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Versatile Material Compatibility
Mark a wide range of metals, ceramics, plastics, and other hard to mark materials with excellent results.
High-Performance MOPA Laser Marker
Adjustable nanosecond pulse technology delivers sharp detail, strong contrast, and greater control for demanding marking applications.
3-Axis Marking
Fast focus detection with dynamic Z-axis adjustment allows precise marking across varying surface heights without manual adjustment.
AI Multi-Object Marking
AI-powered object detection automatically identifies part position and orientation, enabling efficient marking of multiple items in a single setup.
Simple, User-Friendly Operation
With powerful software, integrated vision, and autofocus, and an onboard touchscreen NEXGEN makes advanced laser marking easy to set up and operate.
Compact and Portable
At 4.5 kg and a small footprint, our design makes it easy to integrate into different workspaces and move where needed.
NEXGEN MOPA laser marker delivers high-precision engraving on a wide range of metals, enabling deep, permanent, and high-contrast marking, even on coated and difficult-to-mark surfaces.
Ideal for: Serial numbers, barcodes, QR codes, UID marking, logos, and part identification.
Compatible materials: Stainless steel, aluminum, copper, brass, titanium, nickel, gold, silver, carbon steel, and other coated or plated metals.
NEXGEN MOPA laser marker provides precise, non-contact surface processing for cleaning, polishing, and texturing metal components. It removes unwanted surface layers and creates uniform finishes while minimizing damage to the underlying material.
Ideal for: Micro-texturing, reflectivity reduction, premium surface finishing, surface preparation, rust removal, paint removal, dirt removal, and surface functional enhancement.
Compatible materials: Stainless steel, aluminum, copper, brass, titanium, nickel, gold, silver, carbon steel, and other coated or plated metals.
NEXGEN is well suited for brittle and challenging materials that require clear, permanent results without heavy contact or mechanical processing. It supports marking on different ceramics and glass while helping maintain surface quality.
Ideal for: Electronics components, medical devices, laboratory equipment, product identification, traceability marking, and precision component marking.
Compatible materials: Aluminum oxide ceramics, technical ceramics, glass, and specialty ceramic materials.
For thin metal cutting applications, NEXGEN delivers clean, precise results with minimal material removal. It is useful for lab environments, prototyping, and fine machining tasks where detailed features and tight tolerances matter.
Ideal for: Laboratory applications, prototypes, fine mechanical components, detailed jewelry, custom metal parts, precision shims, micro-scale parts, and small-scale production.
Compatible materials: Stainless steel, aluminum, brass, copper, titanium, and other thin metal sheets.
NEXGEN is designed for precise marking on plastics and polymers used in technical and consumer products. With controlled laser parameters, it can produce clear, high-contrast marks on many plastic materials while maintaining part quality and fine detail.
Ideal for: Product branding, component labeling, electronics housings, automotive parts, medical components, barcodes, serial numbers, and decorative plastic customization.
Compatible materials: ABS, polycarbonate (PC), polyethylene (PE), polypropylene (PP), nylon (PA), acrylic (PMMA), POM (Delrin), PET, and other engineering plastics and polymers.
NEXGEN is not limited to standard marking materials. It can also mark hundreds of specialty and non-traditional items, giving users the flexibility to work across a wide variety of surfaces for custom, decorative, and identification applications.
Ideal for: Promotional products, personalized goods, branding on specialty items, custom accessories, and low-volume custom production across multiple industries.
Compatible materials:: Silicone, slate, glass, ceramics, plastics, rubber, stone, composites, coated surfaces, and other specialty materials.