This paper characterizes and models the effects of total ionizing dose (TID) up to 1 Grad(SiO2) on the drain leakage current of n MOSFETs fabricated with a commercial 28-nm bulk CMOS process. Experimental comparisons among individual n MOSFETs of various sizes provide insight into the TID-induced lateral parasitic devices, which contribute the most to the significant increase up to four orders of magnitude in the drain leakage current. We introduce a semiempirical physics-based approach using only three parameters to model the parallel parasitic and total drain leakage current as a function of TID. Taking into account the gate independence of the drain leakage current at high TID levels, we model the lateral parasitic device as a gateless c...
Total ionizing radiation may affect the electrical response of the electronic systems, inducing a va...
This article investigates the total ionizing dose (TID) degradation mechanisms of 16-nm bulk Si FinF...
In this work we are moving our attention on MOSFETs, which are the real basic element of all CMOS ap...
This paper characterizes and models the effects of total ionizing dose (TID) up to 1 Grad(SiO$_2$) o...
This paper uses the simplified charge-based EKV MOSFET model for studying the effects of total ioniz...
The Large Hadron Collider (LHC) running at CERN will soon be upgraded to increase its luminosity giv...
The DC performance of both $n$- and $p$MOSFETs fabricated in a commercial-grade 28 nm bulk CMOS proc...
This paper presents a modeling approach to simulate the impact of total ionizing dose (TID) degradat...
Total ionizing dose (TID) mechanisms are investigated in 28-nm MOSFETs via dc static and low-frequen...
The increase of the leakage current of NMOS transistors during exposure to ionizing radiation is kno...
Summarization: High doses of ionizing radiation drastically impair the electrical performance of CMO...
Total ionizing dose (TID) effects are studied for a long time in micro-electronic components designe...
Total ionizing dose (TID) response of pMOS transistors featuring a commercial 65 nm CMOS technology ...
A radiation-induced leakage current model in deep submicron bulk silicon N-channel metal-oxide-semic...
Summarization: High doses of ionizing irradiation cause significant shifts in design parameters of s...
Total ionizing radiation may affect the electrical response of the electronic systems, inducing a va...
This article investigates the total ionizing dose (TID) degradation mechanisms of 16-nm bulk Si FinF...
In this work we are moving our attention on MOSFETs, which are the real basic element of all CMOS ap...
This paper characterizes and models the effects of total ionizing dose (TID) up to 1 Grad(SiO$_2$) o...
This paper uses the simplified charge-based EKV MOSFET model for studying the effects of total ioniz...
The Large Hadron Collider (LHC) running at CERN will soon be upgraded to increase its luminosity giv...
The DC performance of both $n$- and $p$MOSFETs fabricated in a commercial-grade 28 nm bulk CMOS proc...
This paper presents a modeling approach to simulate the impact of total ionizing dose (TID) degradat...
Total ionizing dose (TID) mechanisms are investigated in 28-nm MOSFETs via dc static and low-frequen...
The increase of the leakage current of NMOS transistors during exposure to ionizing radiation is kno...
Summarization: High doses of ionizing radiation drastically impair the electrical performance of CMO...
Total ionizing dose (TID) effects are studied for a long time in micro-electronic components designe...
Total ionizing dose (TID) response of pMOS transistors featuring a commercial 65 nm CMOS technology ...
A radiation-induced leakage current model in deep submicron bulk silicon N-channel metal-oxide-semic...
Summarization: High doses of ionizing irradiation cause significant shifts in design parameters of s...
Total ionizing radiation may affect the electrical response of the electronic systems, inducing a va...
This article investigates the total ionizing dose (TID) degradation mechanisms of 16-nm bulk Si FinF...
In this work we are moving our attention on MOSFETs, which are the real basic element of all CMOS ap...