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Professional co2 laser engraver manufacturer

Top Co2 laser cutting machine online shopping? Based on the density of the photons and the amplification lens, the depth of the cutting depends. Usually, the CO2 laser cutting machine has a higher frequency than the other CO2 laser machines. We already mentioned that the laser machine has two different units. They have separate plugins. Before using our CO2 Laser cutting machine, we must check all of our plugins are connected correctly. On the other hand, the laser gun also has a few plugins that are directly related to the controlling unit. We should check that too.

On the other hand, check out the inputs and outputs of the laser gun. Ensure your CO2 laser gun is at the zero references. And then check out the software. You can use EZCAD to operate your machine. Ensure that your device has installed the right driver for the CO2 laser engraver machine. Compose your design and convert them into the computer. The tool will automatically detect what to do. After all, do not forget to change the focal length of the laser gun. If your object is 20mm off the height, but the laser gun 20mm above the zero references. Don’t forget to wear glasses and gloves while operating the machine. Finally, make sure you do not have any reflective materials besides your CO2 laser engraver machine.

Who Are We? Dongguan Hispeed Laser Technology is a factory providing laser marking machine and laser technology support to customers in laser industry worldwide. What We Do? Manufacturing and Selling Fiber laser marking machine,CO2 laser marking machine, UV laser marking machine and more. How we can help you? To save cost on sourcing laser machines and spare parts. To get the most suitable laser marking machine for your products .To recommend you the best laser marking solution for your production line reliably and cost-effectively. Read extra details on https://hispeedlaser.com/co2-laser-cutting-machine/.

However, let’s discuss the fiber laser marking principle. In the mechanism, two side mirrors are surrounding the laser medium (Fiber doped with erbium). While giving the Power in the medium, the particle energized and came to its excited state. If one particle comes to its original position, it releases a photon. If this photon hits another energized particle, it produces two photons. In this way, lots of photons are created from the excited particles in the laser medium. After that, depending on the requirements of the design, these photons are controlled by the machine and releases the necessary amounts and dimension of the beam. These photons then hit the surface of the materials and change the structural properties of the surface.

Laser is becoming a new method for most marking applications. Although it requires a higher initial investment than its alternatives, it provides a better return on investment. The satisfactory investment return is inseparable with the following benefits: In most cases, it’s the fastest marking solution. Looking at aluminum marking performances, it’s possible to create a high-contrast data matrix code in just 1.40 seconds. Laser marking is a traceability solution like no other. It offers near perfect readability rates, thanks to the high reliability of laser systems and to the high contrast of marked identifiers. It can also create marks that are truly permanent, capable of withstanding almost any surface treatment such as e-coating, heat treating. It can be used to create permanent marks on materials whose surface cannot be directly marked (like stainless steel) by creating a mark under the surface. Due to the high precision of laser marking, even very delicate graphics, 1-point fonts and very small geometries will become clearly discern. Meanwhile, marking with the laser ensures constant high-quality results. Laser marking is permanent and at the same time resistant to abrasion, heat and acids. Depending on the laser parameter settings, certain materials can also be marked without causing damages to the surface. Discover extra information at fiber laser marking machine.