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Traditional laser marking systems often involve integrated setups where the laser source and marking head are combined in a single unit. While functional, such designs can be cumbersome, limiting operational versatility and affecting precision in tight or complex spaces. Split fiber laser marking machines, however, take a modular approach, enabling users to position the marking head independently of the laser source. This improved operational flexibility is a game-changer, especially in environments requiring precise marking on intricate designs or hard-to-reach areas.
Portable laser markers are expandable in every way, giving them an advantage over standard markers in many application scenarios
1.Powerful expandability
External Communication Interface:
Connect to USB, Ethernet, RS232 and other interfaces for easy integration with other equipment or systems for automation and remote control.
Various types of rotary heads:
Various rotary heads can be connected externally, suitable for marking cylindrical or curved objects, such as rings, bracelets, pipes, etc., which makes it more convenient to deal with different shapes of workpieces.
Various fixtures:
Equipped with a variety of fixtures to fix different shapes and sizes of workpieces, to ensure the stability and accuracy of the marking process, to adapt to more diverse marking tasks.
Adjust the direction of the galvanometer:
The direction of the galvanometer can be adjusted to adapt to different marking needs and realize high-precision operation.
2.Better performance than standard model
DIY Computer Configuration:
Users can configure their own computers to meet their needs, choosing high-performance PCs or laptops to run laser equipment more efficiently, improve performance, and customize and optimize for their needs.
High Performance Computing Requirements:
When equipped with a 3D galvanometer, higher computer processing power is required. Users can choose more powerful CPUs and GPUs to smoothly handle complex 3D graphics and models and improve marking efficiency and quality.
3.Wide range of applications
Offices and studios:
Compact, lightweight and powerful for office and studio use, handling a wide range of small batch and customized marking tasks.
Startups and Innovations
Ideal for startups and innovation studios, saving space and costs, responding quickly to marking needs, and supporting small-scale production and rapid prototyping.
Research and Teaching:
Widely used in research and teaching for laboratory research projects, student experiments and demonstrations, and training courses in educational institutions.
Outdoor work:
Equipped with a mobile power supply, it can work in pickup trucks, trucks, vans and trunks for outdoor work and on-site marking needs.
High speed 3D scan head(Optional)
100-1000mm marking range
High-speed galvanometer
High-speed galvanometer scan head,Dual red light focusing system
Professional marking software
BJJCZ EZCAD2 /EZCAD3
Top laser source
Laser brand:IPG/Raycus/MAX/JPT/nlight/SPI etc.
D80 rotary
Fourth axis, rotary marking
High-precision fine-tuning mobile platform
More accurate positioning, more convenient fixing, and convenient fine-tuning
Non-consumable
● No need to replace consumables
● Requires only electrical energy
● One-time investment
● Maintenance-free
Cleaner environment
Ink-free ●
Solvent-free ●
Non-pungent ●
Non-toxic ●
Non-corrosive ●
Energy-saving
● Non-wasteful
● 100% utilisation
● No emissions
Permanent mark
Controlled indentation depth ●
Resistant to oxidation ●
No colour loss ●
Traceable ●
Safe and reliable ●
The separation of the laser source and the marking head allows split fiber lasers to adapt to various setups. Whether working on large or uniquely shaped objects, the positioning flexibility ensures that precise markings are possible without the need for repositioning the entire unit. This flexibility is particularly valuable for manufacturers and laser marking station manufacturers looking to offer tailored solutions for diverse projects.
A hallmark of split fiber lasers is their ability to maintain uniform beam quality over long distances. This ensures that markings on metals, plastics, or other materials are sharp and consistent. Uniformity in beam quality is essential for high-end branding and functional markings, as any inconsistency could lead to defective results. This feature makes desktop fiber laser marking machines and portable fiber laser marking machines equipped with split fiber technology an excellent choice for applications where quality cannot be compromised.
Split fiber lasers are renowned for their stability and durability, requiring less maintenance compared to traditional systems. The reduced need for alignment and frequent upkeep translates to higher operational efficiency and lower costs, making these systems particularly appealing to businesses focused on long-term reliability and sustainability.
As technology continues to evolve, split fiber laser marking machines are poised to play an increasingly vital role in precision marking. Their modular design and robust performance make them a valuable tool across industries.
Future developments may include the integration of artificial intelligence for automated marking processes, further improving speed and accuracy. Enhanced energy efficiency and more compact designs are also expected, expanding the possibilities for portable and mobile applications. These advancements promise to redefine the capabilities of precision marking, ensuring that portable fiber laser marking machines and other variations remain at the forefront of technological innovation.
No. | Project | Parameter |
1 | Model number | HF10XX-A |
2 | Laser power | 30W/50W/100W/200W (optional) |
3 | Laser level | Class IV(IEC 60825-1) |
4 | Laser type | Pulse Fiber laser |
5 | Wavelength | 1064nm |
6 | Marking field | 110*110mm-300*300mm/600*600/1000*1000mm (optional) |
7 | Marking depth | ≤0.01mm |
8 | Marking speed | ≤10000mm/s(optional) |
9 | Marking line width | 0.01-0.2mm |
10 | Min character size | 0.015mm |
11 | Repeat accuracy | 0.01mm |
12 | Cooling method | Air-cooled |
13 | Laser source expected life | >100,000 hours |
14 | Standard user interface | PC/Laptop |
15 | Consumables | No |
16 | Temperature | 0-45℃ |
17 | Power consumption | 700 W |
18 | Electrical requirement | L/N/PE 100 – 240 VAC, 50/60 Hz |
Materials | Reaction | Materials | Reaction | ||
Metal | Stainless steel | √√ | Plastic | PE | √ |
Aluminum | √√ | PP | - | ||
Anodized aluminum | √√ | PVC | √√ | ||
Brass | √√ | PPR | √ | ||
Coated metal | √√ | ABS | √ | ||
Copper | √ | PET | - | ||
Gold, silver, nickel, platinum | √ | Nylon | √ | ||
Carbon steel | √√ | MPP | - | ||
Titanium | √√ | PC | - | ||
Ceramics | Ceramic | √ | Electrical and medical ceramic | Electrical and medical ceramic | √ |
Excellent Reaction: √√ Good reaction: √ Poor reaction: -
Precision is non-negotiable in automotive manufacturing. Split fiber lasers excel at marking components like serial numbers, logos, and safety-critical information. These highly reliable and traceable marks are vital for ensuring compliance and maintaining quality control in the production process.
In the electronics sector, where components are often tiny and intricate, split fiber lasers offer unparalleled precision. From marking circuit boards to labeling connectors, these lasers ensure that even the smallest elements are legibly and accurately identified, making them indispensable for complex assembly processes.
For industries like jewelry and fashion, where aesthetics and detail are paramount, split fiber lasers allow for intricate and precise engravings. Whether personalizing products or creating unique patterns, the ability to deliver fine details gives businesses a competitive edge in offering customized, high-value items.
Electric lift
Fume extractor
Foot switch
Conveyor