Saturday, May 3, 2025

Stratasys launches Neo800+ SLA 3D printer with 50% quicker throughput


Stratasys Ltd (NASDAQ: SSYS), the worldwide supplier of polymer 3D printers, has launched the Neo®800+, a brand new stereolithography (SLA) 3D printer engineered for large-format, high-accuracy functions throughout automotive, aerospace, and industrial sectors. Introduced on the Additive Manufacturing Customers Group (AMUG) convention on March 31, 2025, and later showcased at Speedy + TCT 2025, the Neo800+ is the newest addition to Stratasys’ rising SLA ecosystem.

The brand new system builds on the Neo800 platform, delivering as much as 50% quicker print speeds due to the mixing of Stratasys’ proprietary ScanControl+™ know-how. Designed for demanding use circumstances like wind tunnel testing, tooling, and prototyping, the printer presents improved time-to-part, decreased post-processing, and enhanced reliability.

“Engineered with precision and efficiency in thoughts, the Neo800+ is designed to fulfill the rising calls for of industries like automotive and aerospace,” stated Wealthy Garrity, Chief Enterprise Unit Officer at Stratasys. “Whether or not you’re designing prototypes or manufacturing end-use elements, the Neo800+ delivers distinctive throughput and reliability.”

The Neo800+ printer. Picture by way of Stratasys.

Efficiency and reliability upgrades

Along with quicker print speeds, the Neo800+ options a number of enhancements geared toward enhancing uptime and print success. These embody Vacuum System Safety, Z-Stage Collision Detection, and real-time environmental monitoring. Collectively, these upgrades contribute to increased half yield, decreased machine downtime, and a decrease price per half.

The upgraded laser and optics system is optimized for high-energy supplies, enabling the printer to ship distinctive accuracy throughout a variety of geometries. This additionally reduces the necessity for post-processing, making the printer less expensive for high-throughput workflows.

Stratasys Direct Manufacturing, one of many early adopters of the Neo800+, reported important enhancements in turnaround time and half high quality. “The improved velocity has allowed us to extend throughput and keep open capability in addition to supply faster turnaround occasions to our prospects,” stated Sean Schoonmaker, Director of Operations. “The standard and consistency of the prints have been excellent, with a wonderful floor end that helps save on post-processing time for beauty fashions.”

Supplies and ecosystem

The Neo800+ is optimized to be used with ScanControl+ Prepared Supplies from Somos®, together with the newly launched WaterShed® XC+. This resin relies on the broadly used WaterShed XC 11122, providing comparable optical readability and easy floor end, whereas enabling a lot quicker scan speeds. This makes it significantly well-suited for complicated clear elements in automotive lighting, fluid circulate testing, and client electronics.

Stratasys helps the Neo800+ with a full SLA workflow ecosystem that features the cloud-connected GrabCAD Print Construct Preparation Software program and post-processing options designed to streamline operations. These instruments intention to simplify setup, scale back operator intervention, and guarantee repeatability at scale.

Stratasys’ growth into high-throughput SLA with the Neo800+ indicators a continued dedication to assembly industrial calls for throughout prototyping and low-volume manufacturing. The corporate’s broader technique consists of multi-technology choices throughout FDM, SAF, P3, and now high-speed SLA, every tailor-made for particular business wants.

A set of Stratasys Neo 800-3D printed aero parts. Photo via Stratasys.A set of Stratasys Neo 800-3D printed aero parts. Photo via Stratasys.
A set of Stratasys Neo 800-3D printed aero elements. Picture by way of Stratasys.

Evolution of commercial SLA 3D printing

Throughout the 3D printing business, SLA know-how is being reimagined by improvements in {hardware} and supplies. At TCT Asia 2025, UnionTech showcased industrial SLA platforms with enhanced optics and throughput, reinforcing the relevance of SLA in tooling and end-use manufacturing. Among the many varied functions showcased, tire mildew printing stood out as essentially the most precision-intensive.

Atum3D, in the meantime, is pushing boundaries with hybrid DLP-SLA know-how licensed from the College of Amsterdam, making a hybrid SLA course of that mixes photograph and stereolithography to allow the manufacturing of elements with high-resolution options at scale.

Sprybuild has launched a novel conveyor belt SLA system geared toward enabling steady, automated half manufacturing, which highlights the potential for high-volume manufacturing throughout varied sectors equivalent to automotive, client items, aerospace, and healthcare.

On the supplies entrance, researchers from Carleton College and the College of Northern British Columbia at the moment are integrating quantum dots into SLA resins, considerably enhancing half energy and thermal resistance​. These developments spotlight a rising business consensus: SLA is now not restricted to easy floor prototypes, it’s changing into a critical device for industrial manufacturing.

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Featured picture exhibits NEO800 3D printing techniques. Picture by way of Stratasys.

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