Deutsch

French silicon optical company Scintil realizes the integration of III-VI DFB lasers and amplifiers with standard silicon optical technology

1106
2024-03-05 14:11:25
Übersetzung anzeigen

Recently, French silicon photonics company Scintil Photonics announced an exciting collaboration, successfully integrating III-V-DFB lasers and amplifiers with standard silicon photonics technology in the production of Israeli semiconductor company Tower Semiconductor. This milestone collaboration marks a crucial step for Scintil in strengthening its supply chain, bringing new possibilities to communication technology.

Scintil's fully integrated circuits utilize unique proprietary technology, leveraging the power of standard silicon photonics to achieve single-chip integration of lasers and amplifiers. This technology brings higher performance, speed, reliability, and density to data centers, artificial intelligence, and 5G applications while maintaining low power consumption.

Scintil has chosen Tower Semiconductor's large-scale basic PH18M silicon photon foundry technology, which includes low loss waveguides, photodetectors, and modulators. By integrating DFB lasers and amplifiers on a single chip on the back of the wafer, Scintil's circuit not only eliminates the need for sealed packaging in customer testing, but also demonstrates significant improvements in aging and robustness.

Sylvie Menezo, President and CEO of Scintil Photonics, welcomes the collaboration with the world's leading wafer foundry, Tower Semiconductor. She stated that this marks an important milestone in their ability to provide laser enhanced silicon photonic ICs, redefining integration, performance, and scalability. This will enable Scintil to produce in large quantities to meet market demand. In addition, their technology provides extraordinary opportunities for the integration of more materials, such as quantum dots and lithium niobate materials.

According to market research firm LightCounting, the silicon photon transceiver market is expected to grow at a compound annual growth rate (CAGR) of 24%, and its total addressable market (TAM) is expected to reach at least $7 billion by 2025. This indicates that the prospects of silicon photon technology in the field of communication are very promising.

Edward Preisler, Vice President and General Manager of the RF Business Unit at Tower Semiconductor, stated that they are pleased to support Scintil in this highly integrated solution. This solution fully utilizes Tower's mature production components, especially the integration of III-V optical amplifiers/lasers, in line with Tower Semiconductor's commitment to bringing cutting-edge silicon photon technology to the market.

Source: Laser Net

Ähnliche Empfehlungen
  • Revealing the essence of optical vortices: a step towards understanding the interaction between light and matter

    In a groundbreaking scientific study published in Volume 13 of the Scientific Report, researchers reported on the results of Young's double slit interference experiment using oscillating vortex radiation under a photon counting system. The experiment involves using a spiral oscillator to emit second harmonic radiation in the ultraviolet range. Using an ultra narrow bandpass filter in the low curre...

    2023-12-29
    Übersetzung anzeigen
  • Optimizing the phase focusing of laser accelerators

    With the help of on-chip accelerator technology, researchers at Stanford University are getting closer to manufacturing a miniature electron accelerator that can have various applications in industrial, medical, and physical research.Scientists have proven that silicon dielectric laser accelerators can now be used to accelerate and limit electrons, thereby producing concentrated high-energy electr...

    2024-02-29
    Übersetzung anzeigen
  • Top management changes at Laser Photonics Corp., a US laser equipment manufacturer

    Recently, Laser Photonics Corp. (LPC), a Nasdaq listed equipment developer, announced that it has appointed John T. Armstrong as its new Executive Vice President. Before assuming his position at LPC, Armstrong served as Vice President of Astronics Test Systems, a subsidiary of Astronics Corporation, a global leader in advanced technology and products in critical mission areas such as aerospace a...

    2024-11-20
    Übersetzung anzeigen
  • Optical properties of Xinggory Cy3.5 amine/NH2 labeling experiment

    The optical properties of the Cy3.5 amine labeling experiment are an important reason for its application in biomarkers and fluorescence imaging. Cy3.5 is a fluorescent dye belonging to the Cyanine dye family, with high molar extinction coefficient and quantum yield, making it excellent in trace analysis and fluorescence imaging.In the Cy3.5 amine labeling experiment, the dye covalently binds to s...

    2024-03-29
    Übersetzung anzeigen
  • New Progress in Research on Three Lattice Photonic Crystal Surface Emission Lasers at Changchun Institute of Optics and Mechanics

    Recently, Tong Cunzhu, the research team of the Chinese President of Science, Chunguang Institute of Mechanical Mechanics, made important progress in the research field of photonic crystal surface emitting lasers (PCSEL), proposed a three lattice structure and achieved a low threshold 1550nm PCSEL. Relevant achievements were published in Light: Science and Application vol.13, 442024, and the famou...

    2024-03-15
    Übersetzung anzeigen