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GIGALIGHT Delivers Crimp-Socket-Based 1.6T NPO Engineering Samples, Ready for Mass Production in AI Computing

GIGALIGHT China
Overview
With the rapid growth of AI computing, 1.6T Near-Packaged Optics (NPO) technology stands at a critical juncture for sample validation and commercial deployment. GIGALIGHT announced the completion of its shipping-ready engineering samples for a crimp-socket-based 1.6T NPO solution, defined by OIF standards, as of September 2026. This demonstrates the superior transmission performance of NPO for ultra-high-bandwidth applications. The company aims to provide practical, scalable high-speed interconnect solutions to global AI computing clusters, balancing performance, power consumption, reliability, and mass production costs.
In Depth

Key Findings

GIGALIGHT has announced the completion of shipping-ready engineering samples for its crimp-socket-based 1.6T Near-Packaged Optics (NPO) solution, which adheres to OIF standards, as of September 2026. This achievement is a significant step in addressing the accelerating demands of AI computing and demonstrates the superior transmission performance and readiness for mass production of NPO technology in ultra-high-bandwidth applications.

Technical / Clinical Details

The crimp-socket-based 1.6T NPO solution developed by GIGALIGHT minimizes signal loss and power consumption by shortening the electrical signal path between the optical module and the host device. This design conforms to standards defined by the Open Optical Internet Forum (OIF), which promotes interoperability and widespread adoption across the ecosystem. The socketed approach offers operational flexibility, allowing optical modules to be field-replaceable, a key advantage over directly integrated solutions like Co-Packaged Optics (CPO) in terms of data center maintenance and upgrades. GIGALIGHT aims for this solution to achieve an optimal balance across multiple critical parameters: performance, power consumption, long-term reliability, and mass production costs. The availability of shipping-ready engineering samples indicates GIGALIGHT’s transition from technological exploration to practical commercial deployment, marking a crucial step towards providing scalable high-speed interconnects for global AI computing clusters.

Background & Context

The expansion of AI workloads places unprecedented demands on data center interconnect technologies. Specifically, the data transmission speed and power efficiency between GPUs and ASICs are critical factors determining the overall performance of AI systems. Traditional pluggable optical modules face limitations in achieving higher speeds and lower power consumption due to physical distances and electrical signal constraints. NPO technology is emerging as a next-generation approach to address these challenges by bringing optical interfaces closer to the processor package. GIGALIGHT’s initiative responds to these market needs by balancing technological advancement with the practicalities of mass production.

Strategic Significance & Outlook

GIGALIGHT’s announcement of shipping-ready samples for its crimp-socket-based 1.6T NPO solution is highly significant for the evolution of high-speed interconnects in AI computing clusters. The widespread adoption of this technology is expected to dramatically improve the performance and power efficiency of AI data centers, enabling the deployment of larger and more complex AI models. Furthermore, adherence to OIF standards and the socketed design are anticipated to accelerate market adoption of NPO technology and foster overall ecosystem development. GIGALIGHT is poised to strengthen its leadership in this domain and play an indispensable role in building the data communication infrastructure for the AI era.

Source: https://www.gigalight.com/news/detail/balancing-tech-exploration–mass-production-readiness–gigalight-unveils-crimp-socket-based-1.6t-npo-for-rational-high-speed-interconnect-evolution

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