Asiga PRO 4K

Asiga PRO 4K

The Asiga PRO 4K is a high-throughput professional DLP 3D printer developed for demanding dental, audiology, jewellery, research and manufacturing environments. It combines a generous 200 mm build height with Asiga’s proven Smart Positioning System, precision layer monitoring and open-material flexibility to support reliable, repeatable production.

The PRO 4K is available in 45, 65 and 80 µm native-pixel configurations, allowing businesses to choose the balance of detail and build area that best matches their workflow. Build volumes range from 122 × 69 × 200 mm for the PRO 4K45 to 217 × 122 × 200 mm for the PRO 4K80. Its advanced pixel-shifting technology provides enhanced accuracy and surface definition in 4K mode, while high-powered UV LEDs support detailed and consistent curing. Asiga Composer software provides control over build preparation, layer thickness, material settings and connected printer workflows.

Asiga’s open-material architecture allows the PRO 4K to work with suitable third-party materials, including compatible Monocure3D UV/DLP resins. Monocure3D can help identify an appropriate resin and provide a Composer starting profile for your chosen application. Users should complete a calibration print to confirm exposure settings, dimensional accuracy and workflow performance before commencing production.

Contact Monocure3D for resin workflow advice.

The Asiga PRO 4K is engineered for high-throughput digital production. Three optical configurations let users balance detail and build area, from the PRO 4K45 through to the broad-format PRO 4K80. A 200 mm build height, Asiga Composer software, Smart Positioning System and multiple wavelength options make it suitable for validated professional material workflows. Monocure3D can help match the system to a compatible resin and application.

Technology 4K DLP with Asiga Smart Positioning System
PRO 4K45 Build Volume 122 × 69 × 200 mm
PRO 4K45 Pixel Size 45 µm native; 32 µm 4K mode
PRO 4K65 Build Volume 176.5 × 99 × 200 mm
PRO 4K65 Pixel Size 65 µm native; 46 µm 4K mode
PRO 4K80 Build Volume 217 × 122 × 200 mm
PRO 4K80 Pixel Size 80 µm native; 56 µm 4K mode
Light Source 365, 385 or 405 nm LED
Software Asiga Composer
Supported Files STL, PLY, SLC and STM
Connectivity Wi-Fi, Wireless Direct and Ethernet
Printer Size 465 × 540 × 1370 mm
Net Weight 140 kg
Rated Power 500 W
Warranty 12 months with lifetime technical support
Recommended Material Compatible Monocure3D UV/DLP resins
  • PRO 4K45, PRO 4K65 and PRO 4K80 configurations
  • Up to 217 × 122 × 200 mm build volume
  • 365, 385 or 405 nm LED options
  • High-throughput production with Asiga process monitoring
  • Compatible with selected Monocure3D UV/DLP resins

Dial in your resin for the best print results

Use our calibration models to fine-tune your printer’s exposure settings for your chosen resin.

View Calibration Models

Monocure3D Resin Profiles for Asiga  Printers

Download the prepared Monocure3D material profiles for the Asiga MAX, MAX UV MAX 2, PRO 4K and Ultra printer family. These profiles are designed for use with Asiga Composer and provide a reliable starting point for printing Monocure3D DLP-compatible resins.

Download the Asiga Composer profiles

The ZIP package contains the available Monocure3D Asiga material files. Download and extract the folder before importing the profiles into Asiga Composer.

Installing the profiles in Asiga Composer

  1. Create a new folder on your computer named Monocure_3D.
  2. Download and extract the ZIP package, then move the extracted Asiga profile folder into Monocure_3D.
  3. Open Asiga Composer and select New Build.
  4. Select the button positioned to the right of the Materials menu.
  5. Select Import, followed by Composer.
  6. Navigate to the extracted Monocure3D Asiga profile folder.
  7. Select the required INI files and choose Open.
  8. Composer will import the profiles and add them to the material list.
  9. Select the appropriate Monocure3D material profile for your build.
  10. Choose the required layer height and complete a calibration print before production use.

Important: These profiles are recommended starting points. Confirm exposure and dimensional accuracy with a calibration model before production printing. Follow the product instructions and applicable regulatory requirements for dental or biocompatible applications.