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Imec roadmap: 0.3nm nodes by 2038, CFET transistors viable at 0.7nm

Imec's 2026 roadmap outlines a future for semiconductor manufacturing, projecting 0.3nm fabrication nodes by 2038 and the viability of CFET transistors at 0.7nm. The research organization is redefining Moore's Law, emphasizing cell size and density over traditional scaling as contact poly pitch is expected to plateau around 2030. This shift necessitates new technologies like CFET and potentially Hyper-NA EUV lithography to continue advancing chip capabilities. AI

IMPACT Sets the stage for future AI hardware development by outlining advancements in semiconductor manufacturing capabilities.

RANK_REASON Semiconductor research roadmap detailing future process nodes and transistor architectures.

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AI-generated summary · Google Gemini · from 2 sources. How we write summaries →

Imec roadmap: 0.3nm nodes by 2038, CFET transistors viable at 0.7nm

COVERAGE [2]

  1. Tom's Hardware TIER_1 English(EN) · Anton Shilov ·

    Imec's 2026 roadmap details 0.3nm nodes by 2038, CFET transistors become viable at 0.7nm — company redefines Moore's Law as cell sizes gain importance for density

    As CPP shrinking stalls, chipmakers find a new way to increase transistor density. Imec foresees 0.3nm in 2038, CFET insertion in 2038, HLSI era.

  2. Mastodon — fosstodon.org TIER_1 English(EN) · [email protected] ·

    Imec's 2026 roadmap details 0.3nm nodes by 2038, CFET transistors become viable at 0.7nm — company redefines Moore's Law as cell sizes gain importance for densi

    Imec's 2026 roadmap details 0.3nm nodes by 2038, CFET transistors become viable at 0.7nm — company redefines Moore's Law as cell sizes gain importance for density As CPP shrinking stalls, chipmakers find a new way to increase transistor density. Imec foresees 0.3nm in 2038, CFET …