Gressler CO2 Laser Marking System

Coding & Marking Solutions

CO2 laser marking is a technology used to mark or engrave material surfaces by utilizing a carbon dioxide (CO2)-based laser beam. In this system, CO2 gas is energized by electrical energy to produce a laser beam, which is then focused on the target material’s surface.

The Gressler CO2 Laser Marking (GL1000) is designed to operate without consumables, reducing operational costs and minimizing environmental impact.

Engineered for seamless integration into both new and existing production lines, the Gressler CO2 laser marking system ensures minimal workflow disruption. Its advanced design consistently delivers high-quality markings, boosting overall productivity and efficiency.

CO2 Laser Marking System Print Results

Specifications of the Gressler CO2 Laser Marking System

CO2 Laser Marking System GL1000

Laser Power: 30W
Wavelength: 1064nm
Laser Frequency: 20K HZ - 80KHZ
Focal Distance: 150mm
Speed Max: 8m / second (Linear)

Specifications GL1000
Laser Type
CO2 Laser Marking
Laser Power
30W, 50W, 60W
Wavelength
1064nm
Laser Frequency
20K HZ – 80KHZ
Focal Distance
150mm
Speed
Max 8m / second (Linear)*
Laser Beam
Deflection Digital High-Speed Galvanometer Scan
Marking Size
70 x 70mm , 110 x 110mm ,175 x 175mm
User Interface and System
10’4 Inch with Android System
Coding Features
Machine Readable Codes
Alphanumeric, Text, Counter, Box/Lot, Date/ Time, Best Before Date, Julian Date, Shift code, Graphic, Database. 1D & 2D Codes, Code 11, Code 39, Code 128, EAN, QR, DataMatrix, GS 1 DataMatrix)
Design Software Compatibility
CorelDRAW, AutoCAD, and Photoshop, and comprehensive compatibility with a range of file formats including AI, PLT, PCX, DXF, and BMP.
Supported Font and Language
Standard Windows® TrueType® (TTF), PostScript® (PFA, PFB), OpenType® (OTF) Custom fonts tailored for high-speed or OCR applications and multiple selection of languages.
Operations & Integration
Operating Temperature / Humidity
10-40 °C / 10%-90% RH, No Condensation
Electrical Power Supply
220V/50H/5A/1P
Power Consumption
300W
Cooling System
Air Cooling
Optional Accessories
Laser head bracket mount, user interface mount, sensor and sensor mount, print head cover, fume extraction

Benefits of the Gressler CO2 Laser Marking System GL1000

Gressler CO2 Laser Marking System offers a cost-effective solution

The Gressler CO2 Laser Marking GL1000 stands out as a cost-effective and efficient solution for laser printing needs. Specifically designed to handle essential packaging tasks, this system is ideal for various industries, including food, beverages, and more.

Gressler CO2 Laser Marking System is designed for seamless integration

This comprehensive industrial CO2 laser printing system excels in delivering consistently high-quality codes while offering seamless integration into both new and existing production li

Gressler CO2 Laser Marking system offers unmatched flexibility

This laser marking system is designed to integrate smoothly into your production cycle, offering the capability to mark moving parts—whether on a conveyor belt or maneuvered by robotic systems. Its modular platform allows for custom optical configurations, ensuring flexibility and precision for various industrial needs.

Gressler CO2 Laser Coding system is built with a strong and reliable design

The GL1000 is built with industry-grade components, ensuring its durability and long-lasting performance. Its markings are permanent and resistant to abrasion, heat, and chemicals, making it the perfect solution for products that undergo harsh conditions during production or use.

Gressler CO2 Laser Marking Coding system delivers high-quality, precise markings

GL1000: Consumable-Free Operation with Low Maintenance and Reduced Environmental Impact The GL1000 operates without the need for consumables, setting a new standard for low-maintenance, cost-efficient marking systems. This advancement significantly reduces operational costs and environmental impact, making it an ideal solution for industries aiming to optimize their production processes while promoting sustainability.

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