简体中文

Top management changes at Laser Photonics Corp., a US laser equipment manufacturer

597
2024-11-20 14:05:47
查看翻译

Recently, Laser Photonics Corp. (LPC), a Nasdaq listed equipment developer, announced that it has appointed John T. Armstrong as its new Executive Vice President.

 



Before assuming his position at LPC, Armstrong served as Vice President of Astronics Test Systems, a subsidiary of Astronics Corporation, a global leader in advanced technology and products in critical mission areas such as aerospace and defense. Earlier, he served as a senior manager at Boeing, providing leadership and human resources support to over 10000 employees and leading the department to achieve over $4.5 billion in revenue. In the early stages of his career, he served as a senior expert in human resources management, providing comprehensive human resources support to three institutions and four specialized departments.

Armstrong holds a Master of Business Administration and a Master of Arts in Management Systems from Webster University. He holds a Bachelor's degree in Mechanical Engineering from Villanova University. Armstrong has over 30 years of leadership experience in B2B strategic planning, operations, and human resources.

On November 14th, LPC released its third quarter performance, with the following financial data:
Revenue: 800000 US dollars, compared to 1.3 million US dollars in the same period last year;
Gross profit: 600000 US dollars, compared to 1 million US dollars in the same period last year;
Operating loss: 1.7 million US dollars, compared to 900000 US dollars in the same period last year;
Net loss: increased from $900000 to $1.6 million;

LPC believes that the decline in the company's performance in the third quarter is mainly due to its increased investment in human resources, sales, and administrative functions, which has affected the company's performance in the short term. But in the long run, these strategic measures are crucial for LPC's future growth.

In terms of business, LPC has received multiple CleanTech customer orders this year, including Acuren, a leader in non-destructive testing services, a polycrystalline silicon manufacturer in the semiconductor and solar fields, and a global enterprise in the oil and gas fields. In addition, LPC has also received a DefenseTech order from the US Navy, and its Pearl Harbor Naval Shipyard and intermediate maintenance facility have integrated LPC's DefenseTech laser system for removing corrosion from naval vessels.

At the strategic layout level, LPC will expand its cooperation with Brokk to its Australian subsidiary this year, introducing laser cleaning and laser cutting technology into mining, tunneling, construction, metal processing, and military ecosystems in Australia, New Zealand, and the entire Asia Pacific region.

It is worth mentioning that LPC recently announced that the company has signed a final agreement to acquire Control Micro Systems, Inc. (hereinafter referred to as CMS), which will be completed shortly after the third quarter. Although LPC's market value has shrunk by 70% due to previous short selling allegations, it still resolutely chose to buy the bankrupt company at the bottom, seeing it as a key opportunity to promote LPC's transformation.

CMS focuses on customizing precision laser systems, including laser drilling for controlled release drugs and anti-counterfeiting solutions. This acquisition will enable LPC to enter the large and rapidly growing healthcare and pharmaceutical industries, especially in the fields of controlled release drug delivery and anti-counterfeiting pills. This is a high threshold and anti cyclical industry, and it will also bring synergies to LPC's industrial market. In addition, LPC plans to fully integrate the existing CMS team, including engineers and customer support specialists, to ensure a smooth transition for CMS employees and guarantee the continuity of service and support for existing customers during the transition period.

Recently, LPC also announced the construction of a 50000 square foot factory and is fully committed to promoting the research and development of new additive manufacturing technologies and systems, actively responding to the urgent needs of the semiconductor industry, and accelerating the development of laser shielding anti drone systems (LSAD).

LPC has released a concept video for the prototype of the Laser Shield Anti Drone System (LSAD). LSAD is a solution being developed to prevent unauthorized drone activity, and this technology will play a critical role in the defense market.

Source: OFweek

相关推荐
  • Shanghai Institute of Optics and Mechanics proposes a new solution for quartz glass as a visible light laser material

    Recently, Hu Lili, a research group of the Advanced Laser and Optoelectronic Functional Materials Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, proposed a new scheme based on rare earth ions Dy3+doped quartz glass as a yellow laser material, and the relevant research results were published in the Journal of the American Ceramic Society as "Effect o...

    2024-06-05
    查看翻译
  • New method doubles and accelerates thermal tuning of optical chips, supporting two current and voltage regulation methods

    Silicon based quantum chip technology is one of the hot research directions in the field of integrated photonics. Thanks to compatibility with CMOS technology and silicon material characteristics, silicon-based integrated optical chips and devices have many advantages such as low cost, small size, low power consumption, and high integration, providing an ideal platform for large-scale optical comp...

    2024-04-02
    查看翻译
  • Overview of Ultra Short Pulse Laser Processing of Wide Bandgap Semiconductor Materials

    Professor Zhang Peilei's team from Shanghai University of Engineering and Technology, in collaboration with the research team from Warwick University and Autuch (Shanghai) Laser Technology Co., Ltd., published a review paper titled "A review of ultra shot pulse laser micromachining of wide bandgap semiconductor materials: SiC and GaN" in the international journal Materials Science in Semiconductor...

    2024-07-30
    查看翻译
  • Understanding the "single-mode" and "multi-mode" in cleaning lasers in one article

    In industrial production, cleaning is a crucial step. Traditional cleaning methods, such as mechanical cleaning and chemical cleaning, although can meet production needs to a certain extent, often have problems such as low flexibility and environmental pollution. With the advancement of technology, laser cleaning technology has emerged as a new favorite in the cleaning field due to its high effici...

    05-14
    查看翻译
  • Scientists at Peking University invent ultra-thin optical crystals for next-generation laser technology

    BEIJING, Dec. 19 (Xinhua) -- A team of Chinese researchers used a novel theory to invent a new type of ultrathin optical crystal with high energy efficiency, laying the foundation for next-generation laser technology.This photo taken on Dec. 15, 2023 shows a Twist Boron Nitride (TBN) crystal placed on a piece of fused silica in Peking University, Beijing, capital of China. A team of Chinese rese...

    2023-12-20
    查看翻译