简体中文

DustPhotonic is the first to develop an 800G silicon photonic chip

366
2023-10-13 13:48:35
查看翻译

Recently, DustPhotonics released a single chip 800G-DR8 silicon photonic chip for data center applications, which is an important milestone in practical photonics in data centers. The company claims that its single-chip solution provides high-performance and easy to implement solutions for system architects.

DustPhotonics' 800G-DR8 photonic integrated circuit provides a single chip solution for fiber copper interconnections in data centers and artificial intelligence applications. The equipment is currently in the sample stage and is expected to start production in the first quarter of 2024.

Although photonic integrated circuits (PICs) have been used in high-bandwidth and high-efficiency applications for some time, not all processes are the same. Some photonic processes utilize wide bandgap semiconductors based on gallium or indium. Alternatively, DustPhotonics' progress is based on silicon photonics, which opens the door to more mature and scalable processes for silicon.

Data centers require high bandwidth solutions
As the amount of data flowing through the data center continues to increase, limited transmission speeds have caused processing bottlenecks. Although traditional copper based cabling solutions are sufficient to meet many applications, they cannot support the bandwidth and efficiency requirements required for next-generation data centers.

This becomes particularly true when 800Gb/s transmission is approaching, especially when looking ahead to data rates of 1.6 Tb/s and 3.2 Tb/s. Therefore, designers are studying photonics to improve the bandwidth and efficiency of data center communication.

(Image source: Rosenberger)

As the demand for higher data rates increases, data centers may benefit from utilizing photonic solutions. This is not to say that PIC is currently the best solution for everyone. If the application does not require sustained high data rates, deploying photonic solutions may bring step-by-step improvements to many headache problems. By utilizing silicon photonics, single chip solutions can be deployed instead of using discrete components, thereby reducing system complexity, power consumption, and cost.

800G transmission rate
DustPhotonics' 800G photonic integrated circuit provides designers with a single chip solution for DR8 applications, providing a relatively easy transition to higher data rates. The chip itself supports 8 optical channels, each with a modulation rate of 100Gb/s, and can use single-mode fiber.

Although the chip includes lasers in its packaging, it also utilizes DustPhotonics' low loss laser coupling technology to support various commercial off the shelf lasers. In addition, compared to solutions using discrete components, the single chip solution reduces power consumption by 20%, improves overall efficiency, while maintaining the simplicity of the system itself.

(Image source: DustPhotonics)

The Combination of Silicon Photonics and CMOS
Although silicon photonics may not be a universal semiconductor technology, it does bring countless benefits, including improved bandwidth, efficiency, and throughput for optical/electrical conversion. By utilizing mature silicon processes, silicon photonics solutions may exhibit faster development cycles than other technologies.

Due to the integration of silicon photonics technology with traditional CMOS design, it may become more common in data center applications. DustPhotonics 800G PIC provides an example of this possibility and emphasizes the utility of integrating optical and electrical transmission to improve data rates.

Source: OFweek

相关推荐
  • Shanghai Institute of Optics and Mechanics proposes a new scheme of Er doped silicate fiber as an extended L-band broadband amplifier

    Recently, Hu Lili, a research group of the Advanced Laser and Optoelectronic Functional Materials Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, proposed a new scheme based on field strength optimization of Er doped silicate fiber as an extended L-band broadband amplifier. Relevant research achievements were published in Optics Letters under the tit...

    2024-06-05
    查看翻译
  • Research progress and prospects of CFRP laser surface cleaning

    Researchers from Materials Science at Harbin Institute of Technology, Zhengzhou Research Institute at Harbin Institute of Technology, and Key Laboratory of Microsystems and Microstructure Manufacturing at Harbin Institute of Technology, Ministry of Education, reviewed and reported on the research progress of laser surface cleaning of carbon fiber reinforced polymer composites (CFRP). The relevant ...

    03-06
    查看翻译
  • Research progress on aerospace materials and anti ablation coatings: a review

    India B R. Dr. Jalandal Ambedkar National Institute of Technology and the Indian Institute of Technology reviewed and reported on the research progress of aerospace materials and anti ablation coatings. The related paper was published in Optics&Laser Technology under the title "Progress in aerospace materials and ablation resistant coatings: A focused review".a key:1. A comprehensive overview ...

    2024-11-21
    查看翻译
  • Uncovering the Secrets of Nature: A New Generation of X-ray Lasers Reveals the Mystery of Atoms

    As a breakthrough leap in scientific exploration, the new generation of powerful X-ray lasers is now targeting the fastest and most basic processes in nature. Their mission: to uncover the complex atomic arrangement that drives these phenomena, providing unprecedented insights into chemical reactions, electronic behavior in materials, and the mysteries of the natural world.Unlocking the precise me...

    2023-09-25
    查看翻译
  • Enlightra and DESY Hamburg developed an improved and scalable comb laser

    Laser technology startup Enlightra collaborates with DESY Hamburg to develop and design more stable and efficient comb lasers. This work demonstrates a microresonator with programmable synthetic reflection, providing tailored injection feedback for driving lasers. This technology has significantly improved compared to traditional self injection locking technology and can be produced using standard...

    2024-01-26
    查看翻译