Advanced MOS Devices and their Circuit Applications (Paperback)
Ankur Beohar
Venduto da CitiRetail, Stevenage, Regno Unito
Venditore AbeBooks dal 29 giugno 2022
Nuovi - Brossura
Condizione: Nuovo
Quantità: 1 disponibili
Aggiungere al carrelloVenduto da CitiRetail, Stevenage, Regno Unito
Venditore AbeBooks dal 29 giugno 2022
Condizione: Nuovo
Quantità: 1 disponibili
Aggiungere al carrelloPaperback. This text comprehensively discusses the advanced MOS devices and their circuit applications with reliability concerns. Further, an energy-efficient Tunnel FET-based circuit application will be investigated in terms of the output voltage, power efficiency, energy consumption, and performances using the device circuit co-design approach.The book:Discusses advanced MOS devices and their circuit design for energy- efficient systems on chips (SoCs)Covers MOS devices, materials, and related semiconductor transistor technologies for the next-generation ultra-low-power applicationsExamines the use of field-effect transistors for biosensing circuit applications and covers reliability design considerations and compact modeling of advanced low-power MOS transistorsIncludes research problem statements with specifications and commercially available industry data in the appendixPresents Verilog-A model-based simulations for circuit analysisThe volume provides detailed discussions of DC and analog/RF characteristics, effects of trap-assisted tunneling (TAT) for reliability analysis, spacer-underlap engineering methodology, doping profile analysis, and work-function techniques. It further covers novel MOS devices including FinFET, Graphene field-effect transistor, Tunnel FETS, and Flash memory devices. It will serve as an ideal design book for senior undergraduate students, graduate students, and academic researchers in the fields including electrical engineering, electronics and communication engineering, computer engineering, materials science, nanoscience, and nanotechnology. The text comprehensively discusses the advanced MOS devices and their circuit applications with reliability concerns. Further, an energy-efficient Tunnel FET-based circuit application will investigate in terms of the output voltage, power efficiency, energy consumption, and performances using the device circuit co-design approach. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Codice articolo 9781032670263
This text comprehensively discusses the advanced MOS devices and their circuit applications with reliability concerns. Further, an energy-efficient Tunnel FET-based circuit application will be investigated in terms of the output voltage, power efficiency, energy consumption, and performances using the device circuit co-design approach.
The book:
The volume provides detailed discussions of DC and analog/RF characteristics, effects of trap-assisted tunneling (TAT) for reliability analysis, spacer-underlap engineering methodology, doping profile analysis, and work-function techniques. It further covers novel MOS devices including FinFET, Graphene field-effect transistor, Tunnel FETS, and Flash memory devices. It will serve as an ideal design book for senior undergraduate students, graduate students, and academic researchers in the fields including electrical engineering, electronics and communication engineering, computer engineering, materials science, nanoscience, and nanotechnology.
Dr. Ankur Beohar (Senior member IEEE) obtaineda PhD degree in electrical engineering from the Indian Institute of Technology (IIT), Indore, MP, India, in 2018. After getting his PhD, he worked as a postdoctoral fellow in the Device Modeling Group, IISER, Bhopal, and then as a research scientist for one year under awarded Scientist Pool scheme of Council of Scientific and Industrial Research (CSIR), New Delhi. Currently, he is working as an assistant professor at Vellore Institute of Technology (VIT) Bhopal. He is an IEEE Senior Member and a Secretary of IEEE, Circuit and System Society, MP section, India. He completed his M.Tech degree in VLSI and Embedded System Design from MANIT Bhopal and B.Tech (Electronics) from RGPV University Bhopal in 2010 and 2005. He has a research and academic work experience of more than 13 years. He has a renowned research experience in the field of low-power device circuit design Memory Circuit Design and Reliability. His current research is related to new-generation innovative devices, such as optimization of gate all around (GAA)-Tunnel field effect transistor (TFET) with spacer engineering and its circuit applications. Currently, he is working in the research project sanctioned by the Science and Engineering Research Board (SERB) under the Teachers Associateship Research Excellence (TARE) scheme. Dr. Beohar has published more than 35 research publications in various peer- reviewed international conferences and SCI journals. Along with this, he has reviewed more than 100+ journal and conferences articles.
Dr. Abhishek Kumar Upadhyay obtained a PhD in electrical engineering from the Indian Institute of Technology (IIT), Indore, MP, India, in 2019. After getting his PhD, he worked for one year as a postdoctoral fellow in the Model Group, Material to System Integration Laboratory, University of Bordeaux, France, and then as a staff scientist in the Chair of Electronics Devices and Integrated Circuits at Technische Universität Dresden, Germany, for two years. Currently he is working as an R&D rngineer in X-FAB GmbH, Dresden, Germany. He is the author of several research articles.
Dr. Ribu Mathew holds a doctorate degree in electronics engineering from Vellore Institute of Technology (VIT) University, Chennai Campus. A gold medallist in his post graduation, Dr. Mathew completed his MTech in VLSI design and BTech in electronics and communication engineering. In his doctoral research work, he has contributed in the field of design, modelling, and fabrication of NEMS technology piezoresistive readout-based nano cantilever sensors for chemical and biological sensing applications. In addition to the compu- tational knowledge in industrial standard NEMS devices, he has gained experience in NEMS/IC layout tools and clean room fabrication technologies from CeNSE, IISc Bangalore. He has published several research papers in reputed international journals and conferences. His research areas include the design, modelling, and fabrication of MEMS/NEMS technology- based sensor and actuator systems, especially micro/nano cantilever and diaphragm-based devices, bio-MEMS, analog/RF IC design, SoC design, and device modeling. Currently he is working as an Associate Professor, MAHE, MANIPAL University, Karnataka.
Professor Santosh Kumar Vishvakarma received the BSc in electronics from the University of Gorakhpur, Gorakhpur, in 1999, the MSc in electronics from Devi Ahilya Vishwavidyalaya, Indore, India, in 2001, the MTech in microelectronics from Punjab University, Chandigarh, India, in 2003, and the PhD in microelectronics and VLSI from the Department of Electronics and Communication Engineering, Indian Institute of Technology Roorkee, India, in 2010. From 2009 to 2010, he was with University Graduate Center, Kjeller, Norway, as a postdoctoral fellow under European Union COMON project. Professor Vishvakarma is with the Department of Electrical Engineering, Indian Institute of Technology Indore, MP, India as a professor at IIT Indore. He is leading the Nanoscale Devices and VLSI Circuit and System Design (NSDCS) Laboratory since 2010. He is engaged with teaching and research in the areas of:
He has supervised a total of seventeen PhD students, and currently six students are working with his group. He has authored or co-authored more than 175 research papers in peer-reviewed international journals and conferences. He was also granted 04 Indian Patent from IIT Indore and has thirteen sponsored research projects. He is a senior member of IEEE, professional member of VLSI Society of India, associate member of Institute of Nanotechnology, and life member of Indian Microelectronics Society (IMS), India.
Le informazioni nella sezione "Su questo libro" possono far riferimento a edizioni diverse di questo titolo.
Visita la pagina della libreria
Orders can be returned within 30 days of receipt.
Se sei un consumatore, puoi esercitare il tuo diritto di recesso seguendo le istruzioni riportate di seguito. Per "consumatore" si intende qualsiasi persona fisica che agisca per fini che non rientrano nel quadro della sua attività commerciale, industriale, artigianale o professionale.
Informazioni relative al diritto di recesso
Diritto di recesso
Hai il diritto di recedere dal presente contratto, senza indicarne le ragioni, entro 14 giorni.
Il periodo di recesso scade dopo 14 giorni dal giorno in cui
tu acquisisci, o un terzo designato diverso dal vettore e da te acquisisce, il possesso fisico dell'ultimo bene o l'ultimo lotto o pezzo.
Per esercitare il diritto di recesso, sei tenuto a informare CitiRetail, ABC Books c/o International Logistics, Unit 2D Gatwick Gate Industrial Estate, RH11 0TG, Lowfield Heath, United Kingdom, 44 020 3290 3457, della tua decisione di recedere dal presente contratto tramite una dichiarazione esplicita (ad esempio lettera inviata per posta, fax o posta elettronica). A tal fine puoi utilizzare il modulo tipo di recesso, ma non e' obbligatorio. Puoi anche compilare e inviare elettronicamente il modulo tipo di recesso o qualsiasi altra esplicita dichiarazione sul nostro sito web, dalla sezione "Ordini" nel "Mio Account". Nel caso scegliessi questa opzione, ti trasmetteremo senza indugio una conferma di ricevimento su un supporto durevole (ad esempio per posta elettronica).
Per rispettare il termine di recesso, é sufficiente inviare la comunicazione relativa all'esercizio del diritto di recesso prima della scadenza del periodo di recesso.
Effetti del recesso
Se recedi dal presente contratto, ti saranno rimborsati tutti i pagamenti che hai effettuato a nostro favore, compresi i costi di consegna (ad eccezione dei costi supplementari derivanti dalla tua eventuale scelta di un tipo di consegna diverso dal tipo meno costoso di consegna standard da noi offerto). Potremo trattenere dal rimborso le somme derivanti da una diminuzione del valore del prodotto risultante da una tua non necessaria manipolazione.
I rimborsi verranno effettuati senza indebito ritardo e in ogni caso non oltre 14 giorni dal giorno in cui siamo stati informati della tua decisione di recedere dal presente contratto.
Detti rimborsi saranno effettuati utilizzando lo stesso mezzo di pagamento da te usato per la transazione iniziale, salvo che tu non abbia espressamente convenuto altrimenti; in ogni caso, non dovrai sostenere alcun costo quale conseguenza di tale rimborso. Il rimborso può essere sospeso fino al ricevimento dei beni oppure fino all'avvenuta dimostrazione da parte tua di aver rispedito i beni, se precedente.
Ti preghiamo di rispedire i beni o di consegnarli a CitiRetail, ABC Books c/o International Logistics, Unit 2D Gatwick Gate Industrial Estate, RH11 0TG, Lowfield Heath, United Kingdom, 44 020 3290 3457, senza indebiti ritardi e in ogni caso entro 14 giorni dal giorno in cui hai comunicato il tuo recesso dal presente contratto. Il termine è rispettato se rispedisci i beni prima della scadenza del periodo di 14 giorni. I costi diretti della restituzione dei beni saranno a tuo carico. Sei responsabile solo della diminuzione del valore dei beni risultante da una manipolazione del bene diversa da quella necessaria per stabilire la natura, le caratteristiche e il funzionamento dei beni.
Eccezioni al diritto di recesso
Il diritto di recesso non si applica in caso di:
Modulo di recesso tipo
(Compilare e restituire il presente modulo solo se si desidera recedere dal contratto)
Destinatario: (CitiRetail, ABC Books c/o International Logistics, Unit 2D Gatwick Gate Industrial Estate, RH11 0TG, Lowfield Heath, United Kingdom, 44 020 3290 3457)
Con la presente io/noi (*) notifichiamo il recesso dal mio/nostro (*) contratto di vendita dei seguenti beni/servizi (*)
Ordinato il (*) /ricevuto il (*)
Nome del/dei consumatore(i)
Indirizzo del/dei consumatore(i)
Firma del/dei consumatore(i) (solo se il presente modulo è notificato in versione cartacea)
Data
(*) Cancellare la dicitura inutile.
Please note that titles are dispatched from our US, Canadian or Australian warehouses. Delivery times specified in shipping terms. Orders ship within 2 business days. Delivery to your door then takes 7-14 days.
| Quantità dell?ordine | Da 7 a 60 giorni lavorativi | Da 7 a 14 giorni lavorativi |
|---|---|---|
| Primo articolo | EUR 41.97 | EUR 41.97 |
I tempi di consegna sono stabiliti dai venditori e variano in base al corriere e al paese. Gli ordini che devono attraversare una dogana possono subire ritardi e spetta agli acquirenti pagare eventuali tariffe o dazi associati. I venditori possono contattarti in merito ad addebiti aggiuntivi dovuti a eventuali maggiorazioni dei costi di spedizione dei tuoi articoli.