Fiber Laser Marking Machine

Industrial Part Traceability

High-Speed Permanent Marking Systems for Global OEMs

Marvel Industrial Solution manufactures industrial-grade 20W to 100W Fiber Laser Marking Machines engineered for non-stop product identification, branding, and UID traceability. Operating at a 1064 nm wavelength, our laser systems create high-contrast, permanent marks on stainless steel, carbon steel, aluminium, brass, copper, and engineering plastics.

Designed for fast-paced manufacturing floors, our machine replaces ink jets, mechanical dot peen, and chemical etching with a clean, zero-consumable laser process. Whether you require micro-text, vector logos, serial numbers, standard 1D barcodes, or high-density 2D Data Matrix codes, Marvel systems deliver crisp, permanent readability even under harsh chemical exposure and thermal cycles.

  • Industrial Laser Sources: Equipped with Raycus, MAX, or IPG fiber laser sources offering 100,000+ hours operational lifespan with negligible power drop.
  • High-Precision Digital Galvo: Sino-Galvo scanning head achieving marking speeds up to 7,000 mm/s with ±0.003 mm repeat positioning accuracy.
  • Zero Consumable Operation: Non-contact laser processing eliminates inks, solvents, acid reagents, and mechanical cutter wear.
Marvel Industrial Solution Fiber Laser Marking Machine Workstation
Engineering Specifications

Why Procurement & Production Engineers Choose Our System

Built with tier-1 optoelectronic components, heavy-gauge steel cabinets, and intuitive EZCAD control software for continuous 24/7 operation.

Tier-1 Fiber Laser Engine

Solid-state pulsed fiber lasers deliver TEM00 beam quality (M² < 1.5) for fine line resolution, dark annealing on stainless steel, and clean aluminium etching.

High-Speed Galvo Scanner

High-speed digital galvanometer mirrors provide rapid beam deflection, minimizing part cycle time to fractions of a second for mass-production lines.

Field Lens Options

F-theta optical lenses available in 110×110mm, 175×175mm, 200×200mm, and 300×300mm working areas, coated for high optical throughput and low thermal distortion.

Red Dot Dual Pointer

Integrated dual red laser alignment system allows operators to rapidly locate the exact focal height and preview the marking boundary prior to processing.

Rotary & Automated Expansion

Plug-and-play ports for rotary axis attachments (flange chuck / jewelry ring fixture) enable 360° circumferential marking on tubes, fittings, and round components.

Industrial Software Compatibility

EZCAD system supports DXF, PLT, AI, BMP, JPG, and automated generation of variable data, batch serial numbers, dates, and 2D Data Matrix codes.

Standard Specifications

Fiber Laser Marking Machine Technical Parameters

Compare laser power configurations and operational specs across our LM Series desktop and floor-standing workstations.

Parameter / Model LM-20 LM-30 LM-50 LM-100
Nominal Output Power 20 Watt 30 Watt 50 Watt 100 Watt
Laser Source Type Pulsed Ytterbium Fiber Laser (Raycus / MAX / IPG optional)
Laser Wavelength 1064 nm ± 5 nm
Beam Quality (M²) < 1.5 (High precision optical focus)
Pulse Frequency Range 20 kHz – 80 kHz 30 kHz – 100 kHz 30 kHz – 100 kHz 1 kHz – 400 kHz (MOPA Option)
Standard Marking Field 110 x 110 mm (Optional: 150x150mm / 200x200mm / 300x300mm)
Maximum Marking Speed 7,000 mm/sec
Minimum Line Width 0.012 mm
Minimum Character Height 0.15 mm
Repeatability Accuracy ± 0.003 mm
Cooling System Air Cooling (Internal industrial fan circuit)
Power Supply Requirement Single Phase AC 110V / 220V ± 10%, 50/60 Hz
Operational Lifespan Up to 100,000 Operating Hours

* Custom enclosed safety housing (Class 1 laser enclosure), vision positioning cameras, and motorized Z-axis columns are available on request.

Processing Range

Compatible Substrates & Industry Use Cases

Proven across diverse manufacturing sectors where clear part identification, regulatory compliance, and brand protection are mandatory.

Supported Substrates

  • Stainless Steel: High-contrast dark annealing or surface etching without surface oxidation degradation.
  • Aluminium & Anodized Layer: Crisp white or dark marking on bare aluminium, anodized coatings, and alloy castings.
  • Reflective Metals: Copper, brass, bronze, titanium, gold, and silver precision engraving.
  • Engineering Polymers: ABS, Polycarbonate, Nylon, PVC, and painted/coated surface layers.

Key Application Areas

  • Automotive Components: Engine blocks, VIN plates, gears, valves, bearings, and brake system serial numbers.
  • Medical Instruments: UDI compliant micro-marking on surgical scalpels, implants, and stainless tools.
  • Electronics & Electrical: IC chips, PCB shielding cans, terminal blocks, connectors, and switch panels.
  • Tooling & Hardware: Carbide inserts, drill bits, saw blades, nameplates, valves, and plumbing fittings.
Technical Insights

Frequently Asked Questions by Overseas Buyers

Practical answers provided by Marvel application engineers to help you select the right machine configuration.

20W and 30W fiber lasers are ideal for standard surface marking, high-contrast barcode/QR coding, and fine text on metals and plastics. 50W is recommended for deep metal engraving, faster cycle times, and cutting thin metal shims. 100W laser sources provide ultra-fast deep engraving and high-volume industrial line speed integration.

Fiber laser markers operate at a 1064 nm wavelength, optimal for processing stainless steel, carbon steel, aluminium, brass, copper, titanium, anodized surfaces, electroplated coatings, and engineering plastics such as ABS, PVC, Nylon, and Polycarbonate.

No. Fiber laser marking is a non-contact physical process. It eliminates inks, ribbons, acid etching chemicals, and stickers, significantly reducing operational cost and environmental impact.

Yes. We offer motorized rotary axes for cylindrical items (pipes, rings, shafts), XY motorized tables, conveyor belt flight marking software, and custom mechanical fixtures engineered specifically for your component geometries.

Fiber laser markers are virtually maintenance-free with solid-state laser sources rated for up to 100,000 working hours. Regular care is limited to keeping the field lens clean and ensuring adequate ambient air circulation.

Direct Factory Support

Request Detailed Technical Specifications & Quotation

Contact our laser application engineering team today. Share your part drawings, material substrate, marking content, and cycle time requirements for a customized proposal and sample test report.