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Lattice Wins 2026 CyberSecurity Breakthrough Award for Industry-First PQC-Enabled FPGAs

Lattice Semiconductor (LSCC) won a 2026 CyberSecurity Breakthrough Award for its MachXO5-NX TDQ family of field-programmable gate arrays, or FPGAs.

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HILLSBORO, Ore.--(BUSINESS WIRE)-- Lattice Semiconductor (NASDAQ: LSCC), the low power programmable and platform firmware leader, today announced its Lattice MachXO5™-NX TDQ FPGA family was named a 2026 CyberSecurity Breakthrough Award winner in the “Post-quantum cryptography (PQC) Solution of the Year” category. Industry-first PQC-enabled Lattice MachXO5-NX TDQ FPGAs equip modern infrastructure to withstand quantum-enabled cyberattacks, combining robust security, proven reliability, and the flexibility to adapt as cryptographic standards evolve.

“As organizations prepare long-lifecycle infrastructure for evolving security requirements, they need solutions that deliver strong protection from day zero,” said Eric Sivertson, VP of Security Business, Lattice Semiconductor. “This recognition underscores Lattice's commitment to helping customers deploy hardware-rooted security, crypto-agility, and PQC capabilities in systems shipping today.”

“This FPGA from Lattice Semiconductor redefines what programmable silicon can deliver. Organizations need quantum-resistant security now - not in the future, and they require secure, scalable, and adaptable solutions that can be deployed immediately and evolve as standards change,” said Steve Johansson, Managing Director, CyberSecurity Breakthrough. “By combining CNSA 2.0-compliant PQC, crypto-agility, and hardware-based trust in a low power FPGA, Lattice MachXO5-NX TDQ FPGAs enable quantum-ready security to be deployed today.”

To learn more about Lattice’s FPGA security solutions, visit the Lattice FPGA Security Solutions webpage. For more information about the Lattice MachXO5-NX TDQ FPGA family, visit the Lattice website.

About Lattice Semiconductor

Lattice Semiconductor (NASDAQ: LSCC) is the low power programmable and platform firmware leader. We solve customer challenges from the Edge to the Cloud, in the growing Compute, Communications, Industrial, and Embedded markets. With the addition of AMI's industry-leading, silicon-neutral platform firmware and infrastructure manageability solutions, Lattice now delivers the industry's most complete secure management and control platform for cloud and AI data center infrastructure. Our technology, long-standing relationships, and commitment to world-class support let our customers quickly and easily unleash their innovation to create a smart, secure, and connected world. For more information about Lattice, please visit www.latticesemi.com and follow us via LinkedIn, X, YouTube, Facebook, WeChat, and Weibo.

Lattice Semiconductor Corporation, Lattice Semiconductor (& design), AMI, and specific product designations are either registered trademarks or trademarks of Lattice Semiconductor Corporation or its subsidiaries in the United States and/or other countries. The use of the word “partner” does not imply a legal partnership between Lattice and any other entity.

GENERAL NOTICE: Other product names used in this publication are for identification purposes only and may be trademarks of their respective holders

MEDIA CONTACT:
Sophia Hong
Lattice Semiconductor
503-268-8786
Sophia.Hong@latticesemi.com

INVESTOR CONTACT:
Rick Muscha
Lattice Semiconductor
408-826-6000
Rick.Muscha@latticesemi.com

Source: Lattice Semiconductor

Key Terms

post-quantum cryptography technical
Post-quantum cryptography is a set of new methods for scrambling data so it stays secure even if powerful quantum computers exist; think of replacing today’s locks with designs that a future high‑speed lockpicker cannot open. For investors, it matters because companies must upgrade systems, meet regulations, and protect customer and trade data—creating costs, competitive advantages, or legal and reputational risks depending on how quickly and effectively they adopt these new security standards.
fpga technical
A field-programmable gate array (FPGA) is a type of computer chip whose internal wiring can be changed after it is made, allowing engineers to program custom hardware functions without designing a new chip. For investors, FPGAs matter because that flexibility lets companies quickly adapt products to new software, standards, or customer needs—like a toolbox that can be rearranged to build different machines—so demand and pricing can shift with trends in data centers, telecommunications, AI, and specialized electronics.
crypto-agility technical
Crypto-agility is the ability of digital security systems to quickly adapt and update their cryptographic techniques in response to emerging threats or vulnerabilities. For investors, it matters because it helps protect assets from hackers and ensures the ongoing safety of digital assets as technology and attack methods evolve, much like upgrading locks or security systems to stay ahead of burglars. Being crypto-agile means staying prepared for future challenges in digital security.

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