Toggle navigation
Repository of the Association of Universities Entrusted to the Society of Jesus in Latin America (AUSJAL)
español
português (Brasil)
English
English
español
português (Brasil)
English
Login
Toggle navigation
View Item
Home
Centro Universitario FEI
Documentos - CUFEI
View Item
Home
Centro Universitario FEI
Documentos - CUFEI
View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.
Improved operation of graded-channel SOI nMOSFETs down to liquid helium temperature
View/
Open
Date
2016
Author
Pavanello M.A.
De Souza M.
Ribeiro T.A.
Martino J.A.
Flandre D.
Metadata
Show full item record
URI
https://repositorio.fei.edu.br/handle/FEI/1118
Description
© 2016 IOP Publishing Ltd.This paper presents the operation of Graded-Channel (GC) Silicon-On-Insulator (SOI) nMOSFETs at low temperatures down to liquid helium temperature in comparison to standard uniformly doped transistors. Devices from two different technologies have been measured and show that the mobility increase rate with temperature for GC SOI transistors is similar to uniformly doped devices for temperatures down to 90 K. However, at liquid helium temperature the rate of mobility increase is larger in GC SOI than in standard devices because of the different mobility scattering mechanisms. The analog properties of GC SOI devices have been investigated down to 4.16 K and show that because of its better transconductance and output conductance, an intrinsic voltage gain improvement with temperature is also obtained for devices in the whole studied temperature range. GC devices are also capable of reducing the impact ionization due to the high electric field in the drain region, increasing the drain breakdown voltage of fully-depleted SOI MOSFETs at any studied temperature and the kink voltage at 4.16 K.
Collections
Documentos - CUFEI
Search Repository
This Collection
Browse
All of Repository
Communities & Collections
By Issue Date
Authors
Titles
Subjects
This Collection
By Issue Date
Authors
Titles
Subjects
My Account
Login
Register