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OPTIC
Metal/non-metal
Laser Power: | |
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Cooling way: | |
Marking area: | |
Availability: | |
Laser type | Fiber laser |
Laser Power | 20W/30W/50W |
Marking area | 100*100mm/200*200mm/300*300 |
Marking line width | 0.01-0.1mm |
Marking depth | 0.01-2mm(depending on material) |
Working voltage | 220v/50Hz |
Cooling way | Air cooling |
Warranty | 2Years (includes parts & laser power) |
Fast marking Speed and High Efficiency
High Electro-optic Conversion Efficiency
Perfect marking effect
Integrated structure,small and compact size,less occupied area,easy transportation
Multiple power laser light source, available for many industries;
Fast speed, high efficiency, stable output power, high reliability;
Long life, maintenance-free within 100,000 hours, operated in 24 hours and severe working condition;
High electro-optic conversion efficiency, little energy coupling loss, less power consumption with just 0.5 KW/Hour;
Small and compact size, easy to carry, save production space.
Fiber Laser
The fiber laser is the most recent development in laser marking technology. Fiber laser marking machine uses a low maintenance solid-state laser source. Because of its effective cooling system, it is proving very popular among the existing laser marking systems. There are no consumable materials required and you don’t have to worry about maintenance, either. Ultimately, fiber laser marking tools are very reliable, safe, and good for the environment. These fiber laser marking machines are ideal for marking on various metals such as stainless steel, aluminum, and some plastics, etc.
The following are some examples of fiber laser marking/engraving machines for metal markings.
This technology consists of a high frequency beam generated from a laser source. This beam is then amplified and directed towards a part to be marked via a series of rotating mirrors. The reaction that takes place inside the material marked consists of 3 distinct processes:
Engraving: a groove is created in the first layers of the material
Annealing: the color of the target material is altered to enhance the contrast
Foaming: the coating aspect is altered.
3C industry, auto industry, medical equipments , electronic components, IT industry, hardware industry, precision apparatuses, crafts, high-low-voltage appliances, etc
Laser type | Fiber laser |
Laser Power | 20W/30W/50W |
Marking area | 100*100mm/200*200mm/300*300 |
Marking line width | 0.01-0.1mm |
Marking depth | 0.01-2mm(depending on material) |
Working voltage | 220v/50Hz |
Cooling way | Air cooling |
Warranty | 2Years (includes parts & laser power) |
Fast marking Speed and High Efficiency
High Electro-optic Conversion Efficiency
Perfect marking effect
Integrated structure,small and compact size,less occupied area,easy transportation
Multiple power laser light source, available for many industries;
Fast speed, high efficiency, stable output power, high reliability;
Long life, maintenance-free within 100,000 hours, operated in 24 hours and severe working condition;
High electro-optic conversion efficiency, little energy coupling loss, less power consumption with just 0.5 KW/Hour;
Small and compact size, easy to carry, save production space.
Fiber Laser
The fiber laser is the most recent development in laser marking technology. Fiber laser marking machine uses a low maintenance solid-state laser source. Because of its effective cooling system, it is proving very popular among the existing laser marking systems. There are no consumable materials required and you don’t have to worry about maintenance, either. Ultimately, fiber laser marking tools are very reliable, safe, and good for the environment. These fiber laser marking machines are ideal for marking on various metals such as stainless steel, aluminum, and some plastics, etc.
The following are some examples of fiber laser marking/engraving machines for metal markings.
This technology consists of a high frequency beam generated from a laser source. This beam is then amplified and directed towards a part to be marked via a series of rotating mirrors. The reaction that takes place inside the material marked consists of 3 distinct processes:
Engraving: a groove is created in the first layers of the material
Annealing: the color of the target material is altered to enhance the contrast
Foaming: the coating aspect is altered.
3C industry, auto industry, medical equipments , electronic components, IT industry, hardware industry, precision apparatuses, crafts, high-low-voltage appliances, etc
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