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Analysis of the Laser Equipment Market Size and Emerging Application Markets


12/17

2021

  Analysis of the Laser Equipment Market Size and Emerging Application Markets

  I. Structure of the Laser Equipment Industry Chain

  Laser cutting processing equipment should be regarded as a high‑precision, new product that boasts advanced technological capabilities and specialized expertise; it has become a type of core, critical technology equipment used to develop and strengthen strategic emerging industries and to modernize traditional industries. Laser equipment The industrial application scope is broad, and a well‑established and stable industrial development chain has now taken shape. The division of the laser industry’s industrial development chain reveals that it specifically encompasses the industrialization of upstream raw materials and components, including the production and processing of electronic and optical devices, automated equipment, motor control systems, pneumatic component manufacturing, as well as related control service platforms and application software design and development. Midstream focuses on the manufacturing of laser processing equipment, which is primarily used in downstream applications across industries such as automotive, steel, shipbuilding, aerospace, consumer electronics, advanced materials, semiconductor fabrication, mechanical engineering, medical aesthetics, and the electronics industry.

  II. Mayor/Market Size of the Laser Equipment Industry

  In 2017, the global laser processing equipment market was valued at US$31.37 billion, representing a year-on-year increase of 12%. In 2017, China’s laser equipment market recorded total sales exceeding 44.2 billion Korean won, with growth continuing to accelerate to 14.8%. From 2010 to 2017, the annual average growth rate of the laser equipment market in terms of market size and sales volume reached 21.8%.


 Laser equipment


  Analysis of Emerging Market Applications for Laser Equipment

   Laser equipment Processing technology is a new machining technique that utilizes directed energy for non‑contact processing, fundamentally different from traditional contact-based machining methods. It can be integrated with numerous other technologies to give rise to emerging technologies and industries, exerting a profound impact on many conventional manufacturing sectors. Thanks to the increasing stability and industrial-scale development of cutting‑edge technologies such as picosecond lasers and all‑femtosecond lasers, lasers will be used more extensively in precision manufacturing across a wide range of materials—including full‑screen displays, ceramics, metals, and alloy materials—supporting the growth of industries like consumer electronics, new energy vehicles, and high‑end manufacturing.

  Full‑screen panel machining

  The most direct impact of the overall display trend is the shift in smartphone display technologies. Consequently, packaging processes must become increasingly sophisticated to ensure that devices look visually appealing. This has eased the stringent requirements for contour cutting. At present, only laser equipment can enable small- and medium-sized flexible OLED panels based on LTPS technology to outperform LCD screens in terms of color gamut, contrast ratio, power efficiency, and bendability. The increasing adoption of flexible OLED panels is driving the next wave of smartphone design—building upon current device aesthetics while offering the best possible solutions for compatibility with front-facing cameras, receivers, sensors, and other functional components, all while further enhancing low-power performance. Laser equipment The development of.

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