Polski

US blue laser company Nuburu plans to raise nearly $65 million in funding

731
2024-10-11 14:22:07
Zobacz tłumaczenie

Recently, Nuburu, a high-power industrial blue light laser company in the United States, announced that the company has agreed to a new financing arrangement worth up to $65 million.

This agreement was reached between Nuburu and the Delaware hedge fund Liquous LP, which claims to provide a "customized liquidity solution". According to the terms of the agreement, Nuburu will first receive an initial funding of $3 million from Liquous, followed by weekly installments of $1.25 million, for a total of $10 million.

 



Nuburu's fiber optic transmission "BL-F" series industrial blue light lasers can provide up to 1 kW of output power and are said to be able to produce deeper welds at high speed on copper or aluminum foil and busbars, with thicknesses ranging from a few micrometers to one millimeter. (Image source: Nuburu)

In addition, the agreement also includes a unique "equity credit line" arrangement that provides Nuburu with an additional $50 million in funding, accompanied by pre financed warrants.

Provide financial support to accelerate the commercialization process
In the past year, facing the dilemma of funding shortage, Nuburu has been actively seeking financing channels. In November 2023, the company successfully obtained a bridge loan of $5.5 million. In April of this year, another $3 million was raised through a combination of strategic investments and customer purchase orders.

Nuburu's 2023 annual report shows that its sales revenue is only over $2 million, while its operating loss is as high as nearly $22 million. The quarterly report as of June 30th this year showed that the company's total cash and equivalents were only slightly over $100000.

The financing of Liquous is seen as a "critical moment" for Nuburu, providing the company with a predictable funding channel to accelerate its commercialization process.

Nuburu's CEO Brian Nali (who took over from co-founder Mark Zedick last year) stated in a statement that this transaction is an "important step forward".
He emphasized that this financing not only reflects the company's commitment to strengthening its balance sheet and financial condition, but also demonstrates Liquous' confidence in Nuburu's breakthrough technology and its ability to change key industries. At the same time, he also pointed out that the terms of this financing are favorable and the dilution is limited, which proves the mutual recognition of the company's long-term potential by both parties.

Significant technological advantages and continuously increasing market share
Liquous stated that the agreement reached by both parties has alleviated the issue of stock dilution through pre financing warrants, which will be executed at the market price at the time of investment and allow for potential price appreciation and flexibility for each component.

Liquous also pointed out that Nuburu's recent contract with NASA, as well as its groundbreaking blue light laser technology and key customers including the US Air Force, indicate that the company's market share is constantly growing in industries that require precision and high-speed machining, such as space exploration and aerospace.

(Image source: Nuburu)


Nuburu was the first to develop a diode based blue industrial laser, which utilizes the characteristics of shorter wavelengths and has extremely high absorption rates for metals, especially non-ferrous metals such as copper. This technology is expected to have significant advantages in various industrial applications such as electric vehicle battery welding and additive manufacturing.

The blue light laser semiconductor market has enormous potential
According to a report released by market research firm Technavio, it is predicted that the global blue light laser semiconductor market will increase by $334.9 million by 2028, with a compound annual growth rate of 15.2% between 2023 and 2028.

In recent years, blue light laser semiconductors have been widely used in material processing equipment, 3D printers, and fiber optic communication networks. Lidar systems are also one of the important areas driving market growth, and blue laser diodes are used to create 3D maps due to their excellent brightness and high reliability. Meanwhile, in cameras, blue laser diodes are also widely used for ranging, target selection, and illumination.

At present, the blue light laser semiconductor market is still expanding. They are widely used in medical equipment, broadband communication systems in telecommunications industry data centers, and industrial processes such as precision cutting, welding, heat treatment, and cladding. At the same time, with the emergence of new fields such as autonomous vehicle and radar systems, the application prospects of blue laser diodes are broader.

However, to achieve key performance such as high output power, monochromaticity, coherence, and directionality, continuous technological innovation and breakthroughs are still needed. At present, companies such as Hamamatsu Optoelectronics are in a leading position in the market, but competition is becoming increasingly fierce, and other semiconductor equipment manufacturers are also actively investing in research and development and market expansion.

Source: Yangtze River Delta Laser Alliance

Powiązane rekomendacje
  • Data from the 2023/2024 fiscal year of Tongkuai Group shows a decline in sales and order volume

    German high-tech company TRUMPF has released data for the 2023/24 fiscal year: sales decreased by 3.6% to 5.2 billion euros, and orders decreased by 10.4% to 4.6 billion euros. The global number of employees has increased by 650, with a total of over 19000 employees, and the number of employees in Germany has increased by nearly 400.As of June 30, 2024, at the end of the 2023/24 fiscal year, the s...

    2024-10-21
    Zobacz tłumaczenie
  • The output power of high power femtosecond laser breaking through the key bottleneck of average power can reach the order of 100 watts

    High energy, high average power femtosecond laser due to the attosecond high order harmonic generation, precision processing and manufacturing, biomedical and national defense and other fields of extensive application needs, is the forefront of ultrafast super laser technology research in the past decade.Especially fiber laser due to stable and reliable operation characteristics, compact structure...

    2023-09-04
    Zobacz tłumaczenie
  • Application of Airborne Lidar Calibration Board in Various Fields

    With the rapid development of technology, airborne LiDAR technology has become one of the key technologies in modern surveying, remote sensing, navigation and other fields. As an important component of this technology, the airborne LiDAR calibration board plays a crucial role in ensuring the accuracy and stability of the radar system. This article will explore the application and importance of air...

    2024-04-08
    Zobacz tłumaczenie
  • The 2023 International Quantum Photonics Conference attracted over 600 attendees from 16 countries and regions

    On November 25th, Jinhua welcomed the 2023 International Quantum Photon Conference, which will lead the future of technology. This grand event is jointly hosted by the Chinese Society of Optical Engineering and the Jinhua Municipal Government, with joint support from the University of Science and Technology of China, Zhejiang Normal University, and the PhotoniX journal. The conference, with the th...

    2023-11-27
    Zobacz tłumaczenie
  • Shanghai Institute of Optics and Fine Mechanics has made progress in synchronously pumped ultrafast Raman fiber lasers

    Recently, the research team led by Zhou Jiaqi from the Aerospace Laser Technology and Systems Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in the study of synchronously pumped ultrafast Raman fiber lasers. The related achievements were published in Optics Express under the title "Revealing influence of timing jitter on ultra fast...

    06-07
    Zobacz tłumaczenie