: 10~40μm

  • Large printing area

    Large printing area

    Maximum build size up to 100 mm × 100 mm × 75 mm

  • Laser ranging

    Laser ranging

    Easy to do levelling of the printing platform and membrane

  • New material R&D

    New material R&D

    Support the printing of functional composite material

  • Automation

    Automation

    Automatic leveling system, automated leveling parameters

  • High efficiency

    High efficiency

    Equipped with a heating resin tank to comprehensively improve operational efficiency

Ultra-high precision

XY printing resolution: 10 μm

Thick at the bottom

Small layer thickness: 10~40μm

Large printing area

Maximum build size up to 100 mm × 100 mm × 75 mm

Laser ranging

Easy to do levelling of the printing platform and membrane

New material R&D

Support the printing of functional composite material

Automation

Automatic leveling system, automated leveling parameters

High efficiency

Equipped with a heating resin tank to comprehensively improve operational efficiency

Specifications
  • Light source

    UV LED(405nm)

  • Print material

    Photosensitive resin, ceramic slurry

  • File format

    STL

  • Optical resolution

    10μm

  • Build size

    Mode 1: Single-projector mode 19.2mm(L)×10.8mm(W)×75mm(H) Mode 2: Stitching Mode 100mm(L)×100mm(W)×75mm(H) Pattern 3: Repeating Array Pattern 100mm(L)×100mm(W)×75mm(H)

  • Layer thickness

    10-40μm

  • Printer dimension

    650mm(L)×700mm(W)×790mm(H)

  • Printer weight

    300kg

  • Power demand

    220~240V AC, 50/60HZ,2KW

  • Maximum build size

    100mm(L)×100mm(W)×75mm(H)

Applications
  • 01 Spiral icositetrahedron

    Applications: Mechanical metamaterials, biomedical applications
    Dimensions: 10 × 10 × 10 mm³, wall thickness: 150 μm, composed of smooth, continuous surfaces with multiple interconnected pores
    Structural features: Printed using aluminum oxide ceramic slurry

  • 02 Gyroid, IWP, and Octet lattice structures

    Applications: New Materials
    Dimensions: The wall thicknesses of the 3×3×3 mm³ Gyroid and IWP lattice structures are ~350 μm and ~330 μm, respectively; the rod diameter of the 3×3×3 mm³ Octet lattice structure is ~650 μm
    Structural Features: High-precision, monolithic fabrication of arbitrary structures for use in bioengineering

  • 03 Endoscope

    Application: Precision Medicine
    Dimensions: Individual dimensions: 13.8 x 9.8 x 9.8 mm³; wall thickness: 70 μm
    Structural Features: One-piece structure formed in a single process; S240A material allows for batch printing of 50 units

  • 04 Micro-ratchet array

    Application: Micromechanics
    Dimensions: Height 1200 μm at the base, radius 500 μm, structural angle ≈67°
    Structural Features: Micrometer-scale multi-level structural features, including base curvature and heterogeneous inclined cones

Spiral icositetrahedron

Applications: Mechanical metamaterials, biomedical applications
Dimensions: 10 × 10 × 10 mm³, wall thickness: 150 μm, composed of smooth, continuous surfaces with multiple interconnected pores
Structural features: Printed using aluminum oxide ceramic slurry

Gyroid, IWP, and Octet lattice structures

Applications: New Materials
Dimensions: The wall thicknesses of the 3×3×3 mm³ Gyroid and IWP lattice structures are ~350 μm and ~330 μm, respectively; the rod diameter of the 3×3×3 mm³ Octet lattice structure is ~650 μm
Structural Features: High-precision, monolithic fabrication of arbitrary structures for use in bioengineering

Endoscope

Application: Precision Medicine
Dimensions: Individual dimensions: 13.8 x 9.8 x 9.8 mm³; wall thickness: 70 μm
Structural Features: One-piece structure formed in a single process; S240A material allows for batch printing of 50 units

Micro-ratchet array

Application: Micromechanics
Dimensions: Height 1200 μm at the base, radius 500 μm, structural angle ≈67°
Structural Features: Micrometer-scale multi-level structural features, including base curvature and heterogeneous inclined cones

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