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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
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.
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.



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.
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.
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
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.
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.



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.
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.
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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