SLS 3D Printers

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Selective laser sintering is an additive manufacturing (AM) technology that uses a high-power laser to sinter small particles of polymer powder into a solid structure based on a 3D model. 

SLS 3D printing has been a popular choice for engineers and manufacturers for decades. Low cost per part, high productivity, and established materials make the technology ideal for a range of applications from rapid prototyping to tooling and end-use parts.

Formlabs’ Fuse Series is the world’s leading SLS 3D printing platform, accounting for approximately 60% of SLS printer units sold globally.

Fuse 1+ 30W

Designed for maximum output and minimum waste, Fuse 1+ 30W is our compact industrial SLS 3D printer.

Fuse X1

Built for scale and speed, Fuse X1 is our large-format industrial SLS 3D printer.

SLS 3D Printing Materials

Familiar, industry-standard materials now available on-demand — Nylon 12, Nylon 11, TPU, and more — with an agile workflow that eliminates reliance on external machinists or tooling.

Compare Formlabs SLS 3D Printers
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Overview

Fuse X1 is a large-format industrial SLS 3D printer, built for engineers, manufacturers, and service bureaus looking to produce large prototypes and high-volume end-use parts with a faster turnaround. Its massive  build volume and high packing density enable same-day large parts and 3x the throughput compared to competing platforms. AI-powered Print Intelligence monitors jobs from first layer to final part to reduce failures. Setup takes about an hour, print-to-print changeover takes minutes, and the same end-to-end workflow handles extraction, powder reclaiming, and finishing — moving parts from printed to polished in as little as 15 minutes.

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Overview

Designed for maximum output and minimum waste, Fuse 1+ 30W is our compact industrial SLS 3D printer. Unlock unprecedented print speeds and material enablement to deliver truly rapid production in-house. From print setup to powder recovery, our easy-to-use hardware and software are designed to maximize your efficiency at every step of the process.
 

Tech specs
Laser Type

Ytterbium Fiber 120W

Ytterbium Fiber 30W

Build Volume (W x D x H)⁵

330 x 330 x 565 mm
13.0 x 13.0 x 22.2 in
61.5L

165 x 165 x 300 mm
6.5 x 6.5 x 11.8 in
8.2L

Throughput

.330 Kg/Hr

.063 Kg/Hr

Footprint

12.2 Sq.Ft

4.8 Sq.Ft

Print Environment

Nitrogen

Air and Nitrogen

Materials

Nylon 12, Nylon 11*, Nylon 12 GF**, TPU 90A Powder**, or any 1064 nm powder with Open Material Mode.
*Available by the end of 2026 **Available by June of 2027

Nylon 12, Nylon 12 Tough, Nylon 12 White, Nylon 11, Nylon 12 GF, Nylon 11 CF, and TPU 90A Powders, or any 1064 nm powder with Open Material Mode.

Explore SLS 3D Printing Applications

Rapid Tooling

High Performance, Light Weight, High Strength Drones

The proliferation of drone manufacturers and their success in gaining a foothold in a competitive field can be partly attributed to the accessibility and power of modern manufacturing methods, namely 3D printing.

Rapid Tooling

End-Use SLS Parts in the BMW X7

Rapid Tooling

Durable, High Quality End-Use Parts Make Small Batch Production Possible and Profitable

Rapid Tooling

Impactful Research Projects and Organic Design

Rapid Tooling

In-House SLS Enables Entrepreneurship: The One Man Manufacturing Facility

Why Choose Formlabs SLS 3D Printers?

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FAQ

Selective laser sintering (SLS) is a 3D printing technology that uses a high-power laser to sinter small particles of polymer powder into solid parts. The unfused powder supports the part during printing and eliminates the need for dedicated support structures. This makes SLS 3D printing ideal for complex geometries, including interior features, undercuts, thin walls, and negative features, as well as enabling higher-volume production applications — the self-supporting print bed allows parts to ‘nest,’ so that customers can fully pack the build chamber and reach production volumes, even with only one printer.  

No, the unsintered powder surrounding the part acts as a natural support structure during the printing process, eliminating the need for dedicated supports.

The Fuse Series supports engineering-grade materials including Nylon 12, Nylon 11, TPU, and glass- or carbon-filled nylon composites. Explore our SLS 3D printing materials here

Basic steps for SLS post-processing include removing excess, unsintered powder from the parts and media blasting the parts to fully clean them and smooth the surfaces. Formlabs SLS ecosystem includes the Fuse Sift and Fuse Blast, which make the powder recovery and part cleaning process faster, easier, and cleaner. There are also advanced 3D print post-processing methods like coating, smoothing, painting, vapor smoothing, and electroplating that can improve aesthetics, mechanical properties, and overall performance to make your parts suitable for a wide range of applications.

Yes, Fuse Series SLS 3D printers are designed to fit into office or workshop settings with consistent housekeeping practices.

SLA uses a light source to cure liquid resin into solid parts, while SLS uses a laser to sinter polymer powder, making each technology suited to different applications and materials.

You can contact a Formlabs 3D printing expert directly through the website for a personalized consultation and quote.

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