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SeeQC

SEEQC develops a semiconductor-based quantum computing system-on-a-chip that integrates heterogeneous quantum processing units (QPUs), graphics processing units (GPUs), and central processing units (CPUs) for scalable quantum applications. This technology addresses the limitations of traditional quantum computing by enabling efficient chip-to-chip integration and supporting various qubit modalities for commercial use.

LMS, United StatesFounded 2018313K+ followers
Updated 20 months ago

Funding

$59.2M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

BA+1
Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Current quantum computing systems face scalability challenges due to the complexities of integrating heterogeneous components and supporting diverse qubit modalities. Traditional architectures often lack the efficiency needed for practical, commercial-scale quantum applications.

Solution

SEEQC is developing a quantum computing system-on-a-chip that integrates heterogeneous quantum processing units (QPUs), graphics processing units (GPUs), and central processing units (CPUs) on a single semiconductor platform. This architecture enables efficient chip-to-chip integration and supports various superconducting qubit modalities. By using an all-digital approach, SEEQC aims to overcome the limitations of traditional quantum computing systems, paving the way for more scalable and application-specific quantum solutions. The system is designed to be more energy-efficient and practical for commercial use.

Target Audience

The primary target audience includes organizations and researchers in industries such as materials science, pharmaceuticals, and finance who require scalable quantum computing solutions for complex computational problems.

Features

  • Heterogeneous integration of QPUs, GPUs, and CPUs on a single chip
  • Support for multiple superconducting qubit modalities
  • All-digital chip-to-chip integration for enhanced efficiency
  • Custom chip fabrication services for complex superconductor designs
  • Application-specific quantum computer design for optimized performance
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