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Transistors leverage multiple PN junctions. In a BJT, for example, an NPN transistor has a thin P-type base between an N-type emitter and N-type collector.
Transistors are everywhere, powering our computers, everyday gadgets like smartphones, and even spacecraft.
Graphene Field Effect Transistors (GFETs) show promise for future electronics. They offer high-speed performance, enhanced sensitivity, and applications in biosensing, flexible devices, and more.
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How the Transistor Was Engineered Against All Odds
The transistor is the tiny invention that powers the modern world - but its creation was anything but simple. This video explores how a small group of engineers overcame impossible challenges to ...
Transistor advances have gone through several stages over the years, each driven by the need to meet new demands in terms of size, performance, and power consumption. Explore ...
When does the golden rule of semiconductor scaling finally break? How small can a transistor be? And what in the world is "dark silicon?" Read on for an overview of Moore's Law.
The world is heading into the age of gate-all-around (GAA) or nanosheet transistors. While it was never going to save Moore’s Law by itself, the new device is opening the door ...
The transistor’s story is one of innovation and immigration Mohamed Atalla of Egypt and Dawon Kahng of Korea are responsible for the technology that helped harness the transistor’s power.
Transistors are one of the major building blocks of modern electronic devices. They allow us to regulate current in electronics which makes most of what we do regarding tech, including PC gaming ...
Transistor Aging Intensifies At 10/7nm And Below Device degradation becomes limiting factor in IC scaling, and a significant challenge in advanced SoCs.
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