Español

NUBURU Announces Second Next Generation Blue Laser Space Technology Contract with NASA

197
2024-05-13 14:01:54
Ver traducción

NUBURU, the leading innovator of high-power and high brightness industrial blue laser technology, announced today that it has been awarded a second phase contract worth $850000 by the National Aeronautics and Space Administration (NASA) to advance blue laser power transmission technology as a unique solution that significantly reduces the size and weight of equipment required for lunar and Martian applications. The award of this contract is based on NUBURU's announcement in August 2023 of the successful implementation of the first phase of Small Business Innovation Research ("SBIR").

NUBURU's blue power launch technology is a revolutionary rethinking of the power grid for unique lunar and Martian environments, eliminating the need to transport heavy copper or aluminum wires that are economically and logistics impractical. The blue power transmission technology method can dynamically allocate power to mobile roaming vehicles, temporary or permanent sites, and even remote habitats. NUBURU's blue laser architecture enables low size, low weight, and low power consumption (SWaP) design, clear visibility for navigation, efficient direct diode technology, and advanced direct bandgap solar cell technology for high electrical efficiency. This technological solution is directly aligned with the mission objectives of NASA's Artemis program, which aims to permanently return humans to the moon.

In the initial phase of the project, NUBURU demonstrated the scientific, technological, and commercial feasibility of its technology. In the second phase of the plan, NUBURU's goal is to expand the power, range, and performance of blue laser power emission technology. The plan will demonstrate that the technology can provide hundreds of watts of power within a kilometer level range. In addition, NUBURU will adopt the next generation technology to improve its high brightness laser source, which can extend the technology range to tens of kilometers on the lunar surface.
"The second NASA contract demonstrates the innovation of our blue power launch technology, which has the potential to completely change the power management challenges faced by NASA, other space operators, and many commercial enterprises today," said Brian Knaley, CEO and CFO of the company. "Our upcoming innovation, supported by NUBURU's state-of-the-art blue laser technology, will significantly reduce the size and weight of necessary equipment to meet daily task requirements."

Mr. Kenali continued, "In addition to lunar applications, blue laser power launch also has ground applications, including remote power solutions, disaster relief, and controversial logistics for the Ministry of Defense. NUBURU's unique high brightness technology has more applications in the industrial, medical, and defense markets, which benefit from SBIR program funding as well as large markets such as electric vehicles, consumer electronics, aerospace, healthcare, defense, energy, and industrial applications."

NASA's SBIR program funds research, development, and demonstration of innovative technologies with successful commercialization potential. The SBIR program aims to bring these technologies to market through a three-stage process, ultimately achieving commercialization and deployment. The second phase of work will be an important step towards validating blue laser power emission technology on a scale crucial to commercial success.

Source: Laser Net

Recomendaciones relacionadas
  • Mazak will push economical laser cutting processing equipment to Europe

    Recently, Yamazaki Mazak, a well-known Japanese machine tool manufacturer, announced that it will unveil its economic laser processing star Optiplex 3015 Ez for the first time in the European market at the upcoming 2024 EuroBLECH exhibition. This carefully crafted laser processing machine not only combines high-quality processing capabilities with affordable prices, but also aims to open the doo...

    2024-09-25
    Ver traducción
  • The application of lasers in material processing has driven industrial progress in Santa Catalina state

    Laser material processing has been widely used in advanced industries, ranging from designing and producing lightweight, ultra wear-resistant parts and equipment with complex geometric shapes to repairing damaged or worn components through technologies such as 3D printing of deposited metal powders or deposits.Use laser pulses for surface treatment to prevent fatigue. But the impact of such techno...

    2023-09-26
    Ver traducción
  • Ultra fast laser tracking the "ballistic" motion of electrons in graphene

    Figure 1. The setup of Hui Zhao and his team at the University of Kansas Ultra Fast Laser Laboratory.A team of researchers from the University of Kansas's ultrafast laser laboratory recently managed to capture real-time ballistic transmission of electrons in graphene, which could lead to faster, more powerful, and more energy-efficient electronic devices in the future.The motion of electrons is of...

    2024-01-09
    Ver traducción
  • Measurement of Fine Structure and Spin Interaction of Quantum Materials through TriVista High Resolution Spectral Measurement System

    backgroundThe Jörg Debus team from the Technical University of Dortmund in Germany is dedicated to researching optical quantum information processing and quantum sensing in materials with potential applications. The team mainly studies the fine structure of materials under light fields, such as quantum dots, quantum effects of two-dimensional materials, semiconductor defects in diamonds, and ...

    2024-03-11
    Ver traducción
  • The rare decay of the Higgs boson may point to physics beyond the standard model

    Particle physicists have detected for the first time a new decay of the Higgs boson, revealing subtle differences predicted by the standard model and potentially pointing to new physics beyond it. The research results are published in the journal Physical Review Letters.The theoretically predicted Higgs boson since the 1960s was finally discovered in the European CERN laboratory in 2012. As a quan...

    2024-01-26
    Ver traducción