About Metal Laser Marking Machines
Laser Marking Machines employ laser technology to etch orengrave accurate lines that are permanent onto a range of materials. Due totheir adaptability, accuracy, and efficiency, these machines have been widelyused in a variety of sectors. High-powered lasers are used by laser markingmachines to imprint markings, patterns, or codes on materials. Due to itsadaptability to different applications, these machines may be used in a varietyof sectors, including automotive, aerospace, electronics, medical, jewelry, andmore. High-speed operation of these machines ensures effective output andlittle downtime.
| Marking Speed Capacity |
8000 mm/s |
| Usage/Application |
MARKING ON VARIOUS MATERIAL |
| Laser Type |
Fiber Laser |
| Marking Depth |
AS PER CUSTOMER REQUIREMRNTS |
| Model Name/Number |
PI-20 |
| One pass (depends on material) |
DEPEND ON MATERIALS |
| Min Line Width |
0.01 MM |
| Minimum Line Width |
0.1 MM |
| Whole Machine Power |
1 KW |
| Maximum working Area |
300X300 MM AREA |
Unmatched Precision & SpeedThe machine offers an impressive marking speed of up to 7000 mm/s and delivers ultra-fine line widths of just 0.01 mm. Coupled with advanced beam quality (M2 < 1.2) and excellent accuracy, you can achieve sharp, permanent marks for serial numbers, logos, or data matrices on a wide range of metals and supported plastics.
Versatile Operation & Simple IntegrationDesigned for flexibility, this system operates in both continuous and modulation modes, fitting right into CNC-driven production lines. Compatible with common graphic file formats and supporting USB connectivity, it seamlessly integrates into various workflows.
Built for Lasting PerformanceWith a robust fiber laser module offering over 100,000 hours of operating life, low maintenance air-cooling, and sturdy construction weighing around 80 kg, this laser marker is engineered for dependable, long-term use in demanding industrial environments.
FAQ's of Metal Laser Marking Machines:
Q: How does the fiber laser marking machine ensure high precision in marking?
A: The machine utilizes a 1064 nm wavelength fiber laser, delivering a beam quality of M2 < 1.2, which ensures ultra-fine accuracy (0.01 mm), a minimum line width of 0.01 mm, and crisp characters as small as 0.15 mm. These features contribute to exceptionally detailed and permanent marks.
Q: What types of materials can be processed with this laser marking machine?
A: This system is primarily designed for metals such as stainless steel, aluminum, copper, gold, and silver. Additionally, it effectively marks certain non-metals including plastics like ABS and PVC, providing versatility for various industrial applications.
Q: Where can this machine be integrated within a manufacturing facility?
A: Thanks to its CNC compatibility and USB interface, the laser marking system can be easily integrated into automated production lines, standalone workstations, or used by exporters, manufacturers, and suppliers looking for reliable marking solutions.
Q: What is the typical process for laser marking items using this machine?
A: Users prepare design files in formats like AI, PLT, DXF, or BMP and load them into the EZCAD control software. By adjusting settings according to the material, users initiate marking-selecting the desired operation mode for either continuous or modulation setups, ensuring precise and consistent results.
Q: What are the main benefits of choosing this marking machine for industrial use?
A: Key benefits include high-speed marking (up to 7000 mm/s), ultra-fine detailing, compatibility with a wide range of files and materials, minimal maintenance due to air cooling, robust durability, and a laser module lifespan of over 100,000 hours.
Q: When is the ideal temperature for operating this laser marking machine?
A: Optimal performance is achieved within an operational temperature range of 10C to 35C, ensuring both high marking quality and reliable equipment longevity.