Türkçe

Lightmatter announces the first 16 wavelength bidirectional link on single-mode fiber

660
2025-08-22 10:15:43
Çeviriyi gör

Lightmatter, a Boston-based startup developing silicon photonics hardware aimed at AI and high-performance computing, has announced a 16-wavelength bidirectional Dense Wavelength Division Multiplexing optical link operating on one strand of standard single-mode (SM) fiber.

Powered by Lightmatter’s Passage interconnect and Guide laser technologies, this development “shatters previous limitations in fiber bandwidth density and spectral utilization and sets a new benchmark for high-performance, resilient data center interconnects,” the company stated.

 



Lightmatter’s Passage platform


The Lightmatter announcement continues, “With the rise of complex trillion-parameter Mixture of Experts models, scaling AI workloads is increasingly bottlenecked by bandwidth and radix (I/O port count) limitations in data center infrastructure.” Passage technology delivers 800 Gbps bidirectional bandwidth per SM fiber over several hundred meters.

While commercial bidirectional transmission on a single fiber has been limited mainly to two wavelengths, achieving 16 wavelengths has required multiple or specialized fibers. Lightmatter states that its achievement “addresses significant technical challenges related to managing complex wavelength-dependent propagation characteristics, power budget constraints, optical nonlinearity, and mitigating crosstalk and backscattering in a single fiber.”

How it works

The development incorporates a proprietary closed-loop digital stabilization system that actively compensates for thermal drift, ensuring continuous, low-error transmission over wide temperature fluctuations.

Architectural innovations make the Passage 3D CPO platform (pictured, above) inherently polarization-insensitive, maintaining robust performance even when the fibers are being handled or subject to mechanical stress. Standard SM fiber, while offering immense bandwidth potential, does not inherently maintain light’s polarization state, unlike specialized and more costly polarization-maintaining fiber.

This combination of unparalleled fiber bandwidth density, efficient spectral utilization, and robust performance makes Lightmatter's Passage technology foundational for the industry’s transition from electrical to optical interconnects in AI data centers. It empowers customers to accelerate development of larger and more capable AI models with more powerful, efficient, and scalable data centers.

‘Architectural leap’

Nicholas Harris, founder and CEO, commented, “Data centers are the new unit of compute in the AI era, with the next 1000X performance gain coming largely from ultra-fast photonic interconnects. Our 16-lambda bidirectional link is an architectural leap forward. Hyperscalers can achieve significantly higher bandwidth density with standard single-mode fiber, reducing both capital expenditure and operational complexity, while enabling higher radix — more connections per XPU or switch,” said Harris.

Alan Weckel, co-founder and analyst at market intelligence group 650 Group, said, “Lightmatter’s ability to dramatically increase bandwidth density on existing single-mode fiber, coupled with the technology’s robust thermal performance, is a game-changer for data center scalability and efficiency. This solves one of the most pressing challenges in AI development.”

Source: optics.org

İlgili öneriler
  • Single photon avalanche diode for millimeter level object recognition using KIST

    LiDAR sensors are crucial for implementing modern technologies such as autonomous driving, AR/VR, and advanced driving assistance systems. For example, more accurate shape detection in AR/VR devices and smartphones depends on the improved range resolution of medium and short range LiDAR. This requires a single photon detector with improved timing jitter performance.LiDAR calculates the distance an...

    2024-02-03
    Çeviriyi gör
  • Laser gyroscopes measure small changes in daytime length on Earth

    Recently, scientists used laser gyroscopes to measure that the change in Earth's rotational speed is less than one millionth. This technology can help scientists understand the complex flow of water and air, which can cause the smallest adjustments to the Earth's rotation.The Earth's rotation is not completely stable. Planets accelerate or slow down as they rotate, slightly shortening or prolongin...

    2023-09-19
    Çeviriyi gör
  • LightSolver announces the launch of the LPU100 laser computing system

    LightSolver, a laser based computing company, announced that it is a breakthrough in quantum inspired high-performance computing.Its LPU100 system utilizes the power of 100 lasers to solve optimization problems, challenging the processing time of quantum and supercomputers. The laser array of LPU100 represents 100 continuous variables and can solve up to 120100 combinations of problems, enabling ...

    2024-03-22
    Çeviriyi gör
  • Laser solder paste: comprehensive analysis of working principle and application fields

    Laser solder paste is a new type of high-tech laser soldering material that is widely used. Laser solder paste achieves high-precision control of circuit board soldering through laser heating in the electronic manufacturing process. This article will provide a detailed introduction to the working principle of laser solder paste and its applications in fields such as electronic manufacturing and au...

    2024-04-11
    Çeviriyi gör
  • Using laser welding technology to manufacture rotor shafts at the speed of light

    How can EMAG Laser Technology accelerate the production of critical powertrain components using its flagship product ELC 6 system?The rapid popularity of electric vehicles worldwide indicates that production planners must increase their efforts in producing key components of electric vehicles, particularly the rotor shaft. The importance of the rotor shaft as the core component for converting elec...

    2024-07-17
    Çeviriyi gör