Lattice Blog

Blog_ECD Datacenter Webinar Recap

[Blog] Closing the Secure Control Gap in AI Datacenters with FPGAs

Posted 07/06/2026 by Mamta Gupta, AVP, Segment Marketing, Lattice Semiconductor

The global datacenter market is expanding at an incredibly rapid pace, projected to surpass over $900 billion USD by 2033. This unprecedented growth is driven by demand for more artificial intelligence (AI) computing capacity, which in turn requires more powerful and complex servers. These servers have historically operated in streamlined, cohesive, tightly integrated architectures. However, increased demand has given way to more distributed, heterogeneous datacenter infrastructure that’s...

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PQC Blog

[Blog] The 2030 PQC Deadline Is Real: How the New Federal Mandate Rewrites the PQC Playbook – and Why Lattice Is Ready

Posted 06/25/2026 by Lattice Semiconductor

On June 22, 2026, President Trump signed Executive Order (EO) 14412, Securing the Nation Against Advanced Cryptographic Attacks, a significant policy milestone that accelerates the U.S. government's timeline for adopting post-quantum cryptography (PQC). In this blog, we explore what the order requires, why its deadlines are more demanding than many organizations may realize, and how Lattice’s award-winning industry-first PQC-ready MachXO5™-NX TDQ FPGA family is designed to help cust...

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Security in the Age of AI

[Blog] Security in the Age of AI: Why Trust Is Moving Closer to Hardware

Posted 04/16/2026 by Mamta Gupta, AVP, Strategic Business Development, Datacenter & Security

In early 2026, a quiet shift became impossible to ignore: artificial intelligence (AI) moved from helping defenders to operating like an attacker at scale. The cybersecurity community took notice when researchers revealed that an advanced AI system, known publicly as Claude Mythos Preview, was able to independently discover and exploit serious software vulnerabilities. Many of these weaknesses had existed for years in widely used operating systems and software, despite extensive testing and revi...

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[Blog] Designing Trust into Humanoid Robots from Day Zero

[Blog] Designing Trust into Humanoid Robots from Day Zero

Posted 04/06/2026 by Lattice Semiconductor

That question opens Lattice Semiconductor’s recent Security Seminar, and it becomes more urgent as humanoids move beyond research environments and begin operating around and interacting with people. Mechanical safeguards and functional safety standards address only part of the risk. When control systems, firmware updates, or data paths can be compromised, security directly determines physical safety. In this seminar, experts from Lattice Semiconductor, SEALSQ, and Promwad examine the real...

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[Blog] Advancing Embedded AI, Security, and Connectivity at embedded world 2026

Posted 03/27/2026 by Lattice Semiconductor

One of the year’s largest global trade shows, embedded world is a place for Lattice and its industry partners to gather and discuss the innovative solutions enabling engineers to deploy intelligent, scalable designs from cloud to sensor. If we missed you at the event, here’s a snapshot of our presence at embedded world 2026. Showcasing Key Solutions for Tomorrow’s Embedded Challenges, Today Over the course of the conference, the Lattice team had the opportunity to present...

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Bob-O-Blog-EdgeAI

[Blog] Edge AI Opportunity Will Come to Life in 2026

Posted 02/05/2026 by Bob O’Donnell, President and Chief Analyst of TECHnalysis Research, LLC

When it comes to making predictions, sometimes you really have to go out on a limb and sometimes, well, it’s pretty easy. In 2026, there’s zero doubt that AI, generative AI, and agentic AI will continue to be the key buzzwords driving the tech industry forward. Perhaps a bit less obvious is this year should also mark the beginnings of a growing opportunity in Edge AI, where AI-focused workloads can run in disconnected environments and/or locally on client type devices. The combinati...

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Quantum blog

[Blog] Crypto-Agility and Hardware Trust: Preparing for Q-Day

Posted 12/22/2025 by Lattice Semiconductor

The transition to post-quantum cryptography (PQC) is not a theoretical future event. It is the largest cryptographic migration in modern history, already shaping product roadmaps, standards bodies, and infrastructure planning across servers, AI datacenters, telecom, industrial automation, and critical systems. In this interview, we sat down with Mamta Gupta, a leader driving Lattice’s quantum-safe security strategy, to discuss Quantum Day (Q-Day) readiness, crypto-agility, Security Proto...

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Post Quantum Trust Stack - Sec-Seminar-Recap-blog

[Blog] The Post-Quantum Trust Stack: Preparing for Cryptographic Disruption

Posted 11/14/2025 by Mamta Gupta, AVP, Lattice Semiconductor

Our digital world is undergoing a profound transformation. Cloud computing, artificial intelligence (AI) and machine learning (ML) workloads, as well as the emergence of quantum computing capabilities, are reshaping how networks must be protected and secured. What’s more, these changes come amid evolving risks & regulations – from the prevalence of “harvest now; decrypt later” attacks, to updated standards like the Commercial National Security Algorithm Suite (CNSA) 2...

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117 OCP Recap blog 1

[Blog] Securing the Future: OCP 2025 Recap

Posted 11/11/2025 by Lattice Semiconductor

Each year, the Open Compute Project (OCP) Global Summit brings together the tech industry’s most innovative thinkers to discuss the current and future state of open hardware and software solutions. This year, Lattice and our ecosystem partners had the opportunity to showcase a range of our Field Programmable Gate Array (FPGA)-based solutions that help enable OCP-compliant development of datacenters, artificial intelligence (AI) solutions, and more. In case you missed the show, here’...

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1024 Bob O blog

[Blog] Making Post Quantum Cryptography Real with FPGAs

Posted 10/24/2025 by Bob O’Donnell, president and chief analyst of TECHnalysis Research, LLC

One of the more exciting developments now happening in the high-tech world is the work being done to enable quantum computing. After decades of theoretical discussion and development, the last few years have shown tangible progress in this radically different (and enormously complex) new method of computing. Quantum computers essentially perform calculations by flipping the electrical charge of individual atoms and allowing them to simultaneously exist in more than one state through a process ca...

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