10W-15W uv laser

Why does glass marking need a UV laser instead of a fiber laser?

 
 
 
 
 
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Why does glass marking need a UV laser instead of a fiber laser? Ollie! RFH nanosecond solid-state UV laser short pulse marking glass What makes the advantages of RFH UV lasers in glass processing
  • Laser Wavelength:

    354.7nm
  • Average Output Power :

    10W/12W/15W @40kHz
  • Pulse Width:

    <20ns @40kHz
  • Pulse Repetition Rate :

    10-200kHz
  • Spatial Mode:

    TEM00
  • Beam Quality (㎡) :

    <1.2
  • Beam Diameter:

    0.8±0.1mm Measured at window
  • Beam Full Divergence Angle :

    <2mrad
  • Beam Circularity:

    >90%
  • Pulse-To-Pulse Stability:

    <3% RMS/@30kHz
  • Average Power Stability :

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

    <25μrad/℃
  • Polarization Ratio:

    >100:1
  • Polarization Orientation:

    Horizontal
  • Operating Temp. & RH:

    10℃ to 35℃ | <80%
  • Storage Temp. & RH:

    10℃ to 35℃ | <90 %
  • Electricity Requirement :

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

    <800W
  • Warranty :

    18months
  • Product Detail
  • Video

uv laser

Why does glass marking need a UV laser instead of a fiber laser?

 

Website: http://www.rfhtech.com

Whatsapp(Wechat): 18928466502

Email: export06@rfhlasertech.com

 

Why does glass marking need a UV laser instead of a fiber laser?

Ollie! RFH nanosecond solid-state UV laser short pulse marking glass

What makes the advantages of RFH UV lasers in glass processing

 

Glass is one of the most important materials in modern society and plays an important role in all aspects of human life. Nowadays, glass manufacturing has begun to focus on aesthetics in addition to its use. Many manufacturers choose to mark the surface for decoration when producing glass doors, glass windows and glass handicrafts.

 

RFH UV lasers are the result of decades of efforts by RFH R&D institutions, and are currently more suitable for glass marking than fiber lasers. UV lasers enable high-quality, high-speed processing of glass surfaces using UV light. Many glass manufacturers came to RFH headquarters to visit after learning about RFH's UV lasers.

 

During the visit, RFH demonstrated the use of UV lasers for various manufacturers. Ultraviolet lasers can help emit a precisely focused spot, the processing heat-affected zone is extremely small, no thermal effect will cause damage to the surrounding glass material, and the processing quality is very high.

 

In addition to the above advantages, in the process of RFH UV laser processing, only a simple operation is required to allow the laser to quickly engrave the desired pattern inside or on the surface of the glass, which minimizes the processing time and saves costs. The use of water cooling to cool down makes the use of RFH UV lasers more advanced and more powerful, which is a careful thought hidden in the research and development of RFH.

 

    Short pulses, high beam quality, and high peak power make RFH UV lasers advantageous in the field of glass processing, and more manufacturers are willing to trust RFH. Fiber lasers are gradually withdrawing from glass laser technology and moving to more familiar fields.

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