Italiano

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

198
2024-03-05 14:11:25
Vedi traduzione

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

Raccomandazioni correlate
  • 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
    Vedi traduzione
  • Germany has developed a fast, accurate, and wear-resistant laser drilling CFRP process

    Recently, scientists from the Hanover Laser Center (LZH) in Germany announced the successful development of an automated laser drilling process that can promote the processing of carbon fiber reinforced plastics (CFRP). They stated that this is particularly valuable in applications such as lightweight structures and sound insulation.Composite materials such as carbon fiber reinforced plastics (CFR...

    2024-03-06
    Vedi traduzione
  • Researchers have captured the strange behavior of laser induced gold

    A new study conducted by the US Department of Energy's SLAC National Accelerator Laboratory has revealed the strange behavior of gold when impacted by high-energy laser pulses.When certain materials are subjected to strong laser excitation, they will quickly disintegrate. But gold is exactly the opposite: it becomes more resilient and resilient. This is because the way gold atoms vibrate together ...

    2024-02-17
    Vedi traduzione
  • Natural Communication: Oxide Dispersion Enhancement for High Performance 3D Printing of Pure Copper

    The laser additive manufacturing technology of pure copper (Cu) with complex geometric shapes has opened up vast opportunities for the development of microelectronic and telecommunications functional devices. However, laser forming of high-density pure copper remains a challenge.Recently, the forefront of additive manufacturing technology has noticed a joint report by the University of Hong Kong, ...

    04-11
    Vedi traduzione
  • 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
    Vedi traduzione