Français

OpenLight raises $34 million for silicon photonics development

14
2025-08-27 10:38:33
Voir la traduction

OpenLight Photonics, the developer of photonic application-specific integrated circuit (PASIC) design tools established by software giant Synopsys, says it has raised $34 million in venture finance.

The Santa Clara firm, whose process design kits (PDKs) support the integration of indium phosphide (InP) and silicon photonics components in complex layouts, says that the series A funding will see it ramp up reference designs for cutting-edge devices wanted for optical interconnects in AI data center links.

 



Custom PASIC design


Established in 2022 following a collaboration between Synopsys and Juniper Networks, OpenLight says that its PDK is already being used by more than 20 customers to design and fabricate PASICs, alongside validation by silicon photonics foundry partner Tower Semiconductor.

“This round of financing completes OpenLight's transition from a Synopsys subsidiary to a high-velocity, venture-backed company positioned to address the growing demand for faster and more energy-efficient data movement in AI data center networks,” it announced.

“As the shift from electrical to optical interconnects accelerates to support AI-scale workloads, integrated photonics is emerging as a core enabler of next-generation data center infrastructure.”

OpenLight also sees applications beyond the data center, citing opportunities in telecommunications, automotive and industrial sensing, healthcare, and quantum computing.

Reference designs
Provided by a venture consortium led by Xora Innovation and Capricorn Investment Group, the cash injection will see OpenLight expand its PDK library of active and passive photonics components, including its leading-edge 400 Gb/s modulators and InP heterogeneously integrated on-chip laser technology

“OpenLight will also ramp up its standard-based reference photonics integrated circuits (PICs) at 1.6 Tb/s and 3.2 Tb/s to provide customers with the most flexible and leading-edge component design library available in the market,” it added.

“The company will scale its team to support customers as they transition to volume production over the next 12 months.”

OpenLight’s Adam Carter also commented: “As we enter this next phase of our company's growth, we are excited to be adding such strong investors with deep roots and expertise in the semiconductor and photonics industry.

“With this strong syndicate of investors, we can push the boundaries of innovation and deliver transformative solutions to our customers. This funding will allow us to scale our operations, deepen our research and development efforts, and bring our groundbreaking products to market faster.

“We believe heterogeneous integrated silicon photonics will transform the way data is processed and transmitted, and we're excited to be at the forefront of this revolution."

Achieving scale
Phil Inagaki, a managing partner and chief investment officer at Xora, added: “Xora has conviction that the field of photonics is going to see exponential growth in the coming years, and III-V heterogeneous integration is one of the foundational capabilities that will enable this growth.

“We see OpenLight not only as a technology leader in this field, but also as a company positioned to quickly scale manufacturing with foundry partners.

“One of the critical challenges for the photonics industry in the back half of this decade will be achieving scale, and we see OpenLight's PDK as an important part of the solution.”

Aside from Xora and Capricorn, the series A round features Mayfield, Juniper Networks (which has just become part of Hewlett Packard Enterprise), Lam Capital, New Legacy Ventures, and K2 Access.

Dipender Saluja, managing partner at Capricorn's Technology Impact Funds, noted: “Optical connectivity in data centers has become critical for next-generation scale-up and scale-out [of] AI architectures.

“OpenLight's heterogeneous integration delivers on all three axes of performance, reliability and cost, which will enable the explosive growth of optical I/O."

Source: optics.org

Recommandations associées
  • JMP: Small hole mode swing laser welding of nickel based high-temperature alloys - simulation, experiment, and process diagram

    IntroductionThe small hole mode swing laser welding has gained increasing recognition due to its ability to bridge gaps, refine microstructures, and enhance the mechanical properties of welds. However, the effects of amplitude, frequency, welding speed, laser beam power, and beam radius on heat flux distribution, melting mode, and three-dimensional temperature field have not been well understood. ...

    04-11
    Voir la traduction
  • TRUMPF helps upgrade the automation of 3D laser processing for automotive thermoforming

    (Dechengen, Germany, March 24, 2025) - TRUMPF Group in Germany has now provided end customers with a fully automated one-stop solution for laser processing systems. With this solution, customers can not only shorten the production cycle, but also effectively reduce the cost of 3D laser material processing. Our laser equipment has excellent production efficiency. Now, through the automation upgrade...

    04-02
    Voir la traduction
  • GeoCue introduces three new TrueView 3D imaging systems

    Earlier this month, GeoCue, a liDAR mapping hardware and software provider, announced the launch of three new products for its TrueView 3D imaging system. These new systems combine laser scanning and high-resolution imaging, including the TV625, TV680 and TV680LR. All three systems are NDAA-compliant.All three systems are designed to be used in conjunction with drones, and the company note...

    2023-08-04
    Voir la traduction
  • Rapid and convenient preparation of small-sized metal nanoparticles using microchip lasers

    Liquid pulse laser ablation is a reliable and versatile technique for producing metal nanoparticles in solution. Its advantages include no reducing agent, simple operation, high purity, no need for purification steps, and environmental processing conditions, making it the preferred method for traditional metal NP preparation.The widespread adoption of PLAL in scientific and industrial research has...

    2024-01-30
    Voir la traduction
  • Acousto optic modulation of gigawatt level laser pulses in the ambient air of Nature Photonics

    An interdisciplinary research group, including the German synchrotron radiation accelerator DESY and the Helmholtz Institute in Jena, Germany, reported that invisible gratings made of air not only are not damaged by lasers, but also maintain the original quality of the beam. The relevant research has been published in Nature Photonics under the title of "Acousto opt modulation of gigawatt scale la...

    2023-10-12
    Voir la traduction