Scantech Laser Industrial Marking Systems
ISO 9001:2015 Certified Manufacturing

Laser Marking Machines

High-speed fiber, MOPA, UV, and CO2 laser solutions for permanent direct part marking (DPM) and industrial product traceability.

Engineering Excellence Since 1991

Precision Laser Marking Technology For Global Manufacturers

Scantech Laser designs and builds industrial-grade laser marking systems engineered for continuous, high-duty OEM production lines. Utilizing fiber, MOPA, UV, and CO2 laser wavelengths, our machines create abrasion-resistant, high-contrast marks on metals, engineered polymers, ceramics, and coated surfaces without consumables.

01

High-Speed Fiber Laser Markers

1064nm pulsed fiber lasers delivering high peak power for rapid etching, deep engraving, and corrosion-resistant annealing on stainless steel, carbon steel, brass, and aluminum alloys.

Pulsed 1064nm Source
02

MOPA Variable-Pulse Systems

Master Oscillator Power Amplifier technology providing selectable pulse duration (2 ns - 500 ns) for high-contrast oxide-free black marking on anodized aluminum and vivid color marking on titanium.

Adjustable Pulse Width
03

Cold UV Laser Marking (355nm)

Ultra-short wavelength diode-pumped UV laser markers producing cold photolytic chemical reaction marks on sensitive plastics, medical tubing, glass, and pharmaceutical packaging with zero heat-affected zone (HAZ).

Zero Thermal Damage
Quantitative Performance Matrix

Laser Marking vs. Traditional Industrial Marking

Global procurement and manufacturing teams transition to fiber laser marking to achieve zero ongoing ink/pin consumable costs, higher readability rates, and full Industry 4.0 MES traceability.

Performance Metric Scantech Fiber Laser Dot Peen Marking Continuous Inkjet (CIJ) Pad Printing
Marking Speed & Cycle Time Up to 12,000 mm/s (High-speed galvo) Slow (Mechanical pin movement) Moderate (Conveyor speed dependent) Slow (Mechanical transfer stamp)
Consumables & Operating Cost ZERO consumables (Electrical input only) High pin wear & replacement cost High ink, solvent & filter costs High ink, plate & silicone pad costs
Mark Permanence & Quality Indelible; resists chemical, heat & wear Deforms part surface; low resolution Smudges easily; chemical sensitive Wears off over time
Minimum Feature Size (Resolution) < 20-micron focal spot size Limited by pin radius (>0.5mm) Low pixel dot matrix Moderate line crispness
Maintenance Overhead 100,000+ hours MTBF laser diode life Frequent mechanical downtime Daily nozzle unclogging & flush Regular plate cleanup
Industrial Application Capabilities

Advanced Laser Processing Techniques

Selecting the appropriate beam parameters ensures exact compliance with automotive VIN, medical device UDI, and ISO/IEC 16022 2D DataMatrix standards.

01

Laser Annealing

Localized thermal oxide generation on stainless steel & titanium without material removal or compromising corrosion resistance.

02

Laser Ablation & Etching

Vaporization of surface coatings, paints, anodized oxide layers, or oil films to expose high-contrast base substrates.

03

Deep Engraving

High-power repetitive beam scans creating deep geometric recesses for structural automotive VIN plates and tool steel dies.

04

Sub-Surface Foaming

Controlled thermal gas-bubble generation inside dark polymers to create crisp, raised white text on automotive switches and housings.

Machine Engineering Specifications

ProMark OEM & Standalone Series Specifications

Configured with premium IPG/JPT fiber sources, Scanlab high-speed galvo heads, and F-Theta telecentric optics engineered for 24/7 industrial production environments.

Specification Parameter Pulsed Fiber Marking Series MOPA Fiber Marking Series UV Laser Marking Series
Nominal Output Power 20W / 30W / 50W / 100W 20W / 30W / 60W / 100W 3W / 5W / 10W
Laser Wavelength 1064 nm ± 5 nm 1064 nm ± 5 nm 355 nm (Ultraviolet)
Pulse Duration / Width Fixed (~100 ns) Selectable (2 ns - 500 ns) < 15 ns @ 30 kHz
Marking Field / Work Area 110x110 mm (Standard) up to 300x300 mm 110x110 mm (Standard) up to 300x300 mm 100x100 mm / 150x150 mm
Galvo Positioning Speed ≤ 12,000 mm/s ≤ 12,000 mm/s ≤ 8,000 mm/s
Repeatability Accuracy ± 0.002 mm ± 0.002 mm ± 0.001 mm
Safety Class & Compliance Class 1 Enclosed / Class 4 OEM head Class 1 Enclosed / Class 4 OEM head Class 1 Fully Enclosed Workstation
Export & Technical Support FAQ

Procurement Questions Answered By Senior Engineers

Need custom automation, rotary indexing tables, or vision-guided laser marking? Contact our technical team for custom OEM designs.

Standard pulsed fiber lasers operate with a fixed pulse duration, making them optimal for deep engraving, heavy metal marking, and high-speed part etching. MOPA (Master Oscillator Power Amplifier) lasers allow software-controlled pulse width adjustment from 2 ns to 500 ns. This gives engineers precise control over heat input, enabling oxide-free black marks on anodized aluminum, vivid color oxidation on stainless steel and titanium, and damage-free marking on heat-sensitive polymers.

Our software suite directly generates verified ISO/IEC 16022 compliant 2D DataMatrix codes, GS1 barcodes, and micro-text. Integrated vision alignment cameras verify barcode grading (Grade A/B compliance) in real-time prior to part ejection. For pharmaceutical clients, audit trail modules assist compliance with 21 CFR Part 11 requirements.

All export machinery undergoes Factory Acceptance Testing (FAT) at our Navi Mumbai plant with customer part trials. Shipments are packaged in IP54-protected seaworthy wooden crates. We provide comprehensive Site Acceptance Testing (SAT), remote PLC diagnostic support, complete technical schematics, and hands-on maintenance training for international factory operators.

Yes. OEM ProMark marking heads feature compact IP54 galvo enclosures with standardized mounting fixtures. We provide integration controllers supporting Profinet, EtherNet/IP, Modbus TCP, and TCP/IP protocols to communicate directly with Siemens, Allen-Bradley, and Omron PLCs or six-axis articulated robots.

Global B2B Supply & Sample Testing

Request A Custom Sample Marking Report Or Quotation

Send us your component technical drawings, material type, target cycle time, and marking requirements. Our R&D laboratory will run sample trials and return a detailed process evaluation report.

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