10W-15W uv laser

355nm nanosecond solid state lasers marking plastic

In the world of laser technology, the precision and versatility of 355nm nanosecond solid state lasers have proven to be invaluable. These remarkable devices have revolutionized the art of marking plastic, offering an unparalleled level of intricacy and permanence.

 

  • Laser Wavelength:

    354.7nm
  • Average Output Power :

    3W-10W @30kHz
  • Pulse Width:

    <12ns @ 30kHz
  • Pulse Repetition Rate :

    10-200kHz
  • Beam Quality (㎡) :

    <1.2
  • Beam Diameter :

    0.8±0.2mm Measured at window
  • Beam Full Divergence Angle :

    <2mrad
  • Beam Circularity :

    >90%
  • Pulse-to-Pulse Stability :

    <2% RMS/@30kHz
  • Average Power Stability :

    <5% RMS/8hr
  • Beam-Pointing Drift :

    <30μrad/℃
  • Polarization Ratio :

    >100:1
  • Polarization Orientation :

    Horizontal
  • Operating Temp. & RH :

    10℃ to 30℃ | <80%
  • Storage Temp. & RH) :

    -20℃ to 65℃ | <90 %
  • Electricity Requirement :

    100-240VAC |50/60Hz | Single phase
  • Power Consumption :

    <500W
  • Warranty :

    18months
  • Product Detail
  • Video

uv laser

 355nm nanosecond solid state lasers marking plastic

In the world of laser technology, the precision and versatility of 355nm nanosecond solid state lasers have proven to be invaluable. These remarkable devices have revolutionized the art of marking plastic, offering an unparalleled level of intricacy and permanence.

With their unique wavelength of 355nm, these lasers are perfectly suited for intricate marking on plastic surfaces. The concentrated beam of light emitted by these lasers enables precise control over the depth and clarity of the marking, resulting in sharp and visually captivating designs.

 

One of the key advantages of 355nm nanosecond solid state lasers is their ability to create permanent markings on plastic surfaces. The high energy pulses of the laser interact with the material, causing localized heating and subsequent surface modification. Through this process, the laser can create indelible markings that resist fading, scratching, or smudging, ensuring the longevity of the design.

Moreover, the application of these lasers in plastic marking is not limited to a specific industry or product. From automotive components to consumer electronics, the possibilities are endless. With their ability to deliver precise and consistent results, these lasers have become indispensable tools for manufacturers seeking to leave a lasting impression on their products.

 

The benefits of using 355nm nanosecond solid state lasers for plastic marking extend beyond permanence and versatility. The non-contact nature of laser marking eliminates the need for physical contact with the material, minimizing the risk of damage or distortion. Additionally, the high-precision beam ensures that intricate designs are executed with utmost accuracy, meeting even the most demanding quality standards.

 

In conclusion, the introduction of 355nm nanosecond solid state lasers has transformed the art of marking plastic. These lasers offer unmatched precision, permanence, and versatility, making them the ideal choice for manufacturers and artisans alike. With their ability to bring intricate designs to life, they have become an essential tool in the ever-evolving world of plastic marking.

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