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Laser cutting machine Mitsubishi GX-F fiber 4×2 series

Laser cutting machine Mitsubishi GX-F fiber 4×2 series are the new standard in fiber optic technology. Never before has the cutting process been so precisely monitored by an advanced array of sound and optical sensors for maximum efficiency and trouble-free operation.

The ultra-fast D-Cubes controller, which manages the new innovative laser source, has built-in artificial intelligence algorithms and, without the operator’s involvement, is able to correct cutting parameters as needed and activate the automatic nozzle replacement system.

Mitsubishi GX-F cutters are prepared to work with automation as standard, including automatic sorting systems.

Mitsubishi Electric is a global provider of laser processing solutions. It is the only company in the world to produce cutting machines based on its own components, including the most crucial ones such as sources, cutting heads and control systems.

Working area: 4050 x 2060 mm
Resonator power: 4000W, 6000W, 8000W, 10000W

Schedule a meeting with a customer advisor.

Our experts will analyze your situation, answer all your questions, and prepare a personalized offer.

Laser cutting machine Mitsubishi GX-F fiber 4×2 series
Technical data:

Machine construction: Mitsubishi fiber type source, two shuttle tablesSimultaneous speed X / Y axis: 140m/min
Control unit: Mitsubishi D-Cubes, 19” touch screenPositioning accuracy: 0,05/500mm (axis X,axis Y)
Max. working area: 4050 x 2060 mmRepeatability of positioning: 0,01mm (axis X,axis Y)
Max. sheet weight: 1650 kgWorking Head: Mitsubishi Automatic Zoom Head (Infinitely adjustable focal length from 3.75″-10″) 
External dimensions: 15 000 x 7660 x 2310 mmX/Y/Z axis working range: 4100/2100/120 mm

Laser cutting machine Mitsubishi GX-F fiber 4×2 series – advantages:

High efficiencyLow operating costs
ReliabilityWorking comfort
SafetySimple operation

The cutting range depends on the power resonator:

Laser cutting machine Mitsubishi GX-F fiber 4x2 series

*The thickness range and quality of the cut depends on the quality of the input material and the specific shape of the part to be cut. The greatest efficiency is achieved when cutting thin materials in the 0.5-6 mm range.

Schedule a meeting with a customer advisor.

Our experts will analyze your situation, answer all your questions, and prepare a personalized offer.


FAQ


Applications of Laser Cutting Machines

  • Laser cutting machines are used in many fields, but primarily in the production of components for industries such as aerospace, automotive, and the manufacture of household appliances and consumer electronics. When deciding to purchase an industrial laser cutting machine, it is important to analyze several key factors. The technologies used in these machines differ significantly and have various applications. The type of machine chosen will have a real impact on the production process. A metal laser cutter enhances production capabilities, processing precision, and above all, process efficiency. We value the broad range of applications of laser cutters. Over the years, new models have been equipped with additional technologies, accessories, and features that not only speed up production but also enable a high level of automation.
  • The ability to precisely cut complex shapes and patterns makes laser cutting machines ideal for manufacturing high-precision components such as machine parts, jewelry, or decorative elements. Laser cutters are also very scalable, meaning they can be used both in small workshops and in large manufacturing plants.

What can laser cutting machines cut?

  • A laser cutting machine is used to cut flat sheet metal made from the following materials:
    – Titanium
    – Stainless steel
    – Carbon steel
    – Aluminum
    – Copper
    – Bronze
  • Before choosing the right machine, consider the intended use. It’s essential to take into account the type of cutting, as well as the thickness and type of material being cut. These factors determine the required laser power and accessories. There are many options available, so it’s important to define your production needs first. The most advanced machines are highly automated — ideal for large-scale production. Each laser cutting machine in our offering is a reliable investment for the long term. The high quality of materials and attention to detail ensure that the money spent will be quickly returned.

CO2 and Fiber Laser Cutting Machines

  • CO2 laser-based cutting machines have been used in the metalworking industry for many years and were particularly popular over the past two decades. In CO2 machines, the laser beam is guided through a mirror system. Cutting precision depends on the accurate alignment of the cutting beam. Today, this technology is mainly used for cutting thick stainless steel sheets. CO2 lasers are increasingly being replaced by fiber laser cutting machines.
  • These models lack complex optical systems, and the light beam is guided precisely using fiber optics. This improves cutting quality and reduces operating costs. Choosing the right laser cutting machine must be a well-considered decision. It is important to define your production needs and preferred cutting technology. Our offering includes both CO2 and modern fiber laser machines, utilizing fiber optic laser technology. Devices from reputable manufacturers like Mitsubishi and Baykal are tailored to meet the demands of today’s market. They offer precise and intuitive control, improving operator comfort. Fiber lasers used in these machines ensure efficient operation and reduced production times, directly increasing company profits.

Laser Cutters – Modern Technology and Energy Efficiency

  • Laser cutters used for processing various surfaces today boast high quality and precision. Advanced metal cutting lasers provide fast operation without consuming large amounts of energy. It’s worth looking for machines with an Eco Mode function, which reduces standby energy consumption by up to 99%. It’s crucial to match the machine to the needs of your facility or production line. That’s why investing in machines built on modern fiber laser technology, with advanced touch-screen control and fast startup systems, is a smart move. A well-chosen laser cutter will make tasks easier and ensure smooth processing of different types of metals. We invite you to review the technical specifications of the laser cutting machines we offer. If you have any questions, feel free to contact our representative — we’ll be happy to help you choose the right equipment.
  • Laser cutters are becoming key tools in many industries, enabling precise material processing with unmatched accuracy. From metal to plastics — innovative fiber laser technology opens up new possibilities for designing and manufacturing complex parts. Understanding the key facts about laser cutters, their types, and applications is essential for companies aiming to maximize productivity and product quality. It is crucial to choose a machine that not only meets the specific requirements of your sector but also ensures long-term efficiency and reduced operational costs.

Fiber Laser Technology in Laser Cutting Machines

  • When it comes to precise and efficient cutting, fiber laser machines top the list of best-performing equipment. Their main advantage is the ability to generate a concentrated beam of light, allowing for incredibly precise cutting, regardless of the shape or pattern complexity.
  • Furthermore, fiber laser cutting machines are synonymous with versatility. They can be used with a variety of materials, earning recognition across all industrial sectors. Fiber laser technology boosts work efficiency by delivering fast and precise cuts while minimizing material waste. Thanks to its innovative approach, it enhances work quality and accuracy in ways traditional cutting techniques cannot match. There’s no doubt that investing in a fiber laser cutting machine will bring significant benefits to your business.

Adapting a Laser Cutter to Production Needs

  • Adapting a laser cutter to production needs is key to improving manufacturing efficiency and quality. In today’s highly competitive market, investing in precise and flexible technologies is essential. Thanks to their versatility, laser cutters can handle materials with precision across industries from automotive to electronics.
  • The first step is defining production requirements. Understanding what materials will be processed, their thickness, and the desired cutting speed will help determine the right type of laser. CO2 lasers are best for plastics, wood, and glass, while fiber lasers are more suitable for cutting metals.
  • Next is configuring cutting parameters such as laser power, cutting speed, and focus. Modern control systems allow precise adjustment of these parameters, ensuring optimal cutting results for various materials. Regular maintenance and calibration are also important — they ensure uninterrupted production and extend the machine’s life. Investing in automation, such as loading and unloading systems, can further enhance efficiency while reducing the need for operator intervention.

Choosing a Laser Cutting Machine – What to Consider

  • Choosing a laser cutting machine is a crucial decision for any company aiming to improve production efficiency and quality. With a wide range of models available, it’s important to make an informed choice tailored to your company’s specific needs. The first and most important factor is determining the types of materials to be processed. Depending on whether it’s metals, plastics, wood, or glass, different laser types will be suitable.
  • Another key factor is laser power, which directly affects cutting speed and quality. Higher power allows faster cutting of thick materials but comes with higher purchase and operating costs. Therefore, laser power should be balanced between expectations and actual needs. The size of the work area is also important and should match the maximum dimensions of the materials being processed. A work area that’s too small will limit production capabilities, while one that’s too large can be uneconomical. Accuracy and repeatability of cutting are also critical — they affect the quality of the final product. High accuracy and repeatability ensure every cut piece is identical, which is especially important for mass production.

Check also


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