3D Integration of 2D Field-Effect Transistors
The number of transistors on a chip will double every two years, according to Moore’s Law, a key scaling concept for electronic devices, guaranteeing increasing processing power—but there is a limit.
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The number of transistors on a chip will double every two years, according to Moore’s Law, a key scaling concept for electronic devices, guaranteeing increasing processing power—but there is a limit.
Today's most advanced chips house nearly 50 billion transistors within a space no larger than your thumbnail. The task of cramming even more transistors into th
Today's most advanced chips house nearly 50 billion transistors within a space no larger than your thumbnail. The task of cramming even more transistors into th
<p>In a study published today (Jan. 10) in the journal <a href="https://www.nature.com/articles/s41586-023-06860-5">Nature</a>, Saptarshi Das, an associate professor of engineering science and mechanics and co-corresponding author of the study, and his team suggest a way to fit more transistors on a chip by seamlessly implementing 3D integration with 2D materials.</p>
The next generation of 2D semiconductor materials doesn't like what it sees when it looks in the mirror. Penn State researchers may have solved this issue.