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Новости

LaserPrecision Introduces Revolutionary High-Precision Cutting System

Jun 28, 2025 Dr. Sarah Chen Новости компании

The journey of laser technology in manufacturing began with simple cutting applications but has evolved into a sophisticated ecosystem of solutions addressing complex manufacturing challenges. Today's laser systems integrate advanced optics, precision motion control, and artificial intelligence to achieve micron-level precision.

With the introduction of our LP-5000 series, manufacturers can now achieve cutting tolerances below 10 microns even on traditionally difficult materials like high-strength composites and specialty alloys. This precision is critical for industries like aerospace, medical device manufacturing, and semiconductor production.


Environmental and Economic Advantages


Beyond the precision advantages, laser-based manufacturing brings significant environmental benefits. Traditional machining processes often require coolants and lubricants that create waste streams requiring special handling and disposal. Laser processing is typically a "dry" process that dramatically reduces or eliminates these environmental concerns.

After implementing laser-based manufacturing, the company reported a 78% reduction in production time, 92% decrease in material waste, and virtually eliminated quality defects. The fully automated quality verification system integrated into the laser cell ensures 100% inspection with no additional handling.

Conclusion


As we look toward the future of manufacturing, precision laser technology stands at the forefront of innovation. The ability to process almost any material with unprecedented accuracy while reducing
environmental impact makes laser systems a cornerstone of modern manufacturing. At LaserPrecision, we continue to push the boundaries of what's possible, developing next-generation systems
that will further transform how we make the products that shape our world.

НЕТ LaserPrecision Introduces Revolutio...

  • What is the typical focused spot diameter of nanosecond, picosecond and femtosecond laser equipment?

    Nanosecond: Generally, the light spot is 0.5-1mm.
    Picosecond: The focused spot is generally around 20μm.
    Femtosecond: Under the action of a laser beam with a high repetition rate of 100-200KHz and a very short pulse width of 10ps,
    the focused spot diameter is as small as 3μm.

  • What are the main applications of UV laser cutting machine?

    Nanosecond: Generally, the light spot is 0.5-1mm.
    Picosecond: The focused spot is generally around 20μm.
    Femtosecond: Under the action of a laser beam with a high repetition rate of 100-200KHz and a very short pulse width of 10ps,
    the focused spot diameter is as small as 3μm.

  • Precautions for laser cutting machines to process various metal materials?

    Nanosecond: Generally, the light spot is 0.5-1mm.
    Picosecond: The focused spot is generally around 20μm.
    Femtosecond: Under the action of a laser beam with a high repetition rate of 100-200KHz and a very short pulse width of 10ps,
    the focused spot diameter is as small as 3μm.

  • What should be paid attention to when laser cutting stainless steel?

    Nanosecond: Generally, the light spot is 0.5-1mm.
    Picosecond: The focused spot is generally around 20μm.
    Femtosecond: Under the action of a laser beam with a high repetition rate of 100-200KHz and a very short pulse width of 10ps,
    the focused spot diameter is as small as 3μm.

 

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