Silicon To Software

Why Embedded Hardware Can't Survive Quantum Computing | The Hidden Post-Quantum Cryptography Crisis


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What happens when quantum computers can break today's encryption—but your hardware can't be upgraded?

In this episode of the Silicon to Software Podcast, Imran Valiani explores one of the biggest hidden challenges facing embedded systems, semiconductor design, and cybersecurity: post-quantum cryptography (PQC).

While most discussions focus on software updates, many embedded devices were never designed with the memory, processing power, or crypto agility required to support quantum-resistant algorithms such as ML-KEM and ML-DSA.

In this episode you'll learn:

• Why embedded hardware faces a unique quantum migration challenge • Why firmware updates alone won't solve the problem • How microcontrollers, TPMs, FPGAs, and secure boot systems are affected • The role of crypto agility in future hardware design • What this means for automotive, industrial IoT, medical devices, telecommunications, and critical infrastructure • How engineers can prepare for the transition to post-quantum security

Whether you're a hardware engineer, embedded software developer, PCB designer, cybersecurity professional, semiconductor engineer, or technology executive, this episode explains why the transition to quantum-safe security is as much a hardware challenge as it is a software one.

🌐 Read the full article: https://www.silicontosoftware.com/post-quantum-cryptography-embedded-systems/

🎙️ Subscribe to the Silicon to Software Podcast for weekly discussions on: • AI Hardware • PCB Design & Manufacturing • Embedded Systems • Semiconductor Technology • Cybersecurity • Quantum Computing • Electronics Engineering

#QuantumComputing #PostQuantumCryptography #CyberSecurity #EmbeddedSystems #HardwareSecurity #IoT #FPGA #Semiconductor #PCBDesign #ArtificialIntelligence

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Silicon To SoftwareBy Imran Valiani