The magnetic properties of sintered Mn-Zn ferrites, Co 2+ enriched by addition of CoO up to 6000 ppm, were measured in ring samples for a broad range of peak polarization values (2-200 mT) and frequencies (dc - 1 GHz). The results were analyzed by separating the contributions to the magnetization process of domain wall motion and magnetization rotation, and applying the concept of loss decomposition. By determining the value and behavior of the rotational permeability μ rot as a function of the CoO content, we obtain the average effective magnetic anisotropy and its effect on the loss. We thus identify the hysteresis (quasi-static) Wh, rotational Wrot, and excess W exc loss components and their dependence on CoO. The quasi-static loss W h ...
In this research work, magnetic and microwave absorption loss and other response characteristics in ...
The present paper reports on an effort to expose and scientifically explain the microstructure–magne...
This paper analyzes hysteresis losses of minor loops versus temperature in MnZn ferrite core. The st...
The magnetic properties of sintered Mn-Zn ferrites, Co2+ enriched by addition of CoO up to 6000 ppm,...
Mn-Zn ferrite samples prepared by conventional solid state reaction method and sintering at 1325 °C ...
CoO-doping is known to stabilize the temperature dependence of initial permeability and magnetic los...
Magnetic energy losses and permeability have been investigated in laboratory prepared and commercial...
We analyze the physical mechanisms associated with addition of CoO to sintered Mn-Zn ferrites and th...
We predict the contribution of eddy currents to power losses in polycrystalline Mn-Zn ferrites and a...
The magnetic properties of MnZn ferrites are highly influenced by the partial oxygen pressure during...
Fluxmetric and transmission line methods have been combined in the wideband characterization of Mn–...
We present and discuss methods, setups, and results concerning the characterization of Mn-Zn and Ni-...
International audienceA soft magnetic MnZn-type ferrite is considered for high frequency application...
The core loss characteristics of the Mn-Zn ferrite cores with various grain sizes, electric conducti...
In this paper, the influence of additional sieving and milling of starting industrial Mn-Zn powders ...
In this research work, magnetic and microwave absorption loss and other response characteristics in ...
The present paper reports on an effort to expose and scientifically explain the microstructure–magne...
This paper analyzes hysteresis losses of minor loops versus temperature in MnZn ferrite core. The st...
The magnetic properties of sintered Mn-Zn ferrites, Co2+ enriched by addition of CoO up to 6000 ppm,...
Mn-Zn ferrite samples prepared by conventional solid state reaction method and sintering at 1325 °C ...
CoO-doping is known to stabilize the temperature dependence of initial permeability and magnetic los...
Magnetic energy losses and permeability have been investigated in laboratory prepared and commercial...
We analyze the physical mechanisms associated with addition of CoO to sintered Mn-Zn ferrites and th...
We predict the contribution of eddy currents to power losses in polycrystalline Mn-Zn ferrites and a...
The magnetic properties of MnZn ferrites are highly influenced by the partial oxygen pressure during...
Fluxmetric and transmission line methods have been combined in the wideband characterization of Mn–...
We present and discuss methods, setups, and results concerning the characterization of Mn-Zn and Ni-...
International audienceA soft magnetic MnZn-type ferrite is considered for high frequency application...
The core loss characteristics of the Mn-Zn ferrite cores with various grain sizes, electric conducti...
In this paper, the influence of additional sieving and milling of starting industrial Mn-Zn powders ...
In this research work, magnetic and microwave absorption loss and other response characteristics in ...
The present paper reports on an effort to expose and scientifically explain the microstructure–magne...
This paper analyzes hysteresis losses of minor loops versus temperature in MnZn ferrite core. The st...