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Fast Speed 20W Fiber Laser Printing Machine
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Fast Speed 20W Fiber Laser Printing Machine

The Fast Speed 20W Fiber Laser Printing Machine delivers industry-leading 10,000mm/s marking speed via a high-power 1064nm fiber laser source—optimized for rapid metal processing. Engineered for high-throughput production, it features a 110×110mm precision workbench (with magnetic positioning clamps for repeatable part placement) and dual-axis galvanometer scanning system (response time <0.1ms). The laser source boasts 100,000-hour mean time between failures (MTBF)—equivalent to 11 years of 24/7 operation—minimizing downtime for manufacturing lines.
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The Fast Speed 20W Fiber Laser Printing Machine delivers industry-leading 10,000mm/s marking speed via a high-power 1064nm fiber laser source—optimized for rapid metal processing. Engineered for high-throughput production, it features a 110×110mm precision workbench (with magnetic positioning clamps for repeatable part placement) and dual-axis galvanometer scanning system (response time <0.1ms). The laser source boasts 100,000-hour mean time between failures (MTBF)—equivalent to 11 years of 24/7 operation—minimizing downtime for manufacturing lines.


Rotating handle

Control switch

Working platform

Galvanometer

Laser field lens

Column


Peripheral interface

Bundle tube


Market Research

Global fiber laser marking market reached $18.4B in 2024, with a 7.6% CAGR projected through 2031. Electronics manufacturers account for 38% of demand, needing fast marking of circuit boards (QR codes, serial numbers) and connectors—where every 0.1-second reduction in marking time increases production capacity by 1,000 units per day. The automotive sector is also a key driver, using fiber lasers for VIN code marking on steel frames (100,000+ units per year per factory) and aluminum alloy parts.

Key Features

Ultimate Speed: 10,000mm/s marking speed—3x faster than CO2 lasers for metal applications—enabling 0.2-second marking of smartphone motherboard QR codes.

Energy Efficiency: 30% higher electro-optical conversion rate (50% vs. 38% for standard fiber lasers) reduces power consumption to 0.8kWh/hour—saving $200+ annually in electricity costs.

Permanent Marking: Creates deep, wear-resistant marks that withstand friction (10,000 cycles of abrasion testing), chemicals (gasoline, oil, cleaning solvents), and temperature extremes (-40℃ to 200℃).

Versatile Compatibility: Works with all common metals: carbon steel, stainless steel, aluminum, brass, copper, and plated metals (zinc, chrome)—no material pre-treatment required.


Performance Meets

Certified to ISO 9001:2015 (clause 8.5.1 for production process control) and CE safety standards. Even at maximum speed, it maintains ±0.01mm accuracy—critical for electronics miniaturization (e.g., 0402-sized SMD component marking). The machine passes 240-hour continuous operation testing with no deviation in marking quality, and the fiber laser source has a 3-year full warranty.

Customized Service

Larger working area upgrades (200×200mm, 300×300mm) for oversized parts like automotive engine blocks or industrial valves.

Conveyor belt integration (with photoeye sensor) for assembly line operation—automatically triggering marking when parts enter the working area.

Custom barcode/QR code generation software (compatible with GS1 standards) for supply chain traceability

MES system integration (via OPC UA protocol) to sync marking data with production management software.


Q: How long does it take to mark a serial number on metal?

A: 0.3 seconds per 10-character alphanumeric sequence at maximum speed—enabling 12,000 parts to be marked per hour in a fully automated line.


Q: What maintenance is required?

A: Only quarterly lens cleaning (using lint-free cloth and lens cleaner) and annual inspection of the galvanometer mirrors—no laser source replacement needed for 10+ years. The machine has a self-diagnostic function that alerts users to potential issues (e.g., lens contamination).


Q: Can it mark on thin metal sheets (e.g., 0.1mm aluminum foil)?

A: Yes, the low-power mode (10-30% output) creates clear marks without piercing or warping thin metals—ideal for battery cell labeling or flexible electronics.

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