Deutsch

Laser Photonics Corporation receives MF-1020 order

523
2025-02-27 10:10:32
Übersetzung anzeigen

Recently, Laser Photonics Corporation (LPC) announced that it has partnered with Foon Technologies to receive its second order for the DefenseTech MRL (MF-1020) handheld cleaning system, which was facilitated by a distributor.

The DTMF-1020 air-cooled handheld pulse laser cleaning equipment adopts dual axis technology, simplifying the maintenance process. The system will be used by the Navy Command that ordered the first set of equipment.

LPC Executive Vice President John Armstrong stated that the second order fully demonstrates the reliability and effectiveness of our technology. The headquarters requires a powerful and reliable laser system, and we are proud to meet their needs. Our laser system is fundamentally changing the maintenance process of the navy, providing cleaner, safer, and more efficient solutions.

This order highlights the success of LPC and Fonon Technologies in providing high-quality laser solutions and consolidates their growing reputation in the defense industry. LPC's DefenseTech equipment can effectively remove rust, coatings, and residues without damaging the underlying surface, ensuring that the equipment is always available and extending its service life. These environmental solutions do not require the use of chemicals and grinding media, greatly reducing secondary waste and operator health risks.

Source: OFweek

Ähnliche Empfehlungen
  • Duke University: Laser imaging holds promise for early detection of risky artworks

    Compared to Impressionist paintings taken 50 years ago, upon closer inspection of Impressionist paintings in museums, you may notice some strange things: some are losing their bright yellow hue.Taking the dramatic sunset in Edward Munch's masterpiece "The Scream" as an example. The once bright orange yellow parts of the sky have faded to off white.Similarly, in his painting "The Joy of Life", Henr...

    2024-05-14
    Übersetzung anzeigen
  • New insights into the interaction between femtosecond laser and living tissue

    The N-linear optical microscope has completely changed our ability to observe and understand complex biological processes. However, light can also harm organisms. However, little is known about the mechanisms behind the irreversible disturbances of strong light on cellular processes.To address this gap, the research teams of Hanieh Fattahi and Daniel Wehner from the Max Planck Institute for Photos...

    2024-06-07
    Übersetzung anzeigen
  • MKS Instruments announces full year 2024 financial report

    Recently, MKS Instruments released its Q4 and full year financial results for 2024. According to the report, MKS's revenue for the fourth quarter of 2024 reached $935 million, a year-on-year increase of 4.7%, with a GAAP net income of $90 million; In 2024, the annual revenue was nearly 3.6 billion US dollars, a year-on-year decrease of 0.9%. GAAP net revenue was 190 million US dollars, turning los...

    02-20
    Übersetzung anzeigen
  • Allocate 10 billion US dollars! New York State to Build NA Extreme UV Lithography Center

    On December 11th local time, New York State announced a partnership with companies such as IBM, Micron, Applied Materials, and Tokyo Electronics to jointly invest $10 billion to expand the Albany NanoTech Complex in New York State, ultimately transforming it into a high numerical aperture extreme ultraviolet (NA EUV) lithography center to support the development of the world's most complex and pow...

    2023-12-15
    Übersetzung anzeigen
  • Researchers use laser doping to enhance the oxidation of IBC solar cells

    Researchers from the International Solar Research Center at Konstanz and Delft University of Technology have discovered a method to pattern the back end of a cross finger rear contact battery, improving its efficiency by making certain parts of the solar cell thicker.Researchers have developed a new technology that enhances oxidation in selected areas by patterning the back or back of IBC solar ce...

    2024-02-20
    Übersetzung anzeigen