Nederlands

Laser Photonics Corporation receives MF-1020 order

115
2025-02-27 10:10:32
Bekijk vertaling

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

Gerelateerde aanbevelingen
  • Tsinghua University makes progress in the field of pre sensing optical computing

    In the era of the Internet of Things, visual image sensors, as key devices in the intelligent society, are embedded in various devices such as mobile communication terminals, smart wearable devices, automobiles, and industrial machines. With the continuous expansion of applications, higher requirements have been put forward for the system power consumption, response speed, safety performance, and ...

    2024-08-05
    Bekijk vertaling
  • Medium-long wavelength infrared quantum cascade laser of MOCVD on silicon

    Us researchers report 8.1 μm wavelength quantum cascade laser (QCL) grown on silicon (Si) by MOCVD [S. Xu et al., Applications. Physics Letters, v123, p031110, 2023]. "There are no previous reports of QCL growth on silicon substrates by metal-organic chemical vapor deposition (MOCVD)," commented the team from the University of Wisconsin-Madison, the University of Illinois at Urbana-Champaign an...

    2023-08-04
    Bekijk vertaling
  • Han's Laser New Product Debuts at 2025 Munich Shanghai Light Expo

    New product launch of "Blue Hurricane" red blue integrated laser1. Ultra high power: The "red blue integrated" laser, with optimized optical path design and heat dissipation system, can stably output power exceeding industry standards, meeting high demand application scenarios.2. Dual high brightness: Integrating advanced wavelength modulation technology and materials science, both red and blue l...

    03-07
    Bekijk vertaling
  • Researchers have demonstrated a breakthrough boson sampling method using ultracold atoms in optical lattices

    JILA researcher, National Institute of Standards and Technology (NIST) physicist, physics professor Adam Kaufman and his team at the University of Colorado Boulder, as well as NIST collaborators, demonstrated a new method of cross laser beam lattice sampling using ultracold atoms for boson sampling in two-dimensional optics. This study, recently published in the journal Nature, marks a significant...

    2024-05-10
    Bekijk vertaling
  • Two photon absorption quantum mechanism breaks through the resolution and efficiency limits of optical nanoprinting

    Recently, a research team from the School of Physics and Optoelectronic Engineering at Jinan University has elucidated for the first time the time-dependent quantum mechanism of two-photon absorption and proposed a two-photon absorption (fpTPA) optical nanoprinting technology based on few photon irradiation, successfully breaking through the bottleneck of traditional two-photon printing technology...

    03-06
    Bekijk vertaling