DocumentCode
1380528
Title
Comparative Study of Quick Electron Detrapping and Random Telegraph Signal and Their Dependences on Random Discrete Dopant in Sub-40-nm NAND Flash Memory
Author
Kim, Taehoon ; He, Deping ; Porter, Roger ; Rivers, Doyle ; Kessenich, Jeff ; Goda, Akira
Author_Institution
Micron Technol., Inc., Boise, ID, USA
Volume
31
Issue
2
fYear
2010
Firstpage
153
Lastpage
155
Abstract
In sub-40-nm flash memory, random discrete dopant (RDD) effect modulates post program/erase (P/E) cycling Vt instabilities through quick electron detrapping (QED) as well as random telegraph signal (RTS). In this letter, for the first time, we discuss the QED phenomenon and its physical origin by comparison with RTS phenomenon. P/E cycling stress not only aggravates the RTS but also generates the new phenomenon of QED which results from transiently trapped charges at near-interface defects during program. By applying a new test algorithm, we could successfully extract the QED component from RTS, both of which are modulated by RDD effect and worsen tail bits in multilevel-cell flash memory.
Keywords
NAND circuits; electron traps; flash memories; semiconductor doping; telegraphy; NAND flash memory; QED phenomenon; multilevel-cell flash memory; near-interface defects; program-erase cycling; quick electron detrapping; random discrete dopant; random telegraph signal; size 40 nm; Flash memory; quick electron detrapping (QED); random discrete dopant (RDD) effect; random telegraph signal (RTS); tunneling front model;
fLanguage
English
Journal_Title
Electron Device Letters, IEEE
Publisher
ieee
ISSN
0741-3106
Type
jour
DOI
10.1109/LED.2009.2036871
Filename
5378573
Link To Document