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The text provides a comprehensive exploration of the transitions occurring in the field-effect transistor technology, covering the historical evolution, current advancements, and future trends.
Features
Highlights the significance of field-effect transistors in VLSI and post-complementary metal-oxide-semiconductor design strategies. Discusses design challenges, different modeling aspects of field-effect transistors, and emerging materials in semiconductor design. Showcases the importance of simulation in forecasting device behavior, enhancing performance, and investigating novel device designs. Covers topics such as quantum computing, device simulation process on technology computer-aided design, carbon nanotubes, and organic field-effect transistors.
The text is primarily written for senior undergraduates, graduate students, and academic researchers in the fields of electrical engineering, electrical and communications engineering, materials science, nanoscience, and nanotechnology.
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The text provides a comprehensive exploration of the transitions occurring in the field-effect transistor technology, covering the historical evolution, current advancements, and future trends.
Features
Highlights the significance of field-effect transistors in VLSI and post-complementary metal-oxide-semiconductor design strategies. Discusses design challenges, different modeling aspects of field-effect transistors, and emerging materials in semiconductor design. Showcases the importance of simulation in forecasting device behavior, enhancing performance, and investigating novel device designs. Covers topics such as quantum computing, device simulation process on technology computer-aided design, carbon nanotubes, and organic field-effect transistors.
The text is primarily written for senior undergraduates, graduate students, and academic researchers in the fields of electrical engineering, electrical and communications engineering, materials science, nanoscience, and nanotechnology.