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QuiX Quantum

QuiX Quantum provides room‑temperature photonic quantum computers that integrate directly into existing data‑center and HPC racks. Using CMOS‑compatible silicon‑nitride chips and modular, drop‑in hardware, the platform delivers high‑speed (up to 1 GHz) low‑noise quantum acceleration for hybrid workloads in finance, AI, drug discovery, and logistics, without the need for cryogenic cooling.

Enschede, NL,DEFounded 20197010K+ followers
Updated 2 months ago

Funding

$17.5M 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.

EFFOONP

Founders

Product

Problem

Current quantum computers rely on cryogenic environments and specialized facilities, making them difficult to deploy at scale in data centers and limiting practical access for enterprise workloads that require high-performance computing.

Solution

QuiX Quantum offers a universal photonic quantum computer designed for integration into existing data center and high‑performance computing (HPC) environments. By using CMOS‑compatible silicon‑nitride photonic integrated circuits and telecom‑grade components, the system operates at room temperature without the need for custom cooling infrastructure. The modular, drop‑in architecture allows the hardware to be added to standard server racks and upgraded via networked modules as computational demand grows. Low optical loss, high clock speeds (100 MHz–1 GHz), and efficient error‑mitigation techniques reduce the total cost of ownership and simplify maintenance compared with cryogenic competitors. The platform supports hybrid quantum‑classical workloads, enabling sectors such as finance, AI, drug discovery, and logistics to leverage quantum acceleration directly within their existing compute fabric.

Target Audience

Primary customers are enterprise data‑center operators, HPC providers, and large‑scale R&D organizations in finance, artificial intelligence, pharmaceuticals, and manufacturing that require quantum acceleration for complex simulations and optimization tasks.

Features

  • CMOS‑compatible silicon‑nitride photonic chips with industry‑leading lowest optical loss
  • Room‑temperature operation using telecom‑grade components, eliminating cryogenic cooling
  • Modular, network‑upgradable hardware that can be added to standard data‑center racks
  • High clock speeds up to 1 GHz and low‑noise photonic qubits for fast, reliable computation
  • Integrated photon‑distillation error‑mitigation achieving below‑threshold error rates
  • Scalable manufacturing via fabless model and silicon photonics foundry processes
  • Compatibility with hybrid quantum‑classical architectures and existing HPC workloads
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