True 25µm optical resolution delivers exceptional surface quality, repeatability, and dimensional control for demanding micro-scale applications.
Rapid setup and automated calibration support efficient design validation and engineering development workflows.
Supports a broad range of engineering and biomaterial viscosities for research, prototyping, and application development.
3D Printed on the microArch S150 Ultra in 39 minutes
3D Printed on the microArch S150 Ultra in 1 hour, 18 mins
Talk with our team to explore how the microArch S150 supports applications such as microfluidics, fiber optics, biomedical devices, and advanced materials research.
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The microArch S150 is engineered to deliver consistent dimensional performance across complex micro-scale geometries, enabling engineers and researchers to validate designs with confidence. True 25µm optical resolution, precise positional control, and stable process performance support the fabrication of fine features, smooth surfaces, and repeatable results across a wide range of applications and materials.
Designed for demanding development environments, the system provides the reliability needed to move from early concept validation to functional prototyping without compromising part quality.
The microArch S150 Series is powered by BMF’s Projection Micro Stereolithography (PµSL) technology, an advanced additive manufacturing process designed to produce high-precision micro-scale parts with exceptional accuracy and surface quality. PµSL works by projecting patterned UV light through a dynamic optical system to rapidly photopolymerize entire layers of liquid resin at once, enabling fast print speeds while maintaining micron-level feature resolution.
By combining precision optics, controlled photopolymerization, and highly accurate motion systems, the S150 Series delivers the dimensional accuracy, repeatability, and part quality required for demanding engineering applications. The result is the ability to manufacture complex micro-scale geometries, fine channels, and intricate features that are difficult or impossible to achieve with conventional manufacturing or traditional 3D printing technologies.
This proven technology platform enables engineers and researchers to rapidly prototype and iterate micro-scale designs across applications such as microfluidics, fiber optics, biomedical devices, advanced electronics, and academic research.
We’d be happy to manufacture a benchmark part so you can assess our quality.
Request a Benchmark part