50W 3D Fiber Laser Marking Machine Automatic Focus

50W 3D Fiber Laser Marking Machine Automatic Focus

Model MRJ-FL-3D series dynamic focusing fiber laser marking machine can be applied to any curved surface, sphere, step and irregular surface marking;
The laser focal length can be change through the focusing axis, it can also realize deep carving, to meet all 3D marking requirements
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Product Introduction

50W 3D Fiber Laser Marking Machine Automatic Focus

Product Introduction


The 50W 3D Fiber Laser Marking Machine with Automatic Focus is a high-performance laser marking system that is perfect for a wide range of applications. With advanced features and high-quality construction, this machine offers excellent performance, precision, and reliability.

The 50W 3D Fiber Laser Marking Machine with Automatic Focus is perfect for applications where precision and speed are essential. Whether you need to mark components for identification purposes, labels for packaging or branding, or custom designs for jewelry and other products, this machine can help you achieve remarkable results.


Product Features

◆ Equipped with shining blue LED, unique streamlined design of marking head, specially applied for high-end laser market.

◆ The max marking field is 400x400mm. The max scan height is 130mm.

◆ Support 3D model importing, 2D model can be coated or projected on the built-incommonly used curved surface.

◆ Integrated structure, small size, fine sealing, ensuring the stability of long time working.

◆ The galvanometer scan focus beam size is 50um, response speed can meet precision fillingup to 5000mm/s.


Product parameters

Model

MRJ-FL-3D20A

MRJ-FL-3D30A

MRJ-FL-3D50A

Laser Power

20W

30W

50W

Pulse Energy

1.2MJ

1.3MJ

1.5MJ

Repetition FREQ.

20-80KHz

30-80KHz

50-120KHz

Laser Wavelength

1064nm

1064nm

1064nm

Marking Field

≤300mmx300mm

≤400mmx400mm

≤700mmx700mm

Min. Line Width

30um

30um

30um

Marking Speed

≤6000mm/s

Support Font

TrueType Font, AUTOCAD Single Line Font, Custom Font

1D Barcode

CODE39/CODE128/ITF/CODEABAR/EAN/UPC, etc.

2D Barcode

OR/PDF417/Data Matrix(ECC200), etc.

Input File

PLT/DXF/DWG/BMP/JPG/JPEG/PNG/TLF, etc.

3D Model

Support STL Format

Input Power

Single Phase 110V/220V/50-60Hz

Power Consumption

≤600w

≤800w

≤1000w

Cooling Method

Air Cooling

Air Cooling

Air Cooling

Control Interface

USB2.0

USB2.0

USB2.0

Product Details

details of 3d laser marking machine

Product Application

At present, plastic is widely used in various industries, including industry, agriculture, communications, packaging, home furnishing and other fields. Plastic products can be seen everywhere in society and life. With the continuous improvement of plastic products, marking methods are also updated, from the traditional ink coding to further upgrade to the advanced laser marking machine for plastics.


Plastics are very important in our daily life, applications are very wide, which affect our daily life. So in order to improve their product brand influence, promote brand publicity user experience, and also facilitate the use of downstream products, many manufacturers will want to mark clearly on the plastic products beautiful production date, logo, patent number, company name, parameters, indicating the name, number and other information.


Food and beverage 

In order to product more beautiful, and effective anti-counterfeiting and management of products, a variety of food and beverage also gradually use advanced plastic laser marking machines.

beverage marking


beverage marking (1)

Electrical appliances

In the electronic and electrical industry, laser marking machine is mainly used for mobile phone adapters, earphones, shells, computer mouse, transparent keyboard and various electronic components and other plastic products surface information marking and pattern marking.

electronic products(1)

electronic products(2)

Lighting

All kinds of modern LED lamps, including their lamp caps, lampshades, on and off accessories need to use laser for information marking.

light marking


Knowledge

The difference between laser MOPA and Q modulation(2-1)

China's optical fiber laser marking technology has developed rapidly in recent years, among which it has been widely used in electronic 3C products, machinery, food, packaging and other fields. Compared with the traditional marking technology, laser marking technology has advantages for preventing material loss. In order to get more beautiful marking effect and more efficient production and processing, people will choose different manufacturers and types of laser devices on the market to compare, so as to find the laser suitable for processing this kind of products.

The pulse fiber laser used in marking mainly includes two types: modulation Q technology and MOPA technology. A laser adopted modulation Q is also called Q-switched laser, which was introduced into China a few years ago, so it now occupies a large processing market. MOPA laser has been gradually developed in recent years. As a newer technology, what is the difference between MOPA laser and Q-switched laser? 

Applicaiton 1. Removal of Aluminum Oxide Thin Plate Surface Removal

Today's electronic products are becoming thinner and thinner, with many phones, tablets and computers using lightweight alumina as the shell. If the Q laser is used to mark the conduction potential on the thin aluminum plate, it is easy to cause the material deformation, and the back side produces "convex hull ", which directly affects the beauty of the appearance. By setting the parameters of small pulse width of MOPA laser, the material is not easy to deform and the shading is more delicate and bright. This is because MOPA laser uses small pulse width to make the laser stay on the material a little shorter, at the same time there is enough energy to clear the anode layer. So for the thin alumina plate surface stripping anode processing, MOPA laser is a better choice.

Application 2. Precision processing applications in electronics, semiconductor, ITO fields

Fine lineation marking is often used in precision machining of electronics, semiconductors and ITO. Because of its own structure, the Q laser can not adjust the pulse width parameters, so the line is difficult to be fine. Whereas MOPA laser can adjust pulse width and frequency parameter flexibly, it can not only make the line fine, but also make the edge appear smooth and not rough.

(Please note: click here to scan the Part 2 of "The difference between laser MOPA and Q modulation")

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