DocumentCode :
1653926
Title :
Multi-level flash/EPROM memories: new self-convergent programming methods for low-voltage applications
Author :
Chi, Min-Hwa ; Bergemont, Albert
Author_Institution :
Fairchild Res. Center, Nat. Semicond. Corp., Santa Clara, CA, USA
fYear :
1995
Firstpage :
271
Lastpage :
274
Abstract :
This paper proposes new low voltage programming methods for storing multi-levels of threshold voltage (VT) in flash memory cells. These methods are based on hot electron injection under low voltage (<5v) bias at drain or gate. Abundant hot electrons can be generated from the high field near drain together with various “seed” currents for avalanche mechanism, such as punch-through and parasitic bipolar currents in cell. The programmed cell VT has excellent linear relation to the gate bias used for programming, therefore this technique is also useful for storing analog signals in cells. Many array architectures, such as NVG or ETOX, can be implemented with capability of programming one or more entire columns of cells into multi-levels or analog signals simultaneously. The methods demonstrated in this paper are promising for next generation high density and low power flash memory with applications in both digital and analog systems
Keywords :
EPROM; analogue storage; hot carriers; integrated memory circuits; 5 V; EPROM; ETOX; NVG; analog signals; array architectures; avalanche mechanism; high density memories; hot electron injection; low voltage programming; multi-level flash memories; parasitic bipolar currents; punch-through currents; seed currents; self-convergent programming; threshold voltage; Channel hot electron injection; EPROM; Flash memory; Flash memory cells; Hot carriers; Linear programming; Low voltage; Nonvolatile memory; Portable computers; Telecommunication computing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electron Devices Meeting, 1995. IEDM '95., International
Conference_Location :
Washington, DC
ISSN :
0163-1918
Print_ISBN :
0-7803-2700-4
Type :
conf
DOI :
10.1109/IEDM.1995.499194
Filename :
499194
Link To Document :
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