한국어

Filatek: Leading the Development of Laser, Shining "Additive Prince"

747
2024-04-12 16:20:24
번역 보기

In recent years, the field of laser technology has received widespread attention from the outside world. At that time, the Munich Shanghai Electronic Production Equipment Exhibition was successfully held in Shanghai, and Suzhou Feilaitek Laser Technology Co., Ltd. (hereinafter referred to as "Feilaitek"), a leading enterprise in the field of industrial laser 3D dynamic focusing systems, appeared at this exhibition. OFweek has the honor of inviting Yang Haiqing, the General Manager of Feilaitek, to conduct an interview with us, allowing him to reveal the latest achievements and future vision of Feilaitek.

Diversified exhibits showcase strength
As a leader in industrial laser dynamic focusing systems, Philatek has carefully presented a series of high-quality products at this exhibition, focusing on shaping its benchmark image in the laser field. Most of the exhibits of Feilaitek this time are standardized products, covering various light source adaptation solutions and segmented market applications. For the blue ocean markets of semiconductors and 3D printing, Feilaitek has launched a series of specialized products, showcasing Feilaitek's strategic vision in the field of laser processing technology.

The focus of this exhibition is undoubtedly the star product of Feilaitek - "Additive Prince", which is a multi laser dynamic focusing 3D printing galvanometer unit. This product is an innovative achievement of Feilaitek in response to the key research and development plan of the Ministry of Science and Technology during the 14th Five Year Plan period. Feilaitek has accurately identified the key bottlenecks faced by the processing of large format and large volume products in the additive manufacturing industry, and successfully developed the "Additive Prince", thereby driving the innovation and progress of related industries.

The Additive Prince can combine two beams of the same or different wavelength bands, achieving application scenarios with different process requirements. Its modular design supports full coverage arrays, with a minimum processing area of 300X300mm. At the same time, by incorporating forward-looking technologies such as redundant design and dynamic data allocation, "Additive Prince" greatly reduces the risk of printing interruption caused by single point failures, improves the production efficiency and yield rate of 3D printers, and has gained widespread industry recognition and praise.

Adhere to market orientation and actively face the future
The strong technical strength of Feilaitek, especially its advantages in dynamic focusing optical design and software development, makes it unique in the laser market. Feilaitaike always adheres to a market-oriented approach and firmly believes that technological innovation should be based on solving problems and meeting market demands. The high precision dynamic focusing system, modular integration capability, and software platform supported dynamic data scheduling mechanism constitute its core technological advantages, endowing the product with a solid foundation to meet the complex needs of various industries.

Looking ahead to the future, Feilaitaike is full of confidence in the trend of intelligence and automation in the laser welding market. It plans to launch a second-generation adaptive laser processing workstation that integrates control algorithms, big data models, and artificial intelligence technology to achieve independent optimization of process parameters in complex environments and promote the intelligent upgrading of dynamic focusing systems.

In addition, the company's product line will further expand to fields such as automotive manufacturing, additive manufacturing, semiconductor processing, and photovoltaic manufacturing. Through a deep understanding of industry characteristics, modular design will be used to achieve product standardization and rapid deployment. At the same time, process parameters will be flexibly adjusted to accurately match the specific needs of each industry, effectively driving industrial upgrading.

Taking the automotive industry as an example, currently, Feilaitaike's products have been widely used in the automotive manufacturing industry. The hollow and transparent effect of interior and exterior decorations is a popular trend in automotive manufacturing, and the implementation of this design must rely on the power of lasers. By utilizing the laser and 3D dynamic focusing system technology of Feilaitek, it is possible to achieve one-time laser translucent carving of complex surfaces during the processing, reduce production processes, customize carving content, and other functions, thereby helping the automotive manufacturing industry to quickly upgrade.

As an industry solution provider, Feilaitek always puts application implementation first, deeply understands and accurately responds to the real needs of the industry, defines and innovates products based on industry attributes, rather than just pursuing standardization or one-sided technological leadership. In the view of Philatek, laser technology, as a "universal processing tool", is not an independent field. Only when laser technology is closely integrated with the needs of various industries can its inherent value be fully unleashed, thereby driving innovation and progress in related industries.

Source: OFweek

관련 추천
  • Polarization of Laser Writing Waveguides Controlled by Liquid Crystal

    German researchers have developed a method for controlling and manipulating optical signals by embedding liquid crystal layers into waveguides created by direct laser writing. This work has produced devices capable of electro-optic control of polarization, which may open up possibilities for chip based devices and complex photonic circuits based on femtosecond write waveguides.Researcher Alexandro...

    2024-03-13
    번역 보기
  • Researchers develop new techniques for controlling individual qubits using lasers

    Researchers at the University of Waterloo's Institute for Quantum Computing (IQC) have developed a new technique that uses lasers to control individual qubits made from the chemical element barium. The breakthrough is a key step toward realizing the capabilities of quantum computers.The new technique uses thin glass waveguides to segment and focus laser beams with unprecedented precision. Each foc...

    2023-09-12
    번역 보기
  • Surface coupled laser technology manufacturer, secured £ 2.94 million in financing

    Recently, renowned surface coupled laser technology supplier Vector Photonics announced that it has received £ 1.667 million in equity investment and £ 1.27 million in additional research funding for the continued commercialization of its unique surface coupled laser (SCL) technology. Surface coupled lasers have completely changed semiconductor laser manufacturing, improving the performance of var...

    2024-06-14
    번역 보기
  • Scientists have conducted a series of studies on the mechanical properties and flame retardancy of laser formed Ti40 flame-retardant titanium alloy

    Recently, Professor Huang Chunping's team from Nanchang University of Aeronautics and Astronautics conducted a series of studies on the mechanical and flame retardant properties of laser formed Ti40 flame retardant titanium alloy. The research team used typical Ti40 flame-retardant titanium alloy as the research object and prepared Ti40 flame-retardant titanium alloy using LSF technology. The micr...

    2023-08-15
    번역 보기
  • Advancing Astronomy: Using Laser Guided Star Adaptive Optics to Obtain clearer celestial views

    Adaptive optics is defined as an advanced optical system used to correct the transmission medium between the subject and the image, providing users with clearer images. Adaptive optics helps to use a complex combination of deformable mirrors to correct images in real-time through distortion in the Earth's atmosphere. These images are of greater importance in many vertical industries such as health...

    2024-02-22
    번역 보기