Cantitate/Preț
Produs

Neuromorphic Circuits for Nanoscale Devices

Autor Pinaki Mazumder, Yalcin Yilmaz, Idongesit Ebong
en Limba Engleză Paperback – 21 oct 2024
Nanoscale devices attracted significant research effort from the industry and academia due to their operation principals being based on different physical properties which provide advantages in the design of certain classes of circuits over conventional CMOS transistors. Neuromorphic Circuits for Nanoscale Devices contains recent research papers presented in various international conferences and journals to provide insight into how the operational principles of the nanoscale devices can be utilized for the design of neuromorphic circuits for various applications of non-volatile memory, neural network training/learning, and image processing. The topics discussed in the book include:Nanoscale Crossbar Memory DesignQ-Learning and Value Iteration using Nanoscale DevicesImage Processing and Computer Vision Applications for Nanoscale DevicesNanoscale Devices based Cellular Nonlinear/Neural Networks
Citește tot Restrânge

Toate formatele și edițiile

Toate formatele și edițiile Preț Express
Paperback (1) 28570 lei  3-5 săpt.
  River Publishers – 21 oct 2024 28570 lei  3-5 săpt.
Hardback (1) 63572 lei  3-5 săpt. +000 lei  6-12 zile
  River Publishers – 31 mar 2019 63572 lei  3-5 săpt. +000 lei  6-12 zile

Preț: 28570 lei

Preț vechi: 36117 lei
-21%

Puncte Express: 429

Preț estimativ în valută:
5056 5909$ 4390£

Carte disponibilă

Livrare economică 30 ianuarie-13 februarie

Preluare comenzi: 021 569.72.76

Specificații

ISBN-13: 9788770043632
ISBN-10: 8770043639
Pagini: 406
Dimensiuni: 156 x 234 x 21 mm
Greutate: 0.45 kg
Ediția:1
Editura: River Publishers
Colecția River Publishers

Public țintă

Academic

Cuprins

Neuromorphic Circuits for Nanoscale Devices

Notă biografică

Pinaki Mazumder, Yalcin Yilmaz, Idongesit Ebong

Descriere

Neuromorphic Circuits for Nanoscale Devices contains recent research papers presented in various international conferences and journals to provide insight into how the operational principles of the nanoscale devices can be utilized for the design of neuromorphic circuits for various applications of non-volatile memory, and image processing.