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Marvell Begins Initial Sample Shipments of 1.6T LPO Transceivers for AI/HPC Clusters, Reducing Data Center Power and Cost

Data Center Dynamics United States
Overview
Marvell has initiated initial sample shipments of its 1.6T Linear Pluggable Optics (LPO) transceivers, designed for AI and High-Performance Computing (HPC) clusters. These LPO modules significantly reduce power consumption and cost by eliminating the need for internal retimers, addressing the demands of next-generation data centers. Through providing evaluation samples to key customers, Marvell is steadily preparing for market launch, contributing to the efficiency and reduced deployment costs of AI infrastructure.
In Depth

Key Findings

Marvell has announced the commencement of initial sample shipments for its 1.6T Linear Pluggable Optics (LPO) transceivers, specifically engineered for Artificial Intelligence (AI) and High-Performance Computing (HPC) clusters. This innovative LPO module adopts a ‘retimer-less’ design, which eliminates the need for an integrated retimer function, leading to substantial reductions in power consumption and cost compared to traditional pluggable optics. This represents a critical step towards alleviating the power load and economic burden on data centers driven by ever-increasing AI workloads.

Technical Details

Marvell’s 1.6T LPO transceivers are characterized by an architecture that does not require high-performance Digital Signal Processing (DSP) retimer chips. In conventional pluggable optics, DSP retimers are essential for ensuring long-distance transmission and signal integrity, but they also contribute to increased power consumption and cost. By omitting the DSP, LPO modules can potentially reduce their own power consumption by 30% to 50%. This enables a dramatic improvement in overall system power efficiency for short-reach connections within AI/HPC clusters, all while maintaining ultra-high bandwidth. This technology is optimized particularly for high-speed data transmission over relatively short distances, such as within and between racks (a few meters to tens of meters), maximizing benefits in environments where signal degradation remains within acceptable limits.

Background & Context

The rapid advancement of AI has driven unprecedented demands for bandwidth and power efficiency within data centers. Specifically, the training of large AI models necessitates enormous data movement between GPUs, requiring ultra-high-speed interconnects like 1.6T (terabit) solutions. Concurrently, power consumption constitutes a significant portion of the total cost of ownership (TCO) for data centers, making power reduction an urgent priority for operational efficiency. LPO technology has emerged in this context as a solution to achieve high speeds while balancing cost and power consumption, particularly for short-reach connections. Marvell’s initiation of sample shipments indicates that this technology has entered a practical deployment phase in the data center market.

Strategic Significance & Outlook

The market introduction of Marvell’s 1.6T LPO transceivers is expected to profoundly impact the design and operation of AI/HPC data centers. The reduction in power consumption and cost will enable data center operators to scale up their AI infrastructure more extensively and economically. This, in turn, is anticipated to accelerate AI research and development, fostering the creation of new AI services and applications. Providing evaluation samples to key customers helps validate product reliability and compatibility, paving the way for widespread market adoption. Moving forward, LPO technology is poised to play a crucial role in the evolution of data center networks, coexisting with other optical interconnect technologies such as Co-Packaged Optics (CPO).

Source: https://www.datacenterdynamics.com/marvell-1-6t-lpo-transceiver-samples-20260724

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