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Formlabs - Fuse X1 Industrial SLS 3D Printer

Formlabs

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Large, High-Speed, and Scalable Industrial-Grade Powder Sintering System

Formlabs Fuse X1 Industrial SLS 3D Printer

From full-size functional prototypes and high-mix low-volume manufacturing to mass production of thousands of end-use parts, the Fuse X1 integrates large build volume, intelligent process control, and automated powder workflow into a single SLS production system.

The Fuse X1 offers a build volume of 330 × 330 × 565 mm, with a total capacity of 61.5 L, increasing part throughput within a limited equipment footprint and shortening time from design to finished product delivery.

330 × 330 × 565 mm Build Volume
120 W Fiber Laser Print Engine
AI-Powered Print Failure Prevention
Deliver full-size parts overnight, or rapidly produce mass-market goods with the latest designs.

Large Build Space Supports Various Production Scenarios

61.5 L Industrial Build Capacity

With a build volume of 330 × 330 × 565 mm, approximately 7.5 times that of the Fuse 1+ 30W, the Fuse X1 can accommodate large prototypes, high-mix part portfolios, or large quantities of small end-use parts.

Batch Production

Fuse X1 batch production of 3280 SLS parts
3,280 parts

Completed in approximately 41.5 hours, with a build density of about 41%, suitable for large quantities of small end-use parts and repetitive production.

High-Mix Builds

Fuse X1 high-mix SLS parts build
29 different parts

Completed in approximately 22.5 hours, with a build density of about 10%, suitable for multi-item prototyping, spare parts, and low-volume customized manufacturing.

Full-Size Prototypes

Fuse X1 full-size large SLS prototype
3 large parts

Completed in approximately 21 hours, with a build density of about 2%, suitable for large enclosures, automotive components, and full-size functional validation.

Scale production and reduce management costs, lowering per-part cost by up to 50%.

Reduce Part Costs and Shorten Delivery Times

The following cases compare estimated per-part costs and delivery times for Fuse X1, outsourced manufacturing, and older SLS equipment. Actual results may vary depending on material, build configuration, labor, and regional costs.

20 Drone Frames

Fuse X1 printing 20 drone frames cost comparison
Fuse X1 $59 / 2 days
Outsourced Manufacturing $239 / 14 days
Older SLS Equipment $115 / 5 days

1 Car Door

Fuse X1 printing large car door part cost comparison
Fuse X1 $792 / 3 days
Outsourced Manufacturing $1,853 / 14 days
Older SLS Equipment $1,307 / 5 days

3,280 Mixer Locks

Fuse X1 mass production of 3280 mixer locks cost comparison
Fuse X1 $0.50/piece / 5 days
Outsourced Manufacturing $22/piece / 14 days
Older SLS Equipment $1.56/piece / 7 days

1 Electric Bicycle Frame

Fuse X1 printing electric bicycle frame cost comparison
Fuse X1 $990 / 3 days
Outsourced Manufacturing $3,623 / 14 days
Older SLS Equipment $3,010 / 5 days
Provides up to 3 times the throughput in less than half the footprint of some traditional industrial systems.

High-Density Builds with a Compact Footprint

More Parts in a Single Build

Fuse X1 high-fill density large SLS build space

The Fuse X1 offers a 61.5 L build volume, with fill densities over 30% higher than some competing systems, allowing more parts per single build and increasing overall weekly production.

Suitable for Existing Production Spaces

Fuse X1 compact footprint and standard doorway installation

With a footprint of approximately 1.3 m² and the ability to fit through standard doorways, the Fuse X1 facilitates the integration of production-grade SLS equipment without significant factory layout changes.

Print Intelligence Smart Print Failure Prevention

The Fuse X1 combines computer vision, adaptive thermal control, and real-time process monitoring to identify print anomalies and adjust affected areas, minimizing the impact of a single anomaly on an entire batch of parts.

How Smart Printing Works

The system can detect anomalies in real-time and isolate affected areas, helping to reduce the risk of entire build failures and increase yield while maintaining the quality of other parts.

Adaptive Thermal Control

The thermal imaging system captures and processes large amounts of process data per second, driving 13 independent heating zones to precisely control powder heating and sintering status from the first layer to the last.

120 W Fiber Laser Print Engine

A 120 W fiber laser with high-speed customized galvo quickly and precisely scans the entire build area, producing high-density, high-precision parts.

Modular Print Unit

The print unit can be quickly loaded or unloaded, allowing the next job to be prepared while the previous build is still cooling, reducing downtime between print jobs.

Integrated Powder Delivery System

The vacuum conveying system automatically transfers powder between printing, reclaiming, and refilling stages, reducing bin handling, manual scooping, and powder exposure.

Dynamic Powder Dosing Control

Stable powder distribution and a rapid layer-by-layer spreading process reduce waiting time between layers and minimize material waste caused by overflow powder.

Industrial workflow is also quick to get started: shorten installation time and be ready to print in minutes.

Complete Workflow from Preparation, Printing to Powder Recovery

Prepare Print Job

Configure parts in PreForm and integrate different builds, materials, and printer jobs into a single project document.

Start Printing

Quickly connect the print module and prepare materials via the automatic powder loading system, reducing cleaning and manual setup between print jobs.

Remove Build and De-powder

Transfer the build chamber into the Sift X1, and complete part removal and initial powder cleaning in a closed environment using the integrated glovebox and compressed air.

Clean and Polish

Fuse Blast provides automatic cleaning and polishing functions, capable of processing large parts and entire builds, improving consistency and efficiency of post-processing.

Refresh and Refill Powder

Use the vacuum conveying system to mix reclaimed powder with new powder, completing material replenishment and loading for the next print.

Rapidly reclaim powder at scale, maintaining continuous production and a clean working environment.

High-Capacity Powder Handling

Can hold reclaimed powder from approximately 3 to 5 builds, maintaining processing capacity while reducing workspace occupation.

Part Transfer Bay

Parts removed are centrally transferred into a transfer box, quickly freeing up the main work area for subsequent processing of the next batch.

Sealed Work Area

The integrated glovebox keeps de-powdering operations within a closed environment, helping to improve powder management and workspace cleanliness.

Waste Powder Recovery

Rapidly collect and process waste powder, reducing the time traditionally spent on manual brushing and repetitive cleaning of parts.

Achieve ready-for-use SLS parts in less time through automated cleaning and polishing.

Fuse Blast Automated Cleaning and Surface Finishing

Clean and Dyeable Part Surfaces

Built-in ion generator reduces dust and media re-adherence, and with the polishing process, achieves smoother, semi-gloss surfaces suitable for subsequent dyeing.

Automated Cleaning Process

Preset automated programs can process parts of an entire print volume in about 10 minutes, reducing continuous manual operation and parameter setting.

Save Time and Consumable Costs

Fuse Blast saves SLS part post-processing time and media costs

The waste separation system reduces the saturation speed of cleaning media, extending media lifespan and shortening cleaning time after parts are removed from the powder bed.

Multi-functional Manual Mode

Switch between automatic, manual-assisted, or handheld modes according to part size and geometry to handle detailed areas and complex structures.

High-Capacity Processing Kit

The Fuse Blast high-capacity kit can be directly installed to process more parts per cycle, increasing throughput for large-volume post-processing without equipment modification.

High-performance end-use thermoplastic materials, combined with powder recovery workflow, reduce per-part production costs.

Industrial-Grade SLS Powder Materials

Nylon 12

Combines dimensional accuracy, fine detail, and general mechanical properties, suitable for functional prototypes, jigs, fixtures, enclosures, and end-use parts.

Nylon 11

Features high ductility and impact resistance, suitable for snap-fits, thin-walled structures, sporting goods, and parts requiring repeated deformation.

TPU 90A

Flexible and elastic thermoplastic polyurethane material, suitable for cushions, grips, seals, footwear prototypes, and flexible end-use parts.

Nylon 12 GF Glass-Filled Nylon

Glass fiber reinforced material offers high rigidity, dimensional stability, and heat resistance, suitable for jigs, fixtures, and demanding industrial applications.

Open Materials Mode

With customizable print settings, research and materials development teams can explore other powder materials and new applications suitable for 1064 nm laser systems.