VLSI-Design of Non-Volatile Memories

VLSI-Design of Non-Volatile Memories
Author :
Publisher : Springer Science & Business Media
Total Pages : 616
Release :
ISBN-10 : 354020198X
ISBN-13 : 9783540201984
Rating : 4/5 (8X Downloads)

Synopsis VLSI-Design of Non-Volatile Memories by : Giovanni Campardo

VLSI-Design for Non-Volatile Memories is intended for electrical engineers and graduate students who want to enter into the integrated circuit design world. Non-volatile memories are treated as an example to explain general design concepts. Practical illustrative examples of non-volatile memories, including flash types, are showcased to give insightful examples of the discussed design approaches. A collection of photos is included to make the reader familiar with silicon aspects. Throughout all parts of this book, the authors have taken a practical and applications-driven point of view, providing a comprehensive and easily understood approach to all the concepts discussed. Giovanni Campardo and Rino Micheloni have a solid track record of leading design activities at the STMicroelectronics Flash Division. David Novosel is President and founder of Intelligent Micro Design, Inc., Pittsburg, PA.

Error Correction Codes for Non-Volatile Memories

Error Correction Codes for Non-Volatile Memories
Author :
Publisher : Springer Science & Business Media
Total Pages : 338
Release :
ISBN-10 : 9781402083914
ISBN-13 : 1402083912
Rating : 4/5 (14 Downloads)

Synopsis Error Correction Codes for Non-Volatile Memories by : Rino Micheloni

Nowadays it is hard to find an electronic device which does not use codes: for example, we listen to music via heavily encoded audio CD's and we watch movies via encoded DVD's. There is at least one area where the use of encoding/decoding is not so developed, yet: Flash non-volatile memories. Flash memory high-density, low power, cost effectiveness, and scalable design make it an ideal choice to fuel the explosion of multimedia products, like USB keys, MP3 players, digital cameras and solid-state disk. In ECC for Non-Volatile Memories the authors expose the basics of coding theory needed to understand the application to memories, as well as the relevant design topics, with reference to both NOR and NAND Flash architectures. A collection of software routines is also included for better understanding. The authors form a research group (now at Qimonda) which is the typical example of a fruitful collaboration between mathematicians and engineers.

Logic Non-volatile Memory: The Nvm Solutions For Ememory

Logic Non-volatile Memory: The Nvm Solutions For Ememory
Author :
Publisher : World Scientific
Total Pages : 319
Release :
ISBN-10 : 9789814460927
ISBN-13 : 9814460923
Rating : 4/5 (27 Downloads)

Synopsis Logic Non-volatile Memory: The Nvm Solutions For Ememory by : Charles Ching-hsiang Hsu

Would you like to add the capabilities of the Non-Volatile Memory (NVM) as a storage element in your silicon integrated logic circuits, and as a trimming sector in your high voltage driver and other silicon integrated analog circuits? Would you like to learn how to embed the NVM into your silicon integrated circuit products to improve their performance?This book is written to help you.It provides comprehensive instructions on fabricating the NVM using the same processes you are using to fabricate your logic integrated circuits. We at our eMemory company call this technology the embedded Logic NVM. Because embedded Logic NVM has simple fabrication processes, it has replaced the conventional NVM in many traditional and new applications, including LCD driver, LED driver, MEMS controller, touch panel controller, power management unit, ambient and motion sensor controller, micro controller unit (MCU), security ID setting tag, RFID, NFC, PC camera controller, keyboard controller, and mouse controller. The recent explosive growth of the Logic NVM indicates that it will soon dominate all NVM applications. The embedded Logic NVM was invented and has been implemented in users' applications by the 200+ employees of our eMemory company, who are also the authors and author-assistants of this book.This book covers the following Logic NVM products: One Time Programmable (OTP) memory, Multiple Times Programmable (MTP) memory, Flash memory, and Electrically Erasable Programmable Read Only Memory (EEPROM). The fundamentals of the NVM are described in this book, which include: the physics and operations of the memory transistors, the basic building block of the memory cells and the access circuits.All of these products have been used continuously by the industry worldwide. In-depth readers can attain expert proficiency in the implementation of the embedded Logic NVM technology in their products.

Vlsi-Design Of Non-Volatile Memories

Vlsi-Design Of Non-Volatile Memories
Author :
Publisher :
Total Pages : 581
Release :
ISBN-10 : 8181288076
ISBN-13 : 9788181288073
Rating : 4/5 (76 Downloads)

Synopsis Vlsi-Design Of Non-Volatile Memories by : Campardo

Silicon Non-Volatile Memories

Silicon Non-Volatile Memories
Author :
Publisher : John Wiley & Sons
Total Pages : 222
Release :
ISBN-10 : 9781118617809
ISBN-13 : 1118617800
Rating : 4/5 (09 Downloads)

Synopsis Silicon Non-Volatile Memories by : Barbara de Salvo

Semiconductor flash memory is an indispensable component of modern electronic systems which has gained a strategic position in recent decades due to the progressive shift from computing to consumer (and particularly mobile) products as revenue drivers for Integrated Circuits (IC) companies. This book provides a comprehensive overview of the different technological approaches currently being studied to fulfill future memory requirements. Two main research paths are identified and discussed. Different "evolutionary paths" based on the use of new materials (such as silicon nanocrystals for storage nodes and high-k insulators for active dielectrics) and of new transistor structures (such as multi-gate devices) are investigated in order to extend classical floating gate technology to the 32 nm node. "Disruptive paths" based on new storage mechanisms or new technologies (such as phase-change devices, polymer or molecular cross-bar memories) are also covered in order to address 22 nm and smaller IC generations. Finally, the main factors at the origin of these phenomena are identified and analyzed, providing pointers on future research activities and developments in this area.

Emerging Non-Volatile Memories

Emerging Non-Volatile Memories
Author :
Publisher : Springer
Total Pages : 280
Release :
ISBN-10 : 9781489975379
ISBN-13 : 1489975373
Rating : 4/5 (79 Downloads)

Synopsis Emerging Non-Volatile Memories by : Seungbum Hong

This book is an introduction to the fundamentals of emerging non-volatile memories and provides an overview of future trends in the field. Readers will find coverage of seven important memory technologies, including Ferroelectric Random Access Memory (FeRAM), Ferromagnetic RAM (FMRAM), Multiferroic RAM (MFRAM), Phase-Change Memories (PCM), Oxide-based Resistive RAM (RRAM), Probe Storage, and Polymer Memories. Chapters are structured to reflect diffusions and clashes between different topics. Emerging Non-Volatile Memories is an ideal book for graduate students, faculty, and professionals working in the area of non-volatile memory. This book also: Covers key memory technologies, including Ferroelectric Random Access Memory (FeRAM), Ferromagnetic RAM (FMRAM), and Multiferroic RAM (MFRAM), among others. Provides an overview of non-volatile memory fundamentals. Broadens readers’ understanding of future trends in non-volatile memories.

VLSI Memory Chip Design

VLSI Memory Chip Design
Author :
Publisher : Springer Science & Business Media
Total Pages : 504
Release :
ISBN-10 : 9783662044780
ISBN-13 : 3662044781
Rating : 4/5 (80 Downloads)

Synopsis VLSI Memory Chip Design by : Kiyoo Itoh

A systematic description of microelectronic device design. Topics range from the basics to low-power and ultralow-voltage designs, subthreshold current reduction, memory subsystem designs for modern DRAMs, and various on-chip supply-voltage conversion techniques. It also covers process and device issues as well as design issues relating to systems, circuits, devices and processes, such as signal-to-noise and redundancy.

Power Aware Design Methodologies

Power Aware Design Methodologies
Author :
Publisher : Springer Science & Business Media
Total Pages : 533
Release :
ISBN-10 : 9781402071522
ISBN-13 : 1402071523
Rating : 4/5 (22 Downloads)

Synopsis Power Aware Design Methodologies by : Massoud Pedram

Presents various aspects of power-aware design methodologies, covering the design hierarchy from technology, circuit logic, and architectural levels up to the system layer. This book includes discussion of techniques and methodologies for improving the power efficiency of CMOS circuits, systems on chip, microelectronic systems, and so on.

Embedded Flash Memory for Embedded Systems: Technology, Design for Sub-systems, and Innovations

Embedded Flash Memory for Embedded Systems: Technology, Design for Sub-systems, and Innovations
Author :
Publisher : Springer
Total Pages : 253
Release :
ISBN-10 : 9783319553061
ISBN-13 : 3319553062
Rating : 4/5 (61 Downloads)

Synopsis Embedded Flash Memory for Embedded Systems: Technology, Design for Sub-systems, and Innovations by : Hideto Hidaka

This book provides a comprehensive introduction to embedded flash memory, describing the history, current status, and future projections for technology, circuits, and systems applications. The authors describe current main-stream embedded flash technologies from floating-gate 1Tr, floating-gate with split-gate (1.5Tr), and 1Tr/1.5Tr SONOS flash technologies and their successful creation of various applications. Comparisons of these embedded flash technologies and future projections are also provided. The authors demonstrate a variety of embedded applications for auto-motive, smart-IC cards, and low-power, representing the leading-edge technology developments for eFlash. The discussion also includes insights into future prospects of application-driven non-volatile memory technology in the era of smart advanced automotive system, such as ADAS (Advanced Driver Assistance System) and IoE (Internet of Everything). Trials on technology convergence and future prospects of embedded non-volatile memory in the new memory hierarchy are also described. Introduces the history of embedded flash memory technology for micro-controller products and how embedded flash innovations developed; Includes comprehensive and detailed descriptions of current main-stream embedded flash memory technologies, sub-system designs and applications; Explains why embedded flash memory requirements are different from those of stand-alone flash memory and how to achieve specific goals with technology development and circuit designs; Describes a mature and stable floating-gate 1Tr cell technology imported from stand-alone flash memory products - that then introduces embedded-specific split-gate memory cell technologies based on floating-gate storage structure and charge-trapping SONOS technology and their eFlash sub-system designs; Describes automotive and smart-IC card applications requirements and achievements in advanced eFlash beyond 4 0nm node.

Embedded Memories for Nano-Scale VLSIs

Embedded Memories for Nano-Scale VLSIs
Author :
Publisher : Springer
Total Pages : 0
Release :
ISBN-10 : 1441946942
ISBN-13 : 9781441946942
Rating : 4/5 (42 Downloads)

Synopsis Embedded Memories for Nano-Scale VLSIs by : Kevin Zhang

Kevin Zhang Advancement of semiconductor technology has driven the rapid growth of very large scale integrated (VLSI) systems for increasingly broad applications, incl- ing high-end and mobile computing, consumer electronics such as 3D gaming, multi-function or smart phone, and various set-top players and ubiquitous sensor and medical devices. To meet the increasing demand for higher performance and lower power consumption in many different system applications, it is often required to have a large amount of on-die or embedded memory to support the need of data bandwidth in a system. The varieties of embedded memory in a given system have alsobecome increasingly more complex, ranging fromstatictodynamic and volatile to nonvolatile. Among embedded memories, six-transistor (6T)-based static random access memory (SRAM) continues to play a pivotal role in nearly all VLSI systems due to its superior speed and full compatibility with logic process technology. But as the technology scaling continues, SRAM design is facing severe challenge in mainta- ing suf?cient cell stability margin under relentless area scaling. Meanwhile, rapid expansion in mobile application, including new emerging application in sensor and medical devices, requires far more aggressive voltage scaling to meet very str- gent power constraint. Many innovative circuit topologies and techniques have been extensively explored in recent years to address these challenges.