Confined molecules inside carbon nanotubes polarize under gate voltage, creating transistors with three stable logic states from a single material system.
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Nanometer-scale graphene switch could cut power use in future chips
Researchers have built working transistors from graphene nanoribbons less than a nanometer wide, achieving room-temperature switching performance that silicon struggles to match at similar scales. The ...
Innovative tool for producing computer chips uses giant, nearly perfect mirrors to make tiny transistors and circuits.
Half-bridge eGaN buck designs deliver high efficiency and flexibility, supporting next-generation aerospace systems ...
A new unified model explains how thickness, defects, interface quality, and roughness together control the behavior of ultrathin oxide transistors. The work provides practical design rules for ...
Since mass-production of the SiC MOSFET commenced in 2010, portfolios have expanded, often through the introduction of ...
With SRAM failing to scale in recent process nodes, the industry must assess its impact on all forms of computing. There are ...
This research presents a new dual-gate design strategy that enables stable operation even in nanoscale channels,” said Jae Eun Jang, a professor in the Department of Electrical Engineering and ...
LG Display is mass-producing laptop screens that automatically change their refresh rate from 1 Hz to up to 120 Hz, based on ...
Morning Overview on MSN
Graphene receiver design could cut power use in future 6G radios
A peer-reviewed study published on March 25, 2026, in Nature Communications describes a graphene-based sub-terahertz receiver ...
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