Keyfactor Connect 2026 Zurich
Arrival: 13:00, Program begins: 11:30
Join us for an interactive experience with fellow Keyfactor customers and end users. Bring your challenges, swap stories, and dive into hands-on workshops with our experts.
During this meeting, you will receive first-hand updates on the current state of quantum computer development and post-quantum cryptographic standardization and implementation progress.
Technology providers have made significant advances in preparing quantum-resistant solutions to protect today’s systems from tomorrow’s threats. However, in practice, several use cases could not yet be realized end-to-end due to missing architectural or operational building blocks. We will provide an update on implementation readiness, practical migration approaches, and why Crypto Discovery is essential to understand your cryptographic exposure before defining priorities and allocating resources.
The tools exist. The roadmap is emerging. The time to act is now.
Learn
Go deeper on the topics shaping digital trust—from post-quantum readiness to cryptographic discovery and regulatory change. Hear directly from our experts, explore what’s on the 2026 roadmap, and walk away with insights you can turn into action.
Engage
Go beyond the slide deck. Roll up your sleeves in interactive workshops designed to surface real challenges and produce tangible next steps, ideas, and assets you can take back to your team.
Connect
Meet the people behind the products and the peers facing the same challenges. Share stories, spark new ideas, and build real connections—set in distinctive spaces designed to make it easy.
Implementation
Technology is available and it is now essential to actively plan and promote their implementation to ensure long-term digital trust and resilience.
Experts Will Provide First-Hand Insights
Top expertise on post-quantum cryptography research and implementation in actionable technology

Silvio Dragone will provide first-hand information and update on the state of its quantum computers development and post-quantum cryptographic algorithms. When can we expect quantum computers to break asymmetric cryptography methods used today, such as RSA, EC, ECDSA and other traditional algorithms.

Tomas Gustavsson will provide practical insights on NIST’s, and other's deadlines, how to implement quantum-resistant algorithms into your IAM fabric's PKI and signing solutions. Learn real-world steps to ensure compliance with emerging standards and safeguard your organization from future quantum threats.

Abhay Soorya will share how to uncover and prioritize vulnerabilities, automate cryptographic inventory, and make cryptographic risk measurable and actionable within your security strategy.

Thomas will share a practical roadmap for moving from initial awareness to real-world implementation and walk you through each key phase of the necessary quantumsafe transformation.
A first look at what’s coming
All you need to know to attend
Thursday, October 15th
Quantum computers will offer new opportunities and introduce new challenges for cybersecurity, requiring corporates to define strategic transformation programs that ensure long-term protection of sensitive data, systems, and trust.

Translate our roadmap into practical outcomes for your team

Real-world insights into implementing PQC in existing environments, including hybrid approaches, 2025 pilot results, integration challenges, and lessons learned from early adoption projects.

with Thomas Weber, ID Security
A practical roadmap outlining phased project steps — discovery, risk assessment, prioritization, pilot, and rollout— enabling organizations to move from awareness to controlled implementation.

with Abhay Soorya, InfoSec Global
Cryptography secures every identity, transaction, and connection — yet most organizations struggle to maintain a complete view of the keys, certificates, and algorithms they rely on. Learn how to discover and prioritize vulnerabilities, automate cryptographic inventory, and make cryptographic risk a measurable part of your security strategy.
