简体中文

Received NASA contract! Breakthrough blue light laser technology leads the space power revolution

335
2024-05-08 15:25:50
查看翻译

On May 6th, NUBURU, a leading enterprise in high-power and high brightness industrial blue laser technology, announced that the company has been awarded a second phase contract worth $850000 by the National Aeronautics and Space Administration (NASA) to promote 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 the successful completion of the first phase of the Small Business Innovation Research (SBIR) project by NUBURU in August 2023.

NUBURU's blue power transmission technology has revolutionized the power transmission methods in extreme environments such as the Moon and Mars, achieving economic and practical power transmission by eliminating reliance on bulky copper or aluminum wires.

This technology not only supports dynamic power distribution for mobile roaming vehicles, temporary/permanent campsites, and remote habitats, but also achieves low size, weight, and power (SWaP) design through its unique blue light laser architecture, complemented by clear visibility assisted navigation, efficient direct diode technology, and advanced direct bandgap solar cell technology, ensuring extremely high power transmission efficiency.

Compared to the energy of other wavelengths, the energy of blue light can be concentrated on smaller spots, which means that blue laser can create finer details.

This technological solution is directly aligned with the mission objectives of NASA's Artemis program, which aims to permanently send humans back to the moon. NASA outlined this requirement in the Moon to Mars target of Lunar Infrastructure Goal 1.

In the first stage, NUBURU has fully demonstrated the scientific, technological, and commercial feasibility of its technology. In the second stage, the company plans to further expand the power, range, and performance of blue light laser power beam technology, demonstrating it within kilometers with a power of several hundred watts, and plans to use next-generation technology to expand the technology range to tens of kilometers on the lunar surface.

"The acquisition of this contract once again demonstrates the innovation and disruptive nature of NUBURU's blue light power transmission technology. We have the potential to completely change the power management challenges faced by NASA, other space operators, and numerous commercial enterprises. Our technology is not only applicable to space environments such as the Moon and Mars, but can also be widely applied in ground applications such as remote power solutions, disaster relief operations, and defense logistics," said Brian Knaley, CEO and CFO of NUBURU
He further added, "NUBURU's high brightness blue laser technology has broad application prospects in various fields such as industry, healthcare, national defense, electric vehicles, consumer electronics, aerospace, healthcare, etc. We look forward to bringing revolutionary changes to various industries through this technology."

NASA's SBIR program aims to provide funding support for innovative technologies with commercial potential, ultimately promoting their commercialization and deployment through three stages of research, development, and demonstration. The second phase contract awarded to NUBURU is a crucial step in the commercialization process of blue laser power beam technology.

Source: OFweek

相关推荐
  • Ultra fast laser nova PulseX Laser completes over 10 million yuan of financing

    PulseX Laser, a rising star in the field of ultrafast lasers, has recently completed a financing of over 10 million yuan, with this round of financing exclusively invested by Changlei Capital.As a representative of the forefront of technology today, ultrafast lasers play an important role in many industries. In the field of material processing, ultrafast lasers, with their ultra short pulse width ...

    2024-07-09
    查看翻译
  • Dehaha launches laser cutting integrated machine screw compressor

    The revolution in the laser cutting industry is in full swing. Like the laser cutting machine industry, China's air compressor industry has developed rapidly in the past 20 years and has undergone iterative progress in response to the huge demands of various industries. It has gradually achieved a process from imitation to independent innovation.Recently, DHH Compressor has launched its latest inn...

    2024-05-27
    查看翻译
  • Massachusetts University team achieves new breakthrough in photolithography chip

    Recently, a research team from the University of Massachusetts Amherst has pioneered a new technology that uses laser irradiation on concentric superlenses on chips to generate holograms, thereby achieving precise alignment of 3D semiconductor chips.This research result, published in the journal Nature Communications, is expected to not only reduce the production cost of 2D semiconductor chips, bu...

    2024-11-06
    查看翻译
  • Quantum droplets reveal a new field of macroscopic complexity

    Scientists have advanced this field by stabilizing exciton polaritons in semiconductor photonic gratings, achieving long-lived and optically configurable quantum fluids suitable for complex system simulations.Researchers from Leicester CNR Nanotec and the School of Physics at the University of Warsaw used a new generation of semiconductor photonic gratings to optically customize the composite of q...

    2024-03-28
    查看翻译
  • 20W High Power Fiber Optic Frequency Comb with 10 to 19 Power Outside Ring Frequency Stability

    High power optical frequency combs play a crucial role in nonlinear precision spectroscopy, extreme ultraviolet optical frequency comb generation, nuclear atomic clock research, and other fields. Fiber optic femtosecond lasers are the preferred solution for achieving high power optical frequency combs due to their simple structure, stable performance, and easy amplification. However, due to the un...

    2023-10-20
    查看翻译