The electrical transport in zinc oxide (ZnO) varistors is analyzed using microstructural material modeling. The fully three dimensional current distribution is computed by means of a nonlinear equivalent circuit model representing the assembly of current carrying grains and grain boundaries of the material. The investigation focuses on the phenomenon of current filamentation due to inhomogeneities of the varistor microstructure. Numerical results highlight the importance of 3-D percolation effects in the modeling of varistor currents as well as that of the grain bulk resistivity which so far has been neglected in previous studies
ZnO varistors are semiconductor devices with highly nonlinear current-voltage characteristic and are...
The electronic properties of individual grain boundaries in ZnO varistors were characterized by curr...
The zinc oxide varistor is a two terminal polycrystalline device with an excellent symmetric nonline...
Abstract. The electrical transport in zinc oxide (ZnO) varis-tors is analyzed using microstructural ...
An electromechanically-coupled model for the simulation of electric current flow in zinc oxide varis...
An electromechanically coupled model for the simulation of electric current flow in ZnO varistors is...
This newly developed modelling framework for the simulation of electric current flow in ZnO varistor...
The research performed under this grant has been principally devoted to understanding and quantifyin...
Zinc oxide varistors are among the most important surge arresters. The current-voltage (I–V) behavio...
The material of the ZnO-based varistor (MOV) consists primarily of ZnO which is mixed with small amo...
The relationship between the breakdown electric field EB (electric field corresponding to the curren...
For quantitative estimation of the degree of electrical disorder (electrical inhomogeneity) in ZnO v...
ZnO varistors are semiconductor devices with highly nonlinear current-voltage characteristic and are...
Metal oxide varistors have highly nonlinear electrical characteristics and are widely used as device...
The piezoelectric effect of ZnO has been investigated recently with the goal to modify metal/semicon...
ZnO varistors are semiconductor devices with highly nonlinear current-voltage characteristic and are...
The electronic properties of individual grain boundaries in ZnO varistors were characterized by curr...
The zinc oxide varistor is a two terminal polycrystalline device with an excellent symmetric nonline...
Abstract. The electrical transport in zinc oxide (ZnO) varis-tors is analyzed using microstructural ...
An electromechanically-coupled model for the simulation of electric current flow in zinc oxide varis...
An electromechanically coupled model for the simulation of electric current flow in ZnO varistors is...
This newly developed modelling framework for the simulation of electric current flow in ZnO varistor...
The research performed under this grant has been principally devoted to understanding and quantifyin...
Zinc oxide varistors are among the most important surge arresters. The current-voltage (I–V) behavio...
The material of the ZnO-based varistor (MOV) consists primarily of ZnO which is mixed with small amo...
The relationship between the breakdown electric field EB (electric field corresponding to the curren...
For quantitative estimation of the degree of electrical disorder (electrical inhomogeneity) in ZnO v...
ZnO varistors are semiconductor devices with highly nonlinear current-voltage characteristic and are...
Metal oxide varistors have highly nonlinear electrical characteristics and are widely used as device...
The piezoelectric effect of ZnO has been investigated recently with the goal to modify metal/semicon...
ZnO varistors are semiconductor devices with highly nonlinear current-voltage characteristic and are...
The electronic properties of individual grain boundaries in ZnO varistors were characterized by curr...
The zinc oxide varistor is a two terminal polycrystalline device with an excellent symmetric nonline...