Domino Dx1060i

Domino Dx1060i: the 100-Watt laser printer for coding at the speed of light

The Domino Dx1060i is a 100-watt CO₂ laser printer designed to guarantee coding quality and continuity even in the most demanding production conditions. Its power delivers sharp, well-defined codes on difficult materials such as PET, HDPE, glass, paper and multilayer surfaces, remaining stable even at very high speeds. This makes it an ideal solution for high-output lines, where code legibility and permanence are essential for product traceability and safety. The system uses advanced algorithms that optimize the laser beam and increase marking speed by up to 30% compared with previous models, delivering consistent quality regardless of the type of material. Management of variable data, 1D and 2D codes and GS1 standards is fully integrated, as are serialization and NTP synchronization for applications where precision is essential. Despite its power, the laser is built for harsh environments: the head is available in an IP54 or IP65 version, while the controller is IP55 certified, allowing use in dusty or humid areas and in locations subject to frequent washdowns. Operation is guaranteed up to 45°C, ensuring production continuity even on the most heavily loaded lines. Thanks to the long service life of the laser tube and to advanced diagnostics, the Dx1060i requires very little maintenance.
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The Main Benefits

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100-Watt CO₂ laser for high-speed lines
High power and advanced optical control deliver sharp, stable marking even on difficult materials.

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Extensive integration flexibility
More than 50 optical configurations, a 360° rotatable head, and compatibility with ERP, MES, and industrial protocols.

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Smart monitoring and reduced maintenance
Cloud diagnostics, coding automation, and reliable operation in harsh environments up to 45°C.

Encoding Type

Laser marking for food & beverage: what you need to know

Why use a laser marker to code your products

From the food industry through to pharmaceuticals, laser marking is often the best choice to deliver safe, fast, efficient coding and to guarantee full product traceability.

Find out everything you need to know.

Technical Specifications

  • Technical Specifications
Technical Specifications
Laser 100-Watt CO₂
Laser technology CO₂, wavelengths 9.3 μm, 10.2 μm, 10.6 μm
Expected lifetime 50,000 hours MTBF
Supported content Fonts optimized for high speed, 1D/2D codes (GS1, DataMatrix, QR), graphics, logos, variable data, serialization
GS1 support GS1 Digital Link and GS1 traceability standards
Focal lengths From 80 mm to 600 mm
Marking field From 57×57 mm to 379×582 mm
User interface Web-based interface; optional 10.1’’ touch panel
Head orientation 360° rotatable head with more than 50 optical configurations
Ingress protection Laser IP54 (IP65 optional), controller IP55
Operating temperature 5°C – 45°C
Operating humidity Max. 90% RH, non-condensing
Electrical supply 90–264 V, 50/60 Hz
Inputs/outputs Inputs/outputs for extraction, compressed air, chiller, encoder, product detection, beacon, interlock, GPIO
Interfaces and protocols Ethernet, USB, RS-232, EtherNet/IP™, EDC, Dynamark Protocol
Software features Automation, Domino Cloud, advanced security, external data capture
Accessories Extraction systems, air knife, stands, brackets, cabling, dedicated optics

Domino Dx1060i technical specifications

Technology in Action

Accessories

FAQ

What applications are laser markers suited to?
Laser markers are ideal for permanent coding and marking of batch numbers, expiration dates, barcodes, QR codes, and DataMatrix codes on a wide range of materials.

What is the difference between CO₂, fiber, and UV lasers?
CO₂ lasers are ideal for organic materials, fiber lasers for metals and engineering plastics, while UV lasers deliver high-precision marking on sensitive materials.

What codes can be produced with a laser marker?
Laser markers can engrave text, batch numbers, expiration dates, barcodes, QR codes, and DataMatrix codes with high precision.

What are the advantages of laser marking?
Laser marking is permanent, fast, and precise, requires no consumables, and reduces running costs over time.

What materials can be laser marked?
Laser marking is suitable for a wide range of materials, including metals, plastics, PET, glass, flexible films, laminates, and cardboard.

Variants