Laser Photonics Corporation (LPC) – under the ticker symbol LASE on NASDAQ – is all set to dazzle at FABTECH 2024. This renowned global industrial developer of laser systems has consistently pushed the boundaries in laser cleaning and other material processing applications. With the event scheduled from October 15 to 17 at Orlando’s Orange County Convention Center, this is an opportunity for LPC to showcase its latest innovations in the world of laser technology.
Florida’s thriving manufacturing industry has cemented its place as the 10th largest state for manufacturing employment, casting FABTECH 2024 in a perfect light. The event promises not just a local allure but a global draw, with attendees expected from various corners of the world. This eclectic mix of participants ensures that exhibitors like LPC gain exposure to a broad and diverse audience, all hungry for the latest advancements.
CEO of Laser Photonics, Wayne Tupuola, expressed eagerness about the upcoming event, highlighting the value of their cutting-edge laser technologies. In an era where staying ahead requires embracing innovation, FABTECH provides the perfect stage to demonstrate and discover groundbreaking solutions that can amplify productivity and efficiency in manufacturing operations.
The sheer scale of FABTECH, spanning over 800,000 square feet of exhibits, consolidates it as a premier event in the metalworking industry. An assembly of the latest equipment for metal forming, fabricating, welding, and finishing, FABTECH offers an unrivaled opportunity for industry leaders to connect, seek inspiration, and delve into transformative technologies shaping the manufacturing landscape.
LPC’s presence at FABTECH will spotlight its industrial-grade semi-automated systems designed for applications such as roughening, conditioning, and finishing. The spotlight will be on the CleanTech Robotic Cell (CTIR-6040) and the standalone CleanTech MegaCenter (CTIR-5040), both equipped with IoT capabilities and Generation 4 compact scan heads. Additionally, LPC will showcase the MarkStar 20-MSH-Pro marking solution, accentuating their commitment to innovation and technological prowess.
What: |
FABTECH 2024 |
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When: |
October 15 – 17, 2024 |
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Where: |
Orange County Convention Center |
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Booth: |
#W5347 |
CleanTech Laser Blasting Technology
Laser Photonics’ CleanTech Laser Blasting products offer industry professionals eco-friendly, cost-effective, and time-efficient systems for industrial cleaning applications.
The Evolution of Laser Technology in Industrial Applications
Revolutionizing Traditional Methods
Laser Photonics Corporation introduces a cutting-edge technology that goes beyond the conventional norms of rust removal, paint removal, and surface preparation. The innovation serves as a game-changer, providing an alternative to outdated techniques such as sandblasting, dry ice blasting, and other abrasive methods.
A Glimpse into Laser Photonics Corporation
Laser Photonics stands out as a pioneering entity in the realm of industrial laser technologies. The corporation functions as a comprehensive manufacturer and R&D Center of Excellence, spearheading advancements in laser systems. With a mission to disrupt the longstanding $46 billion sand and abrasives blasting markets, Laser Photonics focuses on critical industrial applications like surface cleaning, rust removal, corrosion control, and de-painting.
The company’s innovative laser blasting technologies not only provide superior results but also tackle prevalent issues related to health, safety, environmental concerns, and regulatory compliance associated with traditional methods. This strategic approach has positioned Laser Photonics as an industry front-runner renowned for its commitment to quality, technological prowess, and product innovation.
Today, leading global manufacturers in diverse sectors such as aerospace, automotive, defense, energy, industrial, maritime, space exploration, and shipbuilding leverage Laser Photonics’ advanced systems, marking a significant shift towards efficiency and sustainability in industrial operations.