Hot-carrier Reliability of Silicon-on-insulator (SOI) MOSFETs and Applications to Non-volatile Memories

Hot-carrier Reliability of Silicon-on-insulator (SOI) MOSFETs and Applications to Non-volatile Memories
Title Hot-carrier Reliability of Silicon-on-insulator (SOI) MOSFETs and Applications to Non-volatile Memories PDF eBook
Author Shankar P. Sinha
Publisher
Pages 254
Release 1997
Genre
ISBN

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Material and Reliability Issues in Fully Depleted Silicon on Insulator (SOI) MOSFETs

Material and Reliability Issues in Fully Depleted Silicon on Insulator (SOI) MOSFETs
Title Material and Reliability Issues in Fully Depleted Silicon on Insulator (SOI) MOSFETs PDF eBook
Author Shankar Prasad Sinha
Publisher
Pages 156
Release 1994
Genre
ISBN

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American Doctoral Dissertations

American Doctoral Dissertations
Title American Doctoral Dissertations PDF eBook
Author
Publisher
Pages 872
Release 1996
Genre Dissertation abstracts
ISBN

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Japanese Journal of Applied Physics

Japanese Journal of Applied Physics
Title Japanese Journal of Applied Physics PDF eBook
Author
Publisher
Pages 1538
Release 2003
Genre Physics
ISBN

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Drain Leakage and Hot Carrier Reliability of SOI MOSFET's

Drain Leakage and Hot Carrier Reliability of SOI MOSFET's
Title Drain Leakage and Hot Carrier Reliability of SOI MOSFET's PDF eBook
Author Xuejun Zhao
Publisher
Pages 256
Release 2000
Genre
ISBN

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Hot Carrier Design Considerations for MOS Devices and Circuits

Hot Carrier Design Considerations for MOS Devices and Circuits
Title Hot Carrier Design Considerations for MOS Devices and Circuits PDF eBook
Author Cheng Wang
Publisher Springer
Pages 360
Release 1992-07-02
Genre Juvenile Nonfiction
ISBN

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As device dimensions decrease, hot-carrier effects, which are due mainly to the presence of a high electric field inside the device, are becoming a major design concern. On the one hand, the detrimental effects-such as transconductance degradation and threshold shift-need to be minimized or, if possible, avoided altogether. On the other hand, performance such as the programming efficiency of nonvolatile memories or the carrier velocity inside the devices-need to be maintained or improved through the use of submicron technologies, even in the presence of a reduced power supply. As a result, one of the major challenges facing MOS design engineers today is to harness the hot-carrier effects so that, without sacrificing product performance, degradation can be kept to a minimum and a reli able design obtained. To accomplish this, the physical mechanisms re sponsible for the degradations should first be experimentally identified and characterized. With adequate models thus obtained, steps can be taken to optimize the design, so that an adequate level of quality assur ance in device or circuit performance can be achieved. This book ad dresses these hot-carrier design issues for MOS devices and circuits, and is used primarily as a professional guide for process development engi neers, device engineers, and circuit designers who are interested in the latest developments in hot-carrier degradation modeling and hot-carrier reliability design techniques. It may also be considered as a reference book for graduate students who have some research interests in this excit ing, yet sometime controversial, field.

Electrical & Electronics Abstracts

Electrical & Electronics Abstracts
Title Electrical & Electronics Abstracts PDF eBook
Author
Publisher
Pages 1904
Release 1997
Genre Electrical engineering
ISBN

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