繁体中文

Coherent develops borderless display cutting technology

26
2025-11-06 10:11:13
查看翻譯

Coherent utilizes deep ultraviolet laser technology to study and improve the cutting process of displays, but the production of such displays is still very complex.

Coherent, the host of the Mid-Europe Chapter Conference of the Society of Information Display (SID-MEC Conference) in Germany, has offered a look at its plans for improved display cutting. As a provider of laser solutions, the Göttingen-based company is not only specialized in annealing as a pre-stage in display production, but also develops tools for the subsequent cutting of displays.

Coherent utilizes lasers and aims to further optimize the process so displays without bezels can eventually be cut. In recent years, these display borders have become thinner as some manufacturers folded the display edges to at least give the appearance of a bezel-less screen. However, the material still breaks at the edge, which is then hidden by a bezel. This also helps protect the display, as these edges are where display layers can potentially start to separate.

 


Laser annealing as a preliminary step in display production (Image source: Coherent)


The image clearly shows how the cut of the glass looks from the side. With a UV laser at a wavelength of 355 nm, the result is visibly uneven. At the separation edge, the display layers are not cleanly divided and a frame around the display is necessary. With 345 nm, the result improves somewhat, but it is still not sufficient for a bezel-free display.

 


Cross-section from the side with the result of three different wavelengths (Image source: Andreas Sebayang/Notebookcheck)


This can be achieved with so-called deep-UV lasers, as shown in the third image. With a wavelength of 266 nm, the laser can separate the display so precisely that the layers at the edge are barely damaged. This results in a borderless display. The material loss at the boundary is expected to be less than one pixel. According to Coherent, there already is a gap of 50 to 60 micrometers between pixels, which is where the cut can be made. Of course, the cut edge still needs to be protected.

However, display production with deep UV lasers has some drawbacks. It is not yet ready for mass production. The available 10W lasers do not allow fast cutting of displays, which would make production too expensive. Coherent expects lasers with 20W, which should make mass production possible.

Coherent has not yet said when that will happen. In any case, the equipment will have to be shipped from Göttingen to the display manufacturers and integrated into their production lines.

Source: notebookcheck

相關推薦
  • New laser technology unlocks deuterium release in aluminum layers

    In a recent study, quadrupole mass spectrometry was used to measure the number of deuterium atoms in the aluminum layer.A recent study led by the National Institute of Laser, Plasma, and Radiation Physics and Sasa Alexandra Yehia Alexe from the University of Bucharest explored the details of laser induced ablation and laser induced desorption techniques using a 1053 nm laser source. The study was ...

    2023-11-25
    查看翻譯
  • Petrobras will use laser beams to measure wind speed and direction

    Petrobras announced last week that it plans to use laser beams to measure wind speed and direction. The idea is that these data will be used to improve the operation of the wind turbines maintained by this state-owned company in North Rio Grande do.The total investment of the 2.0 version of this device reaches R $11.3 million, known as the offshore wind assessment remote buoy.This technology can a...

    2023-10-24
    查看翻譯
  • The Trends and Challenges of the Metal 3D Printing Industry in 2025

    In the past decade, metal 3D printing technology has experienced rapid development, from the initial production of orthopedic implants to the manufacturing of rocket boosters. This technology has become an indispensable part of multiple key industries. With the advancement of technology and the expansion of the market, we are witnessing the revival of electron beam melting (EBM) technology and the...

    01-21
    查看翻譯
  • OPO laser testing optical components

    Optical parametric oscillator laser tests fibers and components to characterize the spectral response of optical components, thereby providing a competitive advantage in the optical industry.OPO lasers have long been used in complex testing and measurement applications, such as mass spectrometry, photoacoustic imaging, and spectroscopy. Now, these "tunable" pulse lasers are being used to facilitat...

    2024-02-20
    查看翻譯
  • Astera Labs to acquire German startup aiXscale Photonics

    Astera Labs, a Silicon Valley company specializing in high-speed interconnects for rack-level AI infrastructure, has agreed to acquire German startup aiXscale Photonics.Founded by Jeremy Witzens and Florian Merget as a spin-off from the Institute of Integrated Photonics at RWTH Aachen University, aiXscale has developed proprietary wafer-scale precision glass molding technology.The firm’s ultra-hig...

    4 天前
    查看翻譯