Lattice Semiconductor has introduced a new Cyber Resilience Reference Kit aimed at helping industrial and edge device manufacturers accelerate secure system design while addressing evolving cybersecurity regulations. The company developed this solution in collaboration with EXOR International and TrustiPhi. Together, the three organizations combined hardware security, industrial edge computing, and lifecycle security orchestration to deliver a unified platform focused on cyber-resilient system development.

As cyber threats continue to evolve, industrial organizations increasingly require built-in security from the earliest design stages. Therefore, this reference kit focuses on establishing hardware-rooted trust, enabling secure lifecycle management, and supporting industrial-grade connectivity. The solution is built on the Lattice MachXO3D secure control FPGA, integrated with EXOR International’s industrial edge platform and TrustiPhi’s security orchestration technology. As a result, manufacturers can accelerate deployment while maintaining strong security foundations across device lifecycles.

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“Security can no longer be an afterthought, especially at the industrial edge. With this collaboration, we’re giving customers a practical, integrated way to accelerate secure system development and support emerging requirements such as the EU Cyber Resilience Act,” said Karl Wachswender, Senior Principal System Architect Industrial, Lattice Semiconductor. “Through our early access program, major industrial companies evaluated the reference kit in real-world environments. Their strong interest and feedback helped shape a solution that brings together the strengths of three companies to establish trust from the very first boot and maintain it throughout the product lifecycle.”

The new Cyber Resilience Reference Kit enables secure onboarding, authenticated communications, and continuous system integrity validation. Importantly, it delivers these capabilities without increasing design complexity. Additionally, the solution provides hardware-rooted trust through secure boot processes, protected device identity, and firmware resilience. At the same time, EXOR International’s uSOM10 industrial platform enables secure onboarding and authenticated IIoT communication through JMobile and Corvina technologies.

Furthermore, TrustiPhi’s ProtoPilot platform enables centralized configuration of security features across entire device fleets. This includes cryptographic key management, certificate lifecycle control, and verified secure update workflows aligned with emerging cybersecurity standards. Consequently, organizations can manage device security at scale while ensuring regulatory readiness.

“Industrial customers are looking for turnkey ways to embed cyber resilience into their devices without adding complexity. By combining our industrial platforms and software with Lattice’s secure FPGA technology and TrustiPhi’s lifecycle management, we’ve created a complete, real-world environment that makes secure onboarding and trusted communication intuitive,” said Claudio Ambra, CTO, EXOR International.

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Moreover, the kit offers a plug-and-play development workflow. This allows engineering teams to evaluate end-to-end cyber resilience without integrating multiple vendor tools manually. In addition, the platform helps organizations accelerate threat mitigation strategies, improve compliance readiness, and strengthen trusted device recovery processes.

“Hardware-rooted trust is the foundation of long-term device security, but many manufacturers and system owners struggle with the operational side of managing keys, certificates, and secure updates. Our collaboration with Lattice and EXOR International streamlines this experience into a single, cohesive kit that removes barriers to adoption and helps customers get hands-on experience with proven security techniques,” said Ari Singer, CTO, TrustiPhi.

The Cyber Resilience Reference Kit is now available through Lattice’s official channels and authorized distribution partners. Overall, the launch highlights the growing industry shift toward integrated, hardware-anchored security frameworks designed specifically for industrial edge environments and next-generation connected devices.

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