Türkçe

Tower Semiconductor is preparing to add laser integrated PIC for Scintil

889
2024-02-29 14:59:58
Çeviriyi gör

Grenoble stated that in the context of growing demand driven by artificial intelligence and 5G, "key" milestones have strengthened its supply chain.

Scantil Photonics, a subsidiary of CEA Leti that focuses on silicon photonics, has stated that its integrated laser design is now being produced by Tower Semiconductor, a wafer foundry partner.

This method describes this development as a "crucial step forward" that can combine distributed feedback lasers with photonic integrated circuits for high-speed optical communication applications.

Scintil's proprietary PIC is said to enable single-chip integration of lasers and amplifiers, thereby improving performance, speed, reliability, and density at low power consumption in data centers that support 5G connectivity and artificial intelligence computing needs.

These designs are currently being manufactured using Tower's large-scale "PH18M" silicon photonics foundry process based in Israel, which also features low loss waveguides, photodetectors, and modulators. Wafers with a diameter of 200 millimeters are produced at Tower's manufacturing plant located in Newport Beach, California.

Scintil's technology integrates DFB lasers and amplifiers on a single chip on the back of the wafer, and customer testing of PIC shows strong performance without the need for sealed packaging.

CEO Silvi Menezzo founded the Grenoble startup and previously led CEA Leti's Silicon Photonics Laboratory. He stated that this development represents an important milestone.

"We are pleased to emphasize our collaboration with Tower Semiconductor, a leading global wafer foundry," she commented. Due to our long-term cooperation, we have the ability to provide laser enhanced silicon photonic ICs, redefining integration, performance, and scalability.
This will enable Scintil to conduct large-scale production to meet market demand. In addition, our technology demonstrates extraordinary opportunities to accommodate the integration of more materials, such as quantum dots and lithium niobate materials.

The $7 billion transceiver market is expected to see rapid growth in demand for silicon photonics based optical transceivers in the coming years
The research company LightCounting predicts a compound annual growth rate of 24% by 2025, with a total potential market value of at least $7 billion.

Edward Preisler, Vice President and General Manager of Tower's RF Business Unit, added, "We are pleased to support Scintil, a highly integrated solution that leverages Tower's mature production building modules.".

The integration of III-V family optical amplifiers and/or lasers aligns with Tower Semiconductor's commitment to bringing cutting-edge silicon photon technology to the market.

After Menezo spun off Scintil from CEA Leti Labs in 2018, he led the startup in two rounds of financing, including a € 13.5 million investment led by investor Robert Bosch Venture Capital in 2022.

Source: Laser Net

İlgili öneriler
  • NIST utilizes laser reflection to enhance 3D metal printing

    A project at NIST has developed a new way to monitor and assess 3D printing of metals.Finding and correcting defects inadvertently created inside a 3D printed part is one of the biggest challenges for metal printing, commented NIST. But getting a close look at the printing operation as it's underway is not easy.As well as the toxicity of the raw materials, there can be a risk of combustion or expl...

    09-18
    Çeviriyi gör
  • The LANL laboratory in the United States uses quantum light emitters to generate single photon light sources

    Recently, the Los Alamos National Laboratory (LANL) in the United States has developed a method for quantum light emitters, which stacks two different atomic thin materials together to achieve a light source that generates circularly polarized single photon streams. These light sources can also be used for various quantum information and communication applications.According to Han Htoon, a researc...

    2023-09-01
    Çeviriyi gör
  • Lumiotive and Hokuyo announce the launch of the world's first 3D LiDAR sensor with true solid-state beam steering

    Lumotive, a pioneer in optical semiconductor technology, and Hokuyo Automatic Co., a global leader in sensors and automation, Ltd. announced today the commercial version of the YLM-10LX 3D LiDAR sensor. This breakthrough product features Lumiotive's light controlled metasurface (LCM) ™) Optical beamforming technology represents a significant leap in the application of solid-state programmable opti...

    2024-05-25
    Çeviriyi gör
  • French researchers develop spiral lenses with optical vortex effects

    As humans stand at the forefront of a new era of space exploration, the National Laboratory of the International Space Station is taking the lead in carrying out a groundbreaking initiative that may completely change the way we understand and utilize space for research and development. In a recent development, Northrop Grumman's 20th commercial supply service mission has become an innovative light...

    2024-02-17
    Çeviriyi gör
  • Allocate 10 billion US dollars! New York State to Build NA Extreme UV Lithography Center

    On December 11th local time, New York State announced a partnership with companies such as IBM, Micron, Applied Materials, and Tokyo Electronics to jointly invest $10 billion to expand the Albany NanoTech Complex in New York State, ultimately transforming it into a high numerical aperture extreme ultraviolet (NA EUV) lithography center to support the development of the world's most complex and pow...

    2023-12-15
    Çeviriyi gör