DE · Topics · Resources · Sponsored Content

Introduction to 3D Printing with PμSL

PμSL technology is ideal for electronics, medical devices, microfluidics, filtration, and microelectro-mechanical systems (MEMS).

Small devices that require high precision, high resolution, and high accuracy are all around us. From the electronic connectors in cellphones to the tiny valves in medical pumps, these devices aren’t just small in size; many have small features with significant complexity.

Historically, micro CNC machining and micro injection molding were the only way to make precise parts like this. Both methods require paying for and waiting for tooling, which adds project costs and lengthens time-to-market.

Additive manufacturing, or 3D printing, doesn’t require molds or tools. Moreover, it can reduce the time from concept to prototyping to low-volume production. Yet most 3D printers aren’t able to make small parts with high precision, resolution, and accuracy. Now that’s all changing. Thanks to PμSL technology from Boston Micro Fabrication (BMF), you can 3D-print small parts with 2 μm resolution and +/- 10 μm accuracy at scale.

What is PμSL?

BMF’s 3D printers use projection micro-stereolithography (PμSL), a form of stereolithography (SLA) that incorporates a DLP® light engine, precision optics, motion control, and advanced software. SLA produces parts in layers using a photochemical process.

A photosensitive liquid resin is exposed to light so that polymeric cross-linking and solidification occurs. With PμSL technology, a flash of ultraviolet (UV) light causes the rapid photopolymerization of an entire layer of resin. PμSL technology supports continuous exposure for faster processing.

Fill out the information below to download the resource.

By downloading this content, I agree to receive the DE 24/7 Newswire, a twice weekly free email newsletter (you may choose to opt-out in the newsletter).

Latest News

BMF Expands Material Compatibility for its 3D Printers
These advanced materials, including 3D Systems’ Figure 4 HI TEMP 300-AMB, BASF Ultracur3D 3280 and BMF resins HTF and SR, enhance...

Fictiv’s Automated Injection Molding DFM Now Available
The artificial intelligence-powered platform part analysis during configuration provides automated real-time feedback on part design.

Formlabs Debuts Form 4L Large-Format SLA Printer
Developer Platform delivers flexibility and control to unlock new workflows, applications and material options.

Simulation-Driven Design as a Strategic Advantage
At the virtual Design & Simulation Summit on Oct. 31, learn how simulation-driven design can provide real business benefits and improve the...

University of California San Diego Launches Fusion Engineering Institute
The focus is on ensuring that recent advances in fusion science lead to safe and abundant clean energy.

Nano Dimension Plans Reveal of New Tech at Formnext
New resin for DLP 3D printers to also form part of technology showcase in Frankfurt, Germany, according to Nano Dimension.

All posts