Sinterit Bianco 2 - SLS 3D Printer
Sinterit Bianco 2 - SLS 3D Printer
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47,000.00 € 47,000.00 €
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Sinterit Bianco 2 - SLS 3D Printer

SINT-BIANCO2-SLS
47,000.00 € 47,000.00 €
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Approximate delivery date: Tuesday 29 September - Monday 5 October

The Sinterit BIANCO2 is a next-generation SLS (Selective Laser Sintering) 3D printer developed by Sinterit to deliver industrial-grade capabilities in a compact footprint. Thanks to its 30 W RF CO₂ laser technology, this solution expands the possibilities of additive manufacturing by enabling the processing of a wide range of technical powders, including white, natural, dyeable, and flexible materials, overcoming the typical limitations of many compact SLS systems. Its open-platform philosophy allows the manufacturing process to be tailored to the specific requirements of each application, making it an ideal tool for engineering, production, R&D, and new material development.

Video 1: Introduction to the Sinterit Bianco2. Source: Sinterit.


With compact dimensions of 650 x 594 x 1330 mm and a weight of 150 kg, the BIANCO2 delivers industrial-level performance while remaining easy to integrate into laboratories, engineering departments, technology centers, and production environments. Its maximum build volume reaches 130 x 180 x 330 mm, with a printable diagonal of up to 398 mm, enabling the production of functional parts, advanced prototypes, and short production runs with excellent geometric freedom.

Open SLS technology compatible with multiple materials

One of the key advantages of the BIANCO2 is its ability to work with a wide range of materials within a single printing ecosystem. In addition to traditional engineering powders, the system supports white, natural, dyeable, and elastomeric materials, significantly expanding the range of possible applications.

This versatility enables the production of functional components, customized products, aesthetic prototypes, medical devices, orthoses, flexible parts, and end-use products.

The ability to adjust printing parameters for different materials makes the BIANCO2 particularly attractive for companies looking to develop new applications or explore specific materials without being tied to closed ecosystems.

Advanced process control

The BIANCO2 has been developed to provide a high level of control over the manufacturing process. Combined with advanced versions of Sinterit Studio software, it enables access to advanced printing parameters to optimize material behavior and adapt the process to specific production, research, or development needs. This open philosophy is especially valuable for R&D departments, universities, technology centers, and manufacturers working with specialized materials.

The system integrates a high-precision Galvo scanner and an RF CO₂ laser with a service life exceeding 20,000 hours, ensuring stability and repeatability over long operating periods.

Industrial thermal system

To ensure uniform temperature distribution throughout the sintering process, the printer incorporates an advanced thermal system composed of four independent heating zones and a total of 19 heating elements. This design maintains stable thermal conditions inside the build chamber, improving dimensional accuracy and result repeatability.

The chamber temperature can reach up to 210 °C, enabling the processing of a wide variety of technical materials. In addition, the machine includes a standard external water-cooling system for the laser, ensuring stable operation even during intensive production cycles.

Image 1. The Sinterit Bianco2 enables high-quality, highly detailed prints. Source: Sinterit.

Productivity and print quality

The Sinterit BIANCO2 offers layer heights ranging from 75 to 125 microns, enabling the production of detailed and functional parts with excellent mechanical properties. Its build speed reaches up to 15–30 mm/h, providing a balanced trade-off between productivity and surface quality for professional applications.

Thanks to SLS technology, parts are produced without support structures, allowing full use of the build volume and enabling complex geometries, functional assemblies, moving mechanisms, and designs that are impossible to manufacture with other 3D printing technologies. The system also supports wall thicknesses from 0.3 mm, holes from 0.3 mm, and functional clearances from 0.2 mm.

Connectivity and ease of use

The printer features a 9-inch interactive touchscreen, an integrated camera for process monitoring, and multiple connectivity options including WiFi, Ethernet, and USB. These features simplify workflow management and allow production to be monitored easily from different professional environments.

Sinterit Studio software supports STL, 3MF, OBJ, 3DS, FBX, and DAE file formats, ensuring compatibility with most CAD and design tools currently used in professional environments.

Professional applications

The combination of technical, flexible, and dyeable materials enables applications across a wide range of sectors, including industrial engineering, automotive, robotics, medical devices, orthotics, research, product design, architecture, consumer electronics, and custom manufacturing. Thanks to its open approach, the BIANCO2 enables a workflow that ranges from advanced prototyping to short-run production and new material development within a single technological platform.

Image 2: The Sinterit Bianco2 is ideal for both laboratory and workshop or industrial use. Source: Sinterit.

Main features

The Sinterit BIANCO2 uses SLS (Selective Laser Sintering) technology powered by a 30 W RF CO₂ laser, an industrial-grade solution that delivers high precision, process stability, and long service life. Thanks to this configuration, it can manufacture complex functional parts without support structures, fully leveraging the advantages of laser sintering additive manufacturing.

Its build volume of 130 x 180 x 330 mm, together with a maximum printable diagonal of 398 mm, enables the production of both detailed prototypes and large functional parts in a single build. This makes it a versatile tool for engineering, research, industrial design, and short-run production.

The platform also stands out for its broad material compatibility. The BIANCO2 can process engineering powders, white and natural materials, dyeable formulations, and flexible materials, offering great freedom to adapt each project to mechanical, aesthetic, or functional requirements.

To ensure consistent print quality, it incorporates an advanced thermal system made up of four independent heating zones and a total of 19 heating elements. This architecture maintains a homogeneous temperature distribution throughout the build chamber, which can reach up to 210 °C, improving dimensional stability and result repeatability.

The printer offers layer heights between 75 and 125 microns, providing an excellent balance between detail, mechanical performance, and productivity. This flexibility allows each job to be optimized according to application requirements.

In terms of usability, the BIANCO2 integrates a 9-inch interactive touchscreen for intuitive control and system access. It also includes an integrated camera for process monitoring and multiple connectivity options via WiFi, Ethernet, and USB, making it easy to integrate into professional workflows.

Compatibility with file formats such as STL, 3MF, OBJ, 3DS, FBX, and DAE ensures seamless integration with most CAD and 3D design software. In addition, the system includes a water-cooling system for the laser, ensuring stable and reliable operation even during long and intensive production cycles.

General information

Manufacturer Sinterit
Technology SLS

Printer properties

Print volume 130 x 180 x 330 mm
Type of screen Touch
Laser 30 W CO2
Screen size 9 "

Software and connectivity

Software Sinterit Studio, SCode Analyzer
Connectivity WiFi / Ethernet / USB

Printing properties

Chamber temperature 210 ºC
XY positioning resolution 50 µm
Z positioning resolution 75 µm
Layer height 0.075 mm
Minimum wall thickness 0.3 mm

Electrical properties

Input 230 V AC, 50/60 Hz, 8A / 100 -120 V AC, 50/60 Hz, 15A
Consumption 1650 W

Dimensions and weight

Dimensions 650 x 594 x 1330 mm
Weight 150 Kg
Package dimensions 650 x 750 x 1500 mm
Package weight 195 Kg
  • Install the printer in a clean, dry environment with controlled temperature. Thermal variations and airborne dust can affect both sintering quality and powder handling.
  • Always use appropriate personal protective equipment when handling powders, including gloves, masks, and extraction systems when necessary, following the manufacturer’s recommendations and applicable safety regulations.
  • Before starting a job, ensure the powder has been properly conditioned and mixed according to the material specifications. Proper preparation helps maintain surface quality and mechanical properties of the parts.
  • For maximum repeatability, periodically check the condition of the build chamber and remove any powder accumulation on sensors, internal surfaces, and heating elements.
  • Take advantage of the open platform capabilities by performing validation tests before using new materials or custom profiles in critical applications. The BIANCO2 allows adjustment of a wide range of print parameters to optimize each material.
  • When working with experimental or in-house developed materials, document the parameters used in each print to facilitate traceability and progressive process optimization.
  • Regularly verify the correct operation of the laser water-cooling system. Maintaining a stable optical system temperature is essential to ensure precision and extend equipment lifespan.
  • Monitor the thermal circuit and heating zones. The four-zone architecture with 19 heating elements is designed to provide homogeneous temperature distribution and must be kept in optimal condition to ensure consistent results.
  • Organize parts efficiently within the build volume to take advantage of one of the key benefits of SLS technology: the ability to nest components without support structures.
  • Use layer heights according to project requirements. Thinner layers provide higher detail, while thicker settings reduce production time.
  • Perform periodic inspections of the Galvo system and optical components following Sinterit’s recommended maintenance intervals to preserve dimensional accuracy.
  • If the printer is used for continuous production, establish preventive maintenance routines for the powder handling system, build chamber, and cooling circuit to maximize process stability and component lifespan.
  • Use the integrated camera and remote monitoring functions to supervise long print jobs and detect potential issues before they affect production.
  • Store powders in airtight containers protected from humidity. Proper storage helps maintain material flowability and consistent print results.

Featured properties

Print volume
130 x 180 x 330 mm
XY positioning resolution
50 µm
Laser type
CO2
Open parameters

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