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The New Frontier in Cybersecurity
Cyber threats are constantly evolving, and at Cyte® we’re always one step ahead. Our post-quantum cryptography technology protects critical information to the highest standards, ensuring operational continuity for organizations, especially in regulated sectors and critical infrastructure.
IBM has identified 2029 as the year of the definitive cryptographic breakdown. The transition must begin today.
¿Why post-quantum cryptography?
Implementing post-quantum cryptography ensures that organizations are prepared for this new era, protecting the integrity and confidentiality of information against any future threats.
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Portfolio of Solutions
What Defines Us
Total control over the quality, innovation, and safety of every solution we deliver.
In-house manufacturing
As direct manufacturers, we exercise total control over quality and safety. Our products go beyond conventional protection, providing robust defense against current and future threats.
Continuous Innovation
Our team of engineers works tirelessly to develop creative and efficient solutions that adapt to the changing needs and emerging threats of the digital world.
Strategic Partner
We focus on being a strategic partner to our clients. We work closely with them to understand their unique needs and design solutions that integrate with their internal strategies.

8+
Countries Covered
15+
In-house manufacturing solutions
30+
Years of experience
150+
Organizations Implementing Post-Quantum Cryptography
Cyte insighs

Preguntas frecuentes
Post-quantum cryptography
Post-quantum cryptography (PQC) is a new generation of cryptographic algorithms designed to remain secure even against quantum computers.Why is it necessary?Many current systems rely on mathematical problems that are difficult for classical computers to solve:• Factoring large numbers → RSA• Discrete logarithm → ECC and Diffie-Hellman
Computación cuántica
Quantum computing represents a new technological era capable of solving problems that are currently virtually impossible for traditional computers to solve. Based on principles of quantum physics such as superposition and entanglement, this technology promises to revolutionize fields such as artificial intelligence, medicine, cybersecurity, finance, and scientific simulation.Rather than a replacement for classical computing, quantum computing will be a specialized tool for tackling highly complex challenges and accelerating future technological development.
Phishing
Phishing is a very common cyberattack technique that uses emails, messages, or phone calls to deceive people. It relies on social engineering, in which attackers impersonate trustworthy organizations to manipulate their victims. The goal is to trick users into making mistakes, such as visiting fraudulent websites, downloading infected files, or providing sensitive information like their bank passwords.
Q-Day
This is the term used to describe the moment when a sufficiently advanced quantum computer is able to break the current encryption systems used on the internet, by banks, governments, and in digital communications.Currently, many systems use algorithms such as:• RSA• ECC (Elliptic Curve Cryptography)• Diffie-HellmanThese work because it would take traditional computers thousands of years to solve certain mathematical problems. However, a quantum computer could solve them much more quickly using algorithms such as Shor’s algorithm.
Ransomware
Ransomware is a type of malicious software that acts like a digital kidnapping: once it infects your device, it encrypts your files or blocks access to the system so you can’t use them. The attackers then demand a ransom (usually in cryptocurrency) in exchange for the decryption key, threatening to permanently delete the information or leak it online. Despite the pressure, experts recommend not paying, as this does not guarantee data recovery and only encourages criminals to continue their attacks.

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