Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device

This paper presents a systematic study of various high-K materials on metal gate MOSFET for 18nm NMOS. From the study, we find a suitable combination materials between the high-K and metal gate, which has beneficial effects on the electrical characteristics of 18nm NMOS. The device shows a good impr...

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Main Authors: Atan, N.B., Ahmad, I.B., Majlis, B.B.Y.
Format: Conference Paper
Language:English
Published: 2017
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spelling my.uniten.dspace-52022018-02-01T04:13:41Z Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device Atan, N.B. Ahmad, I.B. Majlis, B.B.Y. This paper presents a systematic study of various high-K materials on metal gate MOSFET for 18nm NMOS. From the study, we find a suitable combination materials between the high-K and metal gate, which has beneficial effects on the electrical characteristics of 18nm NMOS. The device shows a good improvement on its result of sub-threshold leakage current, IOFF, and drive current, ION for different dielectric constants (k). The virtual design and fabrication of the device were performed by using Athena module. While electrical characteristic performance was simulated by using Atlas module of SILVACO software. Physical models of the 18nm NMOS were used for simulation from Al2O3, HfO2, and TiO2 as the material gate dielectric, with TiSi2 as the metal gate, which provide higher physical thickness that able to reduce the sub-threshold leakage current IOFF. Thus, excellent dielectric properties such as high-K constant, low IOFF, higher ION, threshold voltage VTH, and electrical characteristics were demonstrated. From the simulation results of ION and IOFF, it was proven that HfO2 is the best dielectric material with combination of metal gate, TiSi2. © 2014 IEEE. 2017-11-15T02:56:33Z 2017-11-15T02:56:33Z 2014 Conference Paper 10.1109/SMELEC.2014.6920794 en
institution Universiti Tenaga Nasional
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language English
description This paper presents a systematic study of various high-K materials on metal gate MOSFET for 18nm NMOS. From the study, we find a suitable combination materials between the high-K and metal gate, which has beneficial effects on the electrical characteristics of 18nm NMOS. The device shows a good improvement on its result of sub-threshold leakage current, IOFF, and drive current, ION for different dielectric constants (k). The virtual design and fabrication of the device were performed by using Athena module. While electrical characteristic performance was simulated by using Atlas module of SILVACO software. Physical models of the 18nm NMOS were used for simulation from Al2O3, HfO2, and TiO2 as the material gate dielectric, with TiSi2 as the metal gate, which provide higher physical thickness that able to reduce the sub-threshold leakage current IOFF. Thus, excellent dielectric properties such as high-K constant, low IOFF, higher ION, threshold voltage VTH, and electrical characteristics were demonstrated. From the simulation results of ION and IOFF, it was proven that HfO2 is the best dielectric material with combination of metal gate, TiSi2. © 2014 IEEE.
format Conference Paper
author Atan, N.B.
Ahmad, I.B.
Majlis, B.B.Y.
spellingShingle Atan, N.B.
Ahmad, I.B.
Majlis, B.B.Y.
Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device
author_facet Atan, N.B.
Ahmad, I.B.
Majlis, B.B.Y.
author_sort Atan, N.B.
title Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device
title_short Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device
title_full Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device
title_fullStr Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device
title_full_unstemmed Effects of high-K dielectrics with metal gate for electrical characteristics of 18nm NMOS device
title_sort effects of high-k dielectrics with metal gate for electrical characteristics of 18nm nmos device
publishDate 2017
_version_ 1644493613624721408
score 13.222552