Modern Physical Intrusion: The Forgotten Threat
Your firewall can't stop someone who just walked through the front door. Physical access controls, badges, and buildings remain cybersecurity's most overlooked attack surface. As threats evolve across SaaS, on-premises, and hybrid environments, so do their techniques. The result: sophisticated new attack scenarios, governance gaps, and higher stakes for every organization that assumes a locked door is enough. Learn more about:
- A clear picture of how physical intrusion fits into modern offensive security strategies
- Real-world case studies, including “special delivery”, climbing and advanced use cases.
- An inside look at modern techniques: AI-generated deepfakes, social engineering, infiltration, and access bypass
- An understanding of why your building must be treated as an exposed application, and how to integrate physical security into your cyber governance
Hardware Security Under Attack: The Reality of Fault Injection
When it comes to securing connected devices and embedded systems, the focus is typically on software: buffer overflow protection, encrypted communications, secure boot. Fault injection attacks are too often left out of the conversation, yet they can have a major impact on the security measures in place, combining a hardware attack vector with software exploitation.
Here’s what you’ll walk away with:
- Fundamentals of fault injecton
- Attacks techniques and security impacts
- Detection and migration strategies
- Case Study: bypassing ECU anti-debug protections
Post-Quantum Cryptography: The How and Why of it!
For years, modern cryptography has provided strong protection against digital threats.
But the rapid progress in quantum computing is reshaping this landscape.
Post-quantum standards are evolving, and organizations must prepare today to remain secure tomorrow.
The Result: New cryptographic challenges. New migration questions. Higher stakes.
In this webinar, learn more about:
- the fundamentals of Post-Quantum Cryptography
- the current standardization efforts, including the NIST competition
- the migration challenges, key actors, and strategic considerations for organizations.
Why Space Systems Are The Next Cyber Battleground ?
For a long time, the space industry relied on secrecy to keep systems safe. But that model no longer works. Open-source protocols and off-the-shelf components are transforming space systems. These advances make development faster and more affordable but they also introduce significant security challenges.
With open standards and accessible hardware, attackers can now study satellite software and even replicate the technology. In this webinar, learn more about:
- the fundamentals of space systems without overwhelming technical detail
- real-world cyber threats to satellites and ground infrastructure
- the risks of insecure space assets
- practical steps and solutions to strengthen security.
Protecting High-Value IP
Your software and code are not just valuable assets—they are the foundation of your innovation and competitive advantage. Unfortunately, they’re under constant threat.
Intellectual property (IP) theft, cloning, reverse engineering, and tampering are real risks that can jeopardize the integrity of your business. Malicious actors don’t just copy your work—they repackage it, misappropriate it, and undermine your progress.
IoT Security Essentials: Navigating Key Challenges, CRA, & Best Practices
As IoT devices surge towards 29 billion by 2027, securing them is more crucial than ever.
From smart home appliances to network appliances, the risks are significant. This 30min webinar will cover:
- Key security risks to address,
- New regulations with a special focus on the EU’s Cyber Resilience Act (CRA),
- Strategies to protect your IoT devices.
Watch the replay to gain practical insights to safeguard your IoT infrastructure.
Software Security for data, firmware, and applications
Security in microcontrollers involves safeguarding code and data confidentiality and integrity.
Developers need plug-and-play solutions to protect assets like certificates, configuration files, cryptographic keys, billable data, AI learning and inference data, machine learning algorithms, and sensitive software code throughout the device lifecycle.
Security is essential; regulations like CRA, RED, IEC, and ETSI mandate proper protection against tampering.
Resecuring an IoT fleet after its market release
IoT Security is at the heart of cybersecurity discussions in 2022, particularly the debate between security by design and re-securing already deployed devices. While we advocate for integrating security from the design phase, there is also the challenge of securing devices that are already in use. How can we address vulnerabilities and ensure continued protection for devices that were not originally designed with security as a primary concern ?
Titan(ic) M: An analysis of Google’s secure chip
In modern smartphones, vendors tend to rely on dedicated chips to improve the security of their devices. In 2018, Google introduced the Titan M chip in their Pixels, claiming it would make them their most secure smartphones ever.
This talk demonstrates how we studied this component starting from the limited information available and how we discover its role in the Android security model as well as its internals. We will share the story of how we ended up executing code on the chip and how this architecture indeed protected the device from a full compromise.
Ready to protect your most sensitive assets?
Get in touch with our team for a platform demo.