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January 22, 2026Photonics5 citationsOpen Access

200G VCSEL Development and Proposal of Using VCSELs for Near-Package-Optics Scale-Up Application

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TCTzu Hao ChowJWJingyi WangSJSizhu Jiang

Key Points

  • The aim is to develop and propose VCSELs that meet the demands of high-performance computing and data centers with improved optical connectivity.
  • Evaluated VCSEL bandwidth and noise performance for 200 Gbps links.
  • Tested performance over 50 m of OM4 fiber to assess link stability.
  • Proposed a novel VCSEL near-packaged optics concept for optical interconnects.
  • Demonstrated a −3 dB bandwidth greater than 35 GHz.
  • Achieved a RIN of less than −152 dB/Hz with no uncorrectable errors over specified distances.
  • Proposed VCSEL NPO achieves ~1 pJ/bit energy efficiency, leading among optical interconnects.

Abstract

The connectivity demands of high-performance computing (HPC), artificial intelligence (AI) and data centers are driving the development of a new generation of multimode optical components. This paper discusses the vertical cavity surface emitting laser (VCSEL) bandwidth and noise performance needed to support 106 Gbd line rates with PAM4 modulation for 200 Gbps per lane multimode optical links. A −3 dB bandwidth greater than 35 GHz and a RIN of less than −152 dB/Hz are demonstrated. No uncorrectable errors were observed over 50 m of OM4 fiber, demonstrating good link stability. VCSEL device performance and the associated wear-out life are presented. Leveraging good device reliability and low power consumption of VCSEL-based links, a novel VCSEL near-packaged optics (NPO) concept is proposed for optical interconnects in AI scale-up network applications. Optical interconnects allow for longer reaches, compared to copper interconnects, which facilitate larger AI clusters with network disaggregation. The proposed VCSEL NPO can achieve an energy efficiency of ~1 pJ/bit, which is the highest among optical interconnects.

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Cite This Study

Chow et al. (2026) studied this question.

synapsesocial.com/papers/6971bfdff17b5dc6da021f89https://doi.org/10.3390/photonics13010090
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