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Fundamentals of Nanoscaled Field Effect Transistors gives comprehensive coverage of the fundamental physical principles and theory behind;
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Cross-linked Polymers as Dielectrics for Organic Field-effect Transistors is een boek van Cuvillier Verlag;
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optoelectronic devices. It covers organic field-effect and organic electroluminescent materials and devices, organic photonics, materials and devices, as;
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(HBTs), metal-semiconductor field-effect transistors (MESFETs), and the heterojunction field-effect transistors (HFETs), which include the high;
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This book discusses modern-day Metal Oxide Semiconductor Field Effect Transistors (MOSFETs) and future trends of transistor devices. This;
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radiation with matter. This book addresses the fundamentals and application of these processes, from thin films to field effect transistors.;
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comprises four chapters devoted to elementary devices, i.e. diodes, bipolar junction transistors and related devices, field effect transistors and;
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-effect transistors. Finally, a short introduction to the important field of circuit simulation completes the book. The latest vehicles are;
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properties and self-consistent simulations of carbon nanotubes in transistor technology; the future developments in the nanowire field-effect;
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chapters devoted to elementary devices, i.e. diodes, bipolar transistors and related devices, field effect transistors and amplifiers. In each;
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, radio frequency identification cards, and sensors. Exploring one class of OTFTs, Organic Field-Effect Transistors provides a comprehensive;
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, bipolar junction transistors, field-effect transistors (FETs), operational amplifiers, power amplifiers, and feedback circuits. With abundant;
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An introduction to solid state device including field effect and bipolar transistors. Contents: 1) Conductors, Semiconductors and Diodes. 2;
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-semiconductor contacts, and metal-insulator-semiconductor (MIS) capacitors. Part III examines bipolar transistors, MOSFETs (MOS field-effect transistors;
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versatile in this era of internet-of-things (IoT) due in large part to the scaling of metal-oxide semiconductor field-effect transistors (MOSFETs;
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the performance of graphene field-effect transistors (FETs) using macroscopic descriptions that are classical for semiconductor devices. It;
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these challenges, alternative resources are required to advance electronics further into the nanoscale domain. Carbon nanotube field-effect;
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. In search of non-classical devices and related technologies, both carbon nanotube-based field-effect transistors and metallic carbon nanotube;
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. The last chapter is devoted to the nano-biotechnology application of field-effect transistors.;
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Nanowire Field Effect Transistor: Basic Principles and Applications places an emphasis on the application aspects of nanowire field effect;
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During the last decade, there has been a great deal of interest in TFETs. To the best authors' knowl;...
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The first book on the topic, this is a comprehensive introduction to the modeling and design of junctionless field effect transistors (FETs;
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) and FETs (Field Effect Transistors), how these relate to processing choices, and special processing issues such as wet oxidation, which are;
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This book provides the reader with some insights into the many styles of field effect transistors (FETs) being used. It offers a;
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-conductor devices, covering diodes and bipolar transistors, opto-electronic devices, junction field-effect transistors, and MOS transistors;
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