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Publicado por Bod - Books on Demand 9/8/2017, 2017
ISBN 10: 3744810550 ISBN 13: 9783744810555
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Añadir al carritoPaperback or Softback. Condición: New. Towards Reconfigurable Electronics by Functionality-Enhanced Circuits and Germanium Nanowire Devices. Book.
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Publicado por Books On Demand 2017-09-08, 2017
ISBN 10: 3744810550 ISBN 13: 9783744810555
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Añadir al carritoTaschenbuch. Condición: Neu. Towards Reconfigurable Electronics by Functionality-Enhanced Circuits and Germanium Nanowire Devices | Jens Trommer | Taschenbuch | 164 S. | Englisch | 2017 | Books on Demand GmbH | EAN 9783744810555 | Verantwortliche Person für die EU: BoD - Books on Demand, In de Tarpen 42, 22848 Norderstedt, info[at]bod[dot]de | Anbieter: preigu.
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Añadir al carritoPAP. Condición: New. New Book. Shipped from UK. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000.
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Publicado por Books On Demand Sep 2017, 2017
ISBN 10: 3744810550 ISBN 13: 9783744810555
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Añadir al carritoTaschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -For more than five decades digital integrated circuits have become more efficient with every technology generation. This trend has been mainly driven by the downscaling of the transistor size, which goes hand in hand with a lower cost per function. However, with classical miniaturization reaching towards the size of a few atoms, the quest for alternative solutions to increase the system functionality without the need for scaling down device dimension has risen. One particular promising solution to this question are polarity-controllable transistors, which merge the electrical properties of unipolar n- and p-type field effect transistors into a single universal device type. The novel device concept relies on the unique properties of sharp gated Schottky junctions within semiconductor nano-channels to adjust the charge carrier flow. A volatile electrical programming signal is used to set the devices into a state of either electron or hole transport. It is envisioned that these devices can be employed to enable a fine-grain dynamical reconfiguration of circuit elements, which would provide a higher functionality with the identical amount of hardware building blocks. The scope of this work is to advance the state of the art on polarity-controllable devices on the material, device and circuit level. 164 pp. Englisch.
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Añadir al carritoCondición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. For more than five decades digital integrated circuits have become more efficient with every technology generation. This trend has been mainly driven by the downscaling of the transistor size, which goes hand in hand with a lower cost per function. However,.
Idioma: Inglés
Publicado por Bod - Books On Demand, Bod - Books On Demand, 2017
ISBN 10: 3744810550 ISBN 13: 9783744810555
Librería: AHA-BUCH GmbH, Einbeck, Alemania
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Añadir al carritoTaschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - For more than five decades digital integrated circuits have become more efficient with every technology generation. This trend has been mainly driven by the downscaling of the transistor size, which goes hand in hand with a lower cost per function. However, with classical miniaturization reaching towards the size of a few atoms, the quest for alternative solutions to increase the system functionality without the need for scaling down device dimension has risen. One particular promising solution to this question are polarity-controllable transistors, which merge the electrical properties of unipolar n- and p-type field effect transistors into a single universal device type. The novel device concept relies on the unique properties of sharp gated Schottky junctions within semiconductor nano-channels to adjust the charge carrier flow. A volatile electrical programming signal is used to set the devices into a state of either electron or hole transport. It is envisioned that these devices can be employed to enable a fine-grain dynamical reconfiguration of circuit elements, which would provide a higher functionality with the identical amount of hardware building blocks. The scope of this work is to advance the state of the art on polarity-controllable devices on the material, device and circuit level.