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Machine Type: Portable split handheld fiber laser marking machine
Main Use: Logos, serial numbers, QR codes, text, and product identification on metal parts
Typical Materials: Stainless steel, aluminum, anodized aluminum, brass, coated metal, carbon steel, titanium, selected plastics, and ceramics
Laser Type: Pulse fiber laser
Laser Power: 20W standard, optional depending on configuration
Marking Field: 70×70 mm / 120×70 mm / 150×150 mm
Cooling Method: Air-cooled
Typical Working Scenarios: Large workpieces, on-site maintenance, and space-limited production environments
Compact and lightweight: Easier to move than conventional desktop equipment, making it more practical for operators who need flexibility across different workstations or job sites.
Small footprint: Suitable for workshops and production areas where installation space is limited and equipment layout matters.
Compact packaging: A smaller packing size helps simplify storage, transportation, and delivery planning.
Lower shipping cost: Reduced size and weight can help lower transport cost compared with larger marking systems.
Handheld laser marking machines are suitable for large, hard-to-move workpieces, outdoor applications where fixed installation is not practical, and equipment maintenance tasks. For smaller products that require more stable positioning, accessories such as a support column can be added to fix the marking head and adjust working height more accurately.
Designed for operations where the machine needs to move to the product, not the other way around.
Suitable for fine text, serial numbers, QR codes, and detailed identification marks on metal surfaces.
Works across a range of common industrial materials, helping buyers cover multiple marking tasks with one system.
Straightforward operation supports day-to-day production, maintenance work, and repeated marking tasks.
70×70 mm, 120×70 mm, and 150×150 mm marking field options for different part sizes and marking areas.
Supports stable and efficient marking performance for routine industrial coding and identification work.
Supports text, barcodes, QR codes, graphics, dates, symbols, and other common marking content used in production.
Designed for stable output and long service life in continuous industrial use.
12000mA 24V optional battery for applications that require more flexible operation away from fixed power points.
A more compact shipping format helps reduce logistics cost and makes delivery easier to arrange.
No regular consumable replacement
Requires electrical power only
Helps control daily operating cost
Suitable for long-term industrial use
No ink
No solvent
No pungent marking media
No corrosive consumables
Supports a cleaner production area
No consumable waste during marking
Suitable for routine production use
Supports lower running complexity than consumable-based systems
Controlled marking depth
Good oxidation resistance on suitable materials
Clear traceability information
Suitable for logos, codes, and permanent identification
Reliable for industrial marking tasks
The split structure is designed for buyers who need flexibility in real working environments rather than a fixed desktop-only layout.
Separating the marking head from the main unit makes the machine easier to position when parts are large, irregular, or difficult to move.
The 20W configuration is suitable for routine coding, branding, and identification work where readability and repeatability are more important than unnecessary complexity.
Fiber laser systems are widely selected for industrial use because they offer stable operation and long expected service life under normal working conditions.
The design helps reduce routine maintenance demand, which is especially important for users managing multiple jobs or production lines.
| Model Number | HF10XX-I |
| Laser Power | 20W / 30W / 50W (optional depending on configuration) |
| Laser Level | Class IV (IEC 60825-1) |
| Laser Type | Pulse fiber laser |
| Wavelength | 1064 nm |
| Marking Field | 70×70 mm / 120×70 mm / 150×150 mm |
| Marking Depth | ≤0.01 mm |
| Marking Speed | ≤10000 mm/s (optional) |
| Marking Line Width | 0.01–0.2 mm |
| Min Character Size | 0.015 mm |
| Repeat Accuracy | 0.01 mm |
| Cooling Method | Air-cooled |
| Laser Source Expected Life | >100,000 hours |
| User Interface | 8 inch touch display |
| Battery | 12000mA 24V (Optional) |
| Consumables | No |
| Working Temperature | 0–45℃ |
| Power Consumption | 700 W |
| Electrical Requirement | L/N/PE 100–240 VAC, 50/60 Hz |
| Weight | 7.5KG |
This handheld fiber laser marking machine is mainly used for metal marking. Results on plastics and ceramics depend on material composition, surface condition, and the required marking effect.
| Material Category | Material | Typical Suitability |
|---|---|---|
| Metal | Stainless steel | Excellent |
| Metal | Aluminum | Excellent |
| Metal | Anodized aluminum | Excellent |
| Metal | Brass | Excellent |
| Metal | Coated metal | Excellent |
| Metal | Copper | Good |
| Metal | Gold, silver, nickel, platinum | Good |
| Metal | Carbon steel | Excellent |
| Metal | Titanium | Excellent |
| Plastic | PE / PVC / PPR / ABS / Nylon | Depends on application |
| Plastic | PP / PET / MPP / PC | Depends on application |
| Ceramic | Ceramic / technical ceramic | Depends on application |
Excellent reaction: √√ Good reaction: √ Poor reaction: -
Suitable for part identification, serial number marking, QR code marking, and traceability requirements in routine production.
Useful when equipment cannot be moved easily and marking needs to be completed directly on installed parts or large assemblies.
Suitable for logos, names, text, and customized content on metal products where permanent marking is required.
A practical option for users who need industrial marking capability without dedicating as much floor space to a large desktop system.
Regular cleaning: Keep the marking head and working area clean to support stable performance.
Check connections: Confirm that cables and connectors remain secure during routine operation.
Software management: Keep the control software in proper working condition for daily production use.
Routine servicing: Periodic inspection helps maintain reliable output and reduce unexpected downtime.