DocumentCode
1229042
Title
Characteristic Instabilities in HfAlO Metal–Insulator–Metal Capacitors Under Constant-Voltage Stress
Author
Takeda, Kenichi ; Yamada, Renichi ; Imai, Toshinori ; Fujiwara, Tsuyoshi ; Hashimoto, Takashi ; Ando, Toshio
Author_Institution
Central Res. Lab., Hitachi, Ltd., Tokyo
Volume
55
Issue
6
fYear
2008
fDate
6/1/2008 12:00:00 AM
Firstpage
1359
Lastpage
1365
Abstract
Time-dependent characteristic changes of metal-insulator-metal (MIM) capacitors with HfAlO dielectric prepared by atomic-layer deposition under constant-voltage stress (CVS) were studied. It was found that relative dielectric constant , dielectric loss , temperature coefficient of capacitance , and frequency coefficient of capacitance gradually increase during CVS testing, whereas the voltage dependence of capacitance weakens. It was also found that changes in -value, , and during CVS testing linearly depend on changes in . These three linear relationships are basically explained by a dielectric-response model proposed for a ldquoflat-lossrdquo dielectric. That is, the increases in -value, , and are attributed to the dielectric-loss increase caused by voltage stress. Stress-time dependence of the dielectric-loss increase is expressed very well by a power function. That is, the power exponent obtained by a curve fitting linearly increases with stress voltage and decreases with increasing aluminum concentration in the HfAlO dielectric. This result indicates that aluminum addition into the HfAlO dielectric can improve the characteristic stabilities of a MIM capacitor under voltage stress.
Keywords
MIM devices; aluminium compounds; capacitors; hafnium compounds; stress effects; HfAlO; MIM capacitor; atomic-layer deposition; constant-voltage stress; dielectric constant; dielectric loss; frequency coefficient; metal-insulator-metal capacitor; temperature coefficient; Aluminum; Atomic layer deposition; Capacitance; Dielectric constant; Dielectric losses; MIM capacitors; Metal-insulator structures; Stress; Testing; Voltage; Capacitance density; HfAlO; HfO; MIM capacitor; hafnium aluminate; hafnium oxide; temperature coefficient of capacitance $(hbox{TCC})$ ; voltage linearity;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2008.921978
Filename
4527071
Link To Document