<?xml version="1.0" encoding="UTF-8"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>ContentLora: Next-gen computing hardware</title><description>New and updated Next-gen computing hardware pages on ContentLora.</description><link>https://contentlora.com/</link><language>en</language><atom:link href="https://contentlora.com/topics/computing-hardware/feed.xml" rel="self" type="application/rss+xml"/><item><title>Analog in-memory computing</title><link>https://contentlora.com/wiki/analog-in-memory-computing/</link><guid isPermaLink="true">https://contentlora.com/wiki/analog-in-memory-computing/</guid><description>Analog in-memory computing does neural-network maths inside memory arrays so weights never move. How it works, IBM&apos;s phase-change work, 2025 results, limits.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>computing</category><category>semiconductors</category></item><item><title>Backside power delivery</title><link>https://contentlora.com/wiki/backside-power-delivery/</link><guid isPermaLink="true">https://contentlora.com/wiki/backside-power-delivery/</guid><description>Backside power delivery moves a chip&apos;s power wiring beneath the transistors. How Intel&apos;s PowerVia and TSMC&apos;s A16 backside power rail work, and why it matters.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>semiconductors</category></item><item><title>Chiplets and advanced packaging</title><link>https://contentlora.com/wiki/chiplets/</link><guid isPermaLink="true">https://contentlora.com/wiki/chiplets/</guid><description>Chiplets split a processor into smaller dies joined in one package. Why the industry uses them, the UCIe standard, CoWoS and the packaging bottleneck.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>semiconductors</category></item><item><title>Co-packaged optics (CPO)</title><link>https://contentlora.com/wiki/co-packaged-optics/</link><guid isPermaLink="true">https://contentlora.com/wiki/co-packaged-optics/</guid><description>Co-packaged optics puts optical engines inside the switch or processor package. Products from NVIDIA, Broadcom and startups, claimed savings, open questions.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item><item><title>Gate-all-around (GAA) transistors</title><link>https://contentlora.com/wiki/gate-all-around-transistors/</link><guid isPermaLink="true">https://contentlora.com/wiki/gate-all-around-transistors/</guid><description>Gate-all-around nanosheet transistors replace FinFETs at the leading edge. How they work, who makes them, and what comes next (forksheet, CFET).</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>semiconductors</category></item><item><title>Hybrid bonding</title><link>https://contentlora.com/wiki/hybrid-bonding/</link><guid isPermaLink="true">https://contentlora.com/wiki/hybrid-bonding/</guid><description>Hybrid bonding stacks chips with direct copper-to-copper connections instead of solder bumps. How it works, pitch milestones, uses and challenges.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>semiconductors</category></item><item><title>imec</title><link>https://contentlora.com/wiki/imec/</link><guid isPermaLink="true">https://contentlora.com/wiki/imec/</guid><description>imec is the Belgian semiconductor research centre that maps the logic roadmap beyond nanosheets, from forksheet and CFET transistors to hybrid bonding.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>semiconductors</category></item><item><title>Neuromorphic computing</title><link>https://contentlora.com/wiki/neuromorphic-computing/</link><guid isPermaLink="true">https://contentlora.com/wiki/neuromorphic-computing/</guid><description>Neuromorphic computing builds chips inspired by the brain&apos;s spiking neurons. Intel&apos;s Hala Point, IBM&apos;s NorthPole, the 2025 Nature roadmap and open questions.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Wiki</category><category>computing-hardware</category><category>computing</category><category>semiconductors</category></item><item><title>Next-gen computing hardware tracker: 2024-2026 milestones</title><link>https://contentlora.com/events/computing-hardware-tracker/</link><guid isPermaLink="true">https://contentlora.com/events/computing-hardware-tracker/</guid><description>A live timeline of milestones in GAA transistors, backside power, chiplets, co-packaged optics, neuromorphic and analog in-memory computing.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Developing</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item><item><title>Beyond Moore&apos;s law: which hardware bets will pay off?</title><link>https://contentlora.com/analysis/post-moore-hardware-debate/</link><guid isPermaLink="true">https://contentlora.com/analysis/post-moore-hardware-debate/</guid><description>The open debates in next-gen computing hardware: incremental scaling vs radical new compute, how fast optics replaces copper, and vendor claims vs evidence.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Analysis</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item><item><title>Next-gen computing hardware in 2026: a crash course</title><link>https://contentlora.com/explain/computing-hardware/</link><guid isPermaLink="true">https://contentlora.com/explain/computing-hardware/</guid><description>A crash course on computing beyond conventional chip scaling: GAA transistors, backside power, chiplets, optical links, neuromorphic and analog compute.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Explainer</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item><item><title>How optical interconnects and silicon photonics work</title><link>https://contentlora.com/explain/how-optical-interconnects-work/</link><guid isPermaLink="true">https://contentlora.com/explain/how-optical-interconnects-work/</guid><description>Why data centers are replacing copper and pluggable transceivers with light, and how silicon photonics, optical chiplets and co-packaged optics work.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Explainer</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item><item><title>The memory wall: why moving data limits AI hardware</title><link>https://contentlora.com/explain/memory-wall/</link><guid isPermaLink="true">https://contentlora.com/explain/memory-wall/</guid><description>Why AI chips are increasingly limited by memory and interconnect bandwidth rather than raw compute, and which hardware ideas try to fix it.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Explainer</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item><item><title>Why chip scaling slowed, and what replaced it</title><link>https://contentlora.com/explain/why-chip-scaling-slowed/</link><guid isPermaLink="true">https://contentlora.com/explain/why-chip-scaling-slowed/</guid><description>How the end of Dennard scaling around 2005 created a power wall, why multi-core and accelerators followed, and why new hardware ideas now matter.</description><pubDate>Sat, 10 Oct 2026 00:00:00 GMT</pubDate><category>Explainer</category><category>computing-hardware</category><category>semiconductors</category><category>computing</category></item></channel></rss>