AI: Friend And Foe For Chip Security


Key Takeaways: AI has pushed security to the forefront, helping attackers find vulnerabilities in chips and the chip industry to defend against them. Security needs to extend throughout a chip's lifetime, but it's not clear how AI will age with a chip. AI pushes visibility outside a chip, which changes the dynamics for how to secure it. AI is making it both easier and more d... » read more

The Next Big Chip Failure May Be A Security One


Key Takeaways:  Chip security must be designed in from the start, with clear requirements that connect architecture, verification, software, manufacturing, and field deployment. AI is expanding both the scale and accessibility of attacks, making hardware-level vulnerabilities harder to anticipate, patch, and contain. Regulations, customer expectations, and lifecycle risks are turnin... » read more

Implementing the Cyber Resilience Act: eBook


Implementing the Cyber Resilience Act: Practical Guidance for Security Engineering and Compliance is a practical eBook designed to help product manufacturers, security teams, compliance leaders, and engineering organizations prepare for the Cyber Resilience Act (CRA). With mandatory reporting obligations beginning in September 2026 and full CRA compliance required for products placed on the EU ... » read more

Embedded HSM Root of Trust with Arm Cortex-M33 Processor


The Rambus CryptoManager RT-648 Root of Trust is a fully-programmable hardware security core offering security by design for automotive applications. As the connected nature of automobiles evolves, device architects face a growing array of emerging security threats. Whether V2X, ADAS, infotainment, or other applications, one constant is the need for a hardware Root of Trust-based security imple... » read more

Securing The Software-Defined Vehicle Starts With Re-Architecting Trust


The automotive industry is being rebuilt around software. Architectures built on dozens of distributed ECUs are giving way to centralized and zonal compute platforms. Functions that once ran on dedicated hardware now share the same SoC. Software updates are no longer occasional events tied to recalls. They happen continuously, over the air, across the vehicle’s lifetime. This is what the s... » read more

Platform Firmware Resiliency: How To Protect Your Data Center From The Ground Up


Data centers have become the foundation of modern digital infrastructure, but one of their most critical security layers remains dangerously exposed. Platform firmware, which controls everything from system initialization to hardware configuration, is increasingly targeted by sophisticated cyberattacks. A successful firmware compromise is difficult to detect, survives reboots, and can give atta... » read more

Breaking LLMs With Fuzzing: Inside GPTFuzz’s Automated Jailbreak Machine


Software security has long relied on a technique called fuzzing, i.e. bombarding a program with malformed, unexpected, or mutated inputs until something breaks. Tools like AFL (American Fuzzy Lop) have uncovered thousands of real-world vulnerabilities this way. At Keysight, fuzzing has been a core part of security testing for years, with extensive expertise in protocol fuzzing, dedicated fu... » read more

Defending Smart Homes Against AI Cyber Attacks


In recent months, the cybersecurity capabilities of Large Language Models have become increasingly powerful. Recent research shows that today’s frontier models (Claude Mythos and OpenAI GPT 5.5) with proper tooling have cybersecurity capabilities similar to trained cybersecurity practitioners and are doubling their ability every four months. Access to these frontier models has been restricted... » read more

Pentesting: The Required Human Ingenuity to Uncover Security Gaps


A penetration test (or more commonly, “pentest”) is a software, infrastructure, and or network attack on your organization by a skilled attack team that probes for security weaknesses and seeks to exploit them to reach your assets. The testing team surveys the breadth of potential damage that can be done in an attack and delivers a report that helps an organization prioritize its security w... » read more

Securing AI at the Silicon Level: Solutions for a Smarter, Safer Future


This white paper explains how Synopsys Security IP embeds hardware‑rooted protection into AI SoCs and chiplets to secure their data and models. It highlights growing AI attack vectors across edge and data‑center environments and shows how technologies like PUF, tRoot HSM, interface security, and PQC create long‑term, silicon‑level trust. Why read this whitepaper: Learn how sili... » read more

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