Origin Two – High-Precision P3 DLP 3D Printer

Industrial 3D Printer with exceptional surface finish, speed and repeatability

Elevating industrial 3D printing to a completely new level with unparalleled accuracy, proven repeatability, tight tolerances, and superb surface finish

  • Stratasys origin two DLP 3D Printer - high-precision 3D printer offering injection moulded surface finish

    Key Features

    • Injection moulded surface quality – Smoothness rivalling injection moulding
    • High accuracy and tight tolerances – 5K projector leads to ~38µm pixel size
    • Repeatability and reliability – Validated workflow
    • Open materials system – Use Stratasys validated and 3rd party materials
    • Preheated build chamber – Improved reliability especially for high-viscosity material
    • Pneumatic separation – Ideal for smooth surfaces and minimising supports
    • No recalibration between builds – For higher throughput and increased repeatability
    • GrabCAD software – Design, print and monitor processes

The Stratasys Origin Two is an industrial-grade, high-precision DLP (Digital Light Processing) 3D printer, engineered for additive manufacturing of end-use parts. Using Stratasys’ P3-DLP (Programmable Photo Polymerisation) technology, it pushes the boundary of what resin printing can achieve, offering injection-moulding-level surface finish, tight tolerances, repeatable performance, and broad material compatibility. As part of the P3™ ecosystem, it is designed for production workflows and on-demand parts manufacturing.

If you are looking to produce parts with a superior surface finish to filament printers, the Origin Two DLP printer is your solution. It is capable of achieving tolerances of 50µm and a surface roughness down to ~2µm straight off the printer using an advanced 5K DLP projector.

The Origin Two also features a pneumatic separation mechanism. This reduces stresses on printed parts, especially fine details as well as reducing the number of supports required and allows for smoother transitions.

Applications

The Stratasys Origin Two is optimized for low-to-medium volume production of precision, high-quality parts across many industries. Typical application areas include:

  • Automotive & Aerospace: High-precision connectors, structural components, fluidics, small assemblies.
  • Medical & Dental Devices: Biocompatible parts, surgical tools, custom-fit components with demanding tolerances.
  • Tooling, Jigs & Fixtures: Replacement of machined tools with printed ones, reducing turn time and cost.
  • On-Demand Spare Parts & Custom Manufacturing: Decrease inventory burden, accelerate delivery, support localised or flexible manufacturing.

Because of its tight tolerances and production-grade surfaces, the Origin Two is not just a prototyping machine — it’s designed to replace injection molding for short runs or production parts where aesthetics, performance and repeatability matter.

3D Printing Resins

The Origin Two is compatible with a range of different polymer resins giving you many options to produce components with properties to suit your specific application. These include material types such as:

  • High-temperature / heat-resistant resins (HDT up to ~300°C in some cases)
  • Weatherable and durable (for UV, moisture, chemical resistance)
  • Elastomeric / flexible / rubber-like resins, with high elongation and tear strength
  • Medical / biocompatible resins (for lab-equipment, medical devices, etc.)
  • General-purpose tough / high impact / high strength photopolymers

Stratasys has a range of validated resins, while their open materials ecosystem allows you to also use other 3rd party or non-validated resins provided they meet certain parameters.

  • Stratasys Origin Two DLP 3D Printer Product Launch

    Run time – 1:03 min

    This quick overview explains the capabilities and performance of the Origin Two 3D printer and where it can be used. It also demonstrates some of the capabilities of the P3-DLP 3D printing process that can produce intricate parts with a surface finish that ricals injection moulding, without the cost and time dlays involved with producing tooling.

  • All
  • Additive Manufacturing
  • Bioprinting
  • CL
  • CLEM
  • Computed Tomography
  • EBSD
  • EDS
  • Electron Beam Lithography (EBL)
  • Electron Microscopy
  • Fabrication
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  • FIB
  • In situ
  • Light Microscopy
  • Micro XRF
  • Microscopy
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  • PolyJet 3D Printers
  • SAF 3D Printers
  • SEM
  • TEM
  • Thermal Probe Lithography
  • WDS