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Disc-Excimer Hybrid Pump Laser Marking Machine for Microstructuring on Quartz
Disc-Excimer Hybrid Pump Laser Marking Machine for Microstructuring on Quartz
In the realm of precision laser processing, the combination of disc and excimer technologies in a Laser marking machine offers unique advantages for microstructuring applications, particularly on materials like quartz. This hybrid approach leverages the strengths of both disc and excimer lasers to achieve high precision and quality in laser marking.
The disc laser, known for its high power and efficiency, provides a stable and continuous wave output. This characteristic is beneficial for deep engraving applications where high energy is required to make significant material alterations. The high power density of the disc laser allows for the removal of substantial material, creating deep, clear marks on the surface of quartz and other hard materials.
On the other hand, the excimer laser, with its ultra-short pulse duration and high peak power, is adept at ablating material without causing thermal damage to the surrounding area. This "cold" ablation is crucial when working with heat-sensitive materials like quartz, where thermal stress can lead to cracking or other forms of damage. The 193 nm wavelength of the excimer laser is highly effective for engraving and microstructuring on quartz due to the material's high absorption at this wavelength.
The hybrid system combines these two technologies to offer a Laser marking machine capable of high-speed microstructuring on quartz. The disc laser can be used for initial material removal, while the excimer laser refines the process, ensuring precision and minimizing heat-affected zones. This synergy allows for the creation of intricate microstructures on quartz surfaces with high accuracy and minimal damage.
In practical applications, the disc-excimer hybrid Laser marking machine can be employed for creating microchannels, micromirror arrays, and other micro-optical components on quartz substrates. The system's ability to control the depth and resolution of the engraving process makes it suitable for high-precision applications in the fields of photonics, microelectronics, and biotechnology.
To summarize, the disc-excimer hybrid pump Laser marking machine stands out for its ability to perform microstructuring on quartz and similar materials with a high degree of precision and quality. The combination of high power from the disc laser and the cold ablation capabilities of the excimer laser results in a powerful tool for advanced laser processing applications.
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