SeQure Quantum (often styled as Sequre Quantum) is a deep‑tech cybersecurity company that uses quantum physics to make encryption and random number generation much more secure. It originated from academic collaboration between researchers in Chile and Poland, who built a quantum‑based random number generator that is designed to be virtually impossible to hack. The company’s mission is to provide real‑time, quantum‑safe security for critical data and infrastructure by generating truly random numbers and continuously checking their quality.
SeQure Quantum focuses on Quantum Random Number Generators (QRNGs) that produce certified, device‑independent random numbers and can detect attacks or failures in real time. Its technology is used for applications such as secure lotteries, encryption key generation, and protection of sensitive systems in banking, defense, and government. By combining quantum physics, cryptography, and cybersecurity, SeQure Quantum aims to give organizations quantum‑grade security without changing all of their existing IT systems.
SeQure Quantum builds quantum‑based devices and services that generate and deliver truly random numbers for encryption and other security uses. Its systems also test themselves in real time to detect failures or attacks.
SeQure Quantum operates from Concepción, Chile, with its business address listed at Orompello 178. The company grew from research links between a Chilean university and the University of Gdańsk in Poland.
The core technology came from joint work between physicists in Chile and Poland, especially at the University of Gdańsk, on quantum‑based random number generators. This collaboration helped shape the company’s patented QRNG approach.
Its QRNGs produce random numbers based on quantum physics and continuously certify their own authenticity and entropy. This makes the output unpredictable, tamper‑proof, and able to signal attacks or faults in real time.
Users include lotteries such as the Concepción Lottery for secure draws and organizations in banking, defense, and government that need very strong encryption keys. The technology can be integrated into many sectors that require high‑assurance security.
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