Italiano

It is expected that the global industrial laser system market size will reach 32.2 billion US dollars by 2028, and the Asia Pacific region's investment share in laser technology will continue to rise

584
2023-08-10 18:02:44
Vedi traduzione

According to a latest overseas market research report, it is expected that the global industrial laser system market size will reach approximately 32.2 billion US dollars by 2028, with a compound annual growth rate of 8.3% from 2023 to 2028.

The future prospects of the global industrial laser system market are broad, with opportunities in numerous fields such as semiconductors and electronics, automobiles, aerospace and defense, as well as healthcare.

The main driving forces of this market include the continuous adoption of the Industrial Internet of Things, the increasing demand for material processing in various terminal industries, and the widespread application of various high-power laser products in production activities such as semiconductors, flat panel displays, lithium-ion batteries, LED for consumer electronics, and clean energy.

Industry analysts predict that fiber lasers will continue to be the largest product segment in the field of industrial laser systems during the forecast period.

Among numerous light source products, fiber lasers are highly favored for their excellent electro-optical conversion efficiency, excellent performance, minimal maintenance requirements, energy conservation and environmental protection, continuously expanding application scenarios, excellent beam quality, and higher stability.

In the future, the continuous pursuit of high efficiency, processing capability, and processing accuracy in industrial applications will drive fiber lasers towards higher brightness, higher power, and shorter pulses.

Equipped with corresponding intelligent and automation technologies, as well as unique processes and solutions, this mainstream industrial application laser will be applied in the power battery manufacturing, 3C, photovoltaic, 5G new infrastructure, rail transit, shipbuilding, aerospace, engineering machinery, and medical fields of the new energy vehicle industry, And many fields such as industrial processing (laser cutting, welding, marking, surface treatment, laser cleaning, laser cladding, additive manufacturing, etc.) have shone brightly, continuously contributing to the further transformation and upgrading of the manufacturing industry.

The application demand for fiber lasers is constantly penetrating into fields such as new energy, shipbuilding, rail transit, aerospace, 5G new infrastructure, engineering machinery, and industrial processing
In addition, due to the widespread use of lasers in semiconductor production and processing, precision micro processing fields such as semiconductors and electronics are expected to continue to be a significant niche application market.

On the one hand, the application of lasers in the semiconductor field is becoming increasingly widespread, including the manufacturing of semiconductor devices, semiconductor material processing, semiconductor testing, and other aspects.

Among them, the application of lasers in semiconductor device manufacturing is particularly prominent, which can be used for etching, photolithography, cleaning, annealing and other process steps.

In the processing of semiconductor materials, laser cutting, laser marking and other technologies have become mainstream, with advantages such as high precision, high efficiency, and non-contact. They are widely used in fields such as LED, solar cells, and semiconductor chips.

In semiconductor testing, laser has become an important detection tool, which can be used for material structure analysis, surface defect detection, crystal quality evaluation, and other aspects.

On the other hand, laser microfabrication is a rapidly developing field that is rapidly innovating the production processes of the entire industrial and scientific fields.

With the arrival of the era of high-end manufacturing, the application of precision and micro processing is a key direction of laser processing. Many industries such as microelectronics, 3C/5G, new materials, wearable electronic devices, medical equipment, aerospace, new energy vehicles, photovoltaic, OLED, and additive manufacturing, life sciences, scientific research, etc. have strong demand for laser precision processing.

From a regional perspective, in the next five years, due to the increasing investment share in the laser technology field in the Asia Pacific region, as well as the huge demand for industrial laser systems in various terminal industries such as metal processing, new energy, mechanical manufacturing, healthcare, and defense in the region, the Asia Pacific region will still become the largest market for industrial laser systems.

Source: Laser Manufacturing Network

Raccomandazioni correlate
  • 253 million US dollars! This Canadian medical fiber optic sensor manufacturer will be acquired

    Recently, Haemantics Corporation, which focuses on providing innovative medical solutions with proprietary optical technology, announced that the company has reached a final agreement. According to the agreement, Haemonics will acquire all outstanding shares of Canadian fiber optic sensor manufacturer OpSens for CAD 2.90 per share.This is an all cash transaction with a fully diluted equity value o...

    2023-10-18
    Vedi traduzione
  • What is field assisted additive manufacturing?

    Dr. Tan Chaolin from the Singapore Institute of Manufacturing Technology, in collaboration with China University of Petroleum, Shanghai Jiao Tong University, Princeton University, University of Malta, Huazhong University of Science and Technology (Professor Zhang Haiou), University of California, Irvine, Hunan University, and EPM Consulting, published an article titled "Review on Field Assisted Me...

    2024-07-29
    Vedi traduzione
  • Significant progress has been made in the manufacturing and measurement of EUV lithography light source collection mirrors

    Summary:To filter out infrared light from the driving light source in the extreme ultraviolet lithography (EUVL) light source system, a rectangular grating structure needs to be fabricated on the surface of the collection mirror. However, the collection mirror grating usually undergoes deformation during the manufacturing process, resulting in a decrease in filtering efficiency. The process errors...

    04-02
    Vedi traduzione
  • Laser Photonics cleaning technology simplifies the removal of biofilms in industrial environments

    Laser Photonics Corporation is a leading global industrial developer of CleanTech laser systems for laser cleaning and other material applications, highlighting a key application of its CleanTech laser system.Wayne Tupuola, CEO of Laser Photonics, commented, "Our CleanTech laser cleaning system provides an efficient and cost-effective method for removing biofilms from various materials and surface...

    2023-09-20
    Vedi traduzione
  • Ultra wideband pulse compression grating for single cycle Ava laser implemented by Shanghai Institute of Optics and Mechanics

    Recently, Shao Jianda, a researcher of Shanghai Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Jin Yunxia, a researcher team, and Li Chaoyang, a researcher of Zhangjiang Laboratory, have made breakthroughs in the field of ultra wideband pulse compression gratings.The research team has successfully developed a ultra 400 nm broadband gold grating for single cycle pulse com...

    2023-10-01
    Vedi traduzione