10W-15W uv laser

High Power UV Laser for Edge Etching of Thin Film Solar Cells

With the rise of clean energy and the enhancement of environmental awareness, thin-film solar cells, as a high-efficiency energy conversion device, are gradually replacing traditional silicon-based solar cells. However, to achieve high solar cell conversion efficiency, it is critical to ensure clear edges and maximize light absorption in thin-film solar cells. In this regard, the unique advantages of high-power ultraviolet lasers are increasingly attracting the attention of the industry.

  • 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

High Power UV Laser for Edge Etching of Thin Film Solar Cells

Gaofeng Technology: The Superior Role of High Power UV Lasers in Edge Etching of Thin Film Solar Cells

Edge Etching of Thin Film Solar Cells

With the rise of clean energy and the enhancement of environmental awareness, thin-film solar cells, as a high-efficiency energy conversion device, are gradually replacing traditional silicon-based solar cells. However, to achieve high solar cell conversion efficiency, it is critical to ensure clear edges and maximize light absorption in thin-film solar cells. In this regard, the unique advantages of high-power ultraviolet lasers are increasingly attracting the attention of the industry.

 

Traditional edge etching technology often faces many problems such as low precision, high energy consumption, and long process cycle. As an innovative cutting tool, high-power ultraviolet lasers have attracted much attention for their excellent performance in edge etching of thin-film solar cells.

 

First of all, high-power UV lasers have extremely high precision cutting capabilities. Its unique short pulse width and high energy density can precisely control the edge cutting process of thin-film solar cells. By using this advanced laser tool, operators can easily achieve highly detailed edge etching, ensuring the uniformity and flatness of the film surface, thereby improving the overall light absorption efficiency.

 

Second, high-power UV lasers have a high-efficiency working mode. Its fast energy delivery and cutting speed allow the edge etching process of thin-film solar cells to be highly automated and run efficiently. Compared with traditional methods, high-power ultraviolet lasers can greatly shorten the production cycle, improve production efficiency, and make positive contributions to the sustainable development of the energy industry.

 

As an important cornerstone of today's high-end manufacturing industry, laser technology continues to promote technological innovation and progress. Whether it is in the fields of electronic manufacturing, medical equipment or energy conservation and environmental protection, high-power ultraviolet lasers have broad application prospects. Especially in the field of thin-film solar cell edge etching, its revolutionary breakthrough has brought new possibilities for the development of this industry.

 

In summary, high-power UV lasers have shown extraordinary capability and potential in edge etching of thin-film solar cells. Through its high-precision and high-efficiency features, it provides a new solution for the transformation and upgrading of the solar industry. Therefore, it is believed that high-power ultraviolet lasers will become an indispensable key tool in the production of thin-film solar cells in the future.

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