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AI

AGI Infinity

AGI Infinity develops volumetric holographic optical conductors and transistor-like structures that serve as an alternative to traditional electrical interconnects at hybrid micro- and nano‑scale dimensions.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Advanced AI and high‑performance computing systems are increasingly limited by the bandwidth, power consumption, heat, and routing complexity of traditional electrical interconnects used to move data between components.

Solution

AGI Infinity is developing volumetric holographic optical conductors and transistor‑like structures that replace metal wiring at micro‑ and nano‑scale dimensions. By using computer‑generated holographic optics, these optical pathways aim to transmit data with higher bandwidth and lower loss, reducing resistive heating and simplifying routing. The approach also explores the potential for optical logic elements that could perform switching and computation directly in the optical domain. If successful, this technology would enable more energy‑efficient, thermally manageable AI and HPC hardware architectures.

Target Audience

Primary customers are semiconductor manufacturers, AI accelerator designers, and high‑performance computing system architects seeking to overcome interconnect bottlenecks.

Features

  • Volumetric holographic optical conductors fabricated for hybrid micro‑ and nano‑scale integration
  • Transistor‑like optical structures that can route and switch light signals without electrical contacts
  • Computer‑generated holographic designs that tailor optical pathways for maximal bandwidth and minimal loss
  • Potential to support optical logic functions for future AI accelerator designs
  • Architecture reduces resistive heating and routing density compared to conventional metal interconnects
This profile is AI-generated and may contain inaccuracies.