In this paper, the effect of sample length on different currents and frequencies of measurement on magneto impedance (MI) of amorphous cobalt based ribbons was investigated. Firstly, we cut the ribbon to 4 cm length and then measurements of MI were carried out in constant current of 8 mA and frequency ranges between 1 to 15 MHz. The maximum sensitivity (9.16 Oe-1) at a frequency of 11 MHz was obtained. Also, the maximum extinction field was obtain 41.6 Oe. In the next step, the currents of 6 to 14 mA and the frequencies from 1 to 6 MHz were examined and in the optima conditions the maximum MI reached to 195%. In the next step, the length of ribbon was reduced to 2 cm and the MI was measured at previous currents and frequencies that results ...
Soft magnetic materials are widely requested in electronic and biomedical applications. Co-based amo...
In this work, the magnetoimpedance relaxation in Co(68.25)Fe(4.5)Si(12.25)B(15) systems has been mea...
AbstractWe report an enhancement of low-field, high-frequency magneto-impedance (MI) response and ci...
A comparative analysis of the influence of geometric parameters on the features of the effective mag...
In this paper, micro-patterned cobalt-based amorphous ribbons with different structures are fabricat...
Мagneto-impedance (MI) effect in the Fe72Cu1V4Si15B8 amorphous ribbon obtained by melt spinning m...
[EN] Soft magnetic amorphous ribbons have been exhaustively studied in order to use them as magnetic...
International audiencePower electronic designers are interested in characterization of the magnetic ...
A systematic study of the effect of the deposition of cobalt (Co) and nickel (Ni) layers of various ...
Investigation is focused on the effect of different parametric controls like driving frequency, ampl...
We report a systematic study of the influence of wire length, L, dependence of giant magneto-impedan...
Amorphous and nanocrystalline soft magnetic materials have attracted much attention in the area of s...
Frequency dependence of the magnetoimpedance effect of amorphous ribbons was studied. Different reas...
International audienceThe giant magnetoimpedance (GMI) effect is observed when the impedance of a ma...
Cobalt of thickness from 1 to 25 μm was coated onto 120 μm-diameter silver wires by electrodepositio...
Soft magnetic materials are widely requested in electronic and biomedical applications. Co-based amo...
In this work, the magnetoimpedance relaxation in Co(68.25)Fe(4.5)Si(12.25)B(15) systems has been mea...
AbstractWe report an enhancement of low-field, high-frequency magneto-impedance (MI) response and ci...
A comparative analysis of the influence of geometric parameters on the features of the effective mag...
In this paper, micro-patterned cobalt-based amorphous ribbons with different structures are fabricat...
Мagneto-impedance (MI) effect in the Fe72Cu1V4Si15B8 amorphous ribbon obtained by melt spinning m...
[EN] Soft magnetic amorphous ribbons have been exhaustively studied in order to use them as magnetic...
International audiencePower electronic designers are interested in characterization of the magnetic ...
A systematic study of the effect of the deposition of cobalt (Co) and nickel (Ni) layers of various ...
Investigation is focused on the effect of different parametric controls like driving frequency, ampl...
We report a systematic study of the influence of wire length, L, dependence of giant magneto-impedan...
Amorphous and nanocrystalline soft magnetic materials have attracted much attention in the area of s...
Frequency dependence of the magnetoimpedance effect of amorphous ribbons was studied. Different reas...
International audienceThe giant magnetoimpedance (GMI) effect is observed when the impedance of a ma...
Cobalt of thickness from 1 to 25 μm was coated onto 120 μm-diameter silver wires by electrodepositio...
Soft magnetic materials are widely requested in electronic and biomedical applications. Co-based amo...
In this work, the magnetoimpedance relaxation in Co(68.25)Fe(4.5)Si(12.25)B(15) systems has been mea...
AbstractWe report an enhancement of low-field, high-frequency magneto-impedance (MI) response and ci...