Polski

Laserline completes 70% equity acquisition of WBC Photonics

173
2024-09-20 17:29:21
Zobacz tłumaczenie

Recently, Laserline, a leading semiconductor laser manufacturer in Germany, announced that it has completed the acquisition of a 70% stake in WBC Photonics, a Boston based laser technology expert, marking a significant strategic expansion for Laserline.

 



Through this transaction, Laserline not only expands its product portfolio to include blue laser systems with excellent beam quality (better than 4 mm mrad), but also establishes its position as a comprehensive service provider in the diode laser market in the blue wavelength field, covering a comprehensive product line from high-precision focusing systems to multi kilowatt high-power applications.

WBC Photonics, This enterprise, created by the management through the acquisition of TeraBiode, a subsidiary of former pine, focuses on producing high-performance diode lasers in the near-infrared (NIR) and blue wavelength ranges. The high beam quality of its laser system benefits from advanced emitter fundamental wavelength beam synthesis technology. This acquisition has opened the door for Laserline to new target markets, particularly in application areas such as additive manufacturing, welding, and cutting that heavily rely on high focusing performance.

Dr. Laserline, General Manager Christoph Ullmann commented, "The acquisition of WBC Photonics is a crucial step towards our goal of becoming a global leader in the blue light diode laser industry. It not only enhances our strength in blue light industrial semiconductor laser solutions, providing a comprehensive selection from top beam quality to global top high-power levels, but also further consolidates our market position in this field.

Michael Deutsch, CEO of WBC Photonics, also expressed a positive outlook: "Working together with Laserline, we can cross borders and jointly enter the global high brightness blue light laser market, promote innovation and development of blue semiconductor laser technology, and strive to become a global leader in this field.

Blue light semiconductor lasers, as a core technology in the electronics manufacturing industry, are becoming increasingly important, especially in the processing of non-ferrous metals such as copper and its alloys, showing great potential.

Due to the absorption efficiency of 445 nm blue light waves for copper and copper alloys being five times higher than infrared light, the energy required for thermal conductivity welding is significantly reduced, making precise welding of highly conductive non-ferrous metals such as copper and gold possible.

Since the first batch of blue semiconductor lasers were introduced, even the thinnest copper components can achieve reliable connections without relying on additional material reinforcement, opening a new chapter in material processing technology.

Source: OFweek

Powiązane rekomendacje
  • Scientists have developed a solar cell that can bend and soak in water

    Researchers and their partners at the RIEKN Creative Physical Science Research Center have created a flexible and waterproof organic photovoltaic film. This innovative thin film can integrate solar cells into clothing, maintaining functionality even in rainwater or washing cycles.One of the potential uses of organic photovoltaic technology is to manufacture wearable electronic devices that can be ...

    2024-05-08
    Zobacz tłumaczenie
  • Overview of Inconel 939 Alloy Parts Developed by Additive Manufacturing Process

    The related paper was published in Heliyon under the title "A systematic review of Inconel 939 alloy parts development via additive manufacturing process".IN939 is a modern nickel based high-temperature alloy that can work continuously at high temperatures due to its excellent fatigue resistance, creep resistance, and corrosion resistance. The unique performance of IN939 is related to the composit...

    2024-12-10
    Zobacz tłumaczenie
  • Measurement of spectral line intensity of NO2 near 6.2 microns using a quantum cascade laser spectrometer

    Recently, a joint research team from the Key Laboratory of Optoelectronic Information Acquisition and Processing of Anhui University, the Laboratory of Laser Spectroscopy and Sensing of Anhui University, and Ningbo Haier Xin Optoelectronic Technology Co., Ltd. published a paper titled "Measures of line strengths for NO2 near 6.2" μ Research paper on using a quantum cascade laser spectrometer.Re...

    2024-01-02
    Zobacz tłumaczenie
  • Rachel's latest laser welding and cutting machine processes thicker materials at lightning speed

    Rachel is a pioneer in laser technology solutions and is pleased to announce a significant update to its laser welding and cutting machines. These enhanced features aim to provide customers with faster turnaround time and higher accuracy, reaffirming Rachel Corporation's commitment to providing cutting-edge laser cutting and welding solutions to meet the needs of different industries.Lache Company...

    2024-04-07
    Zobacz tłumaczenie
  • Researchers use blurry light to 3D print high-quality optical components

    Canadian researchers have developed a new 3D printing method called Blur Tomography, which can quickly produce micro lenses with commercial grade optical quality. The new method can make designing and manufacturing various optical devices easier and faster.Daniel Webber from the National Research Council of Canada stated, "We have intentionally added optical blurring to the beams used in this 3D p...

    2024-05-11
    Zobacz tłumaczenie