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- W4308488449 abstract "• An ultra-low anisotropy magnetic sensor in toroidal ME composite was proposed. • Sensor output is almost immune from angle relative to long-type counterparts. • Resolutions for DC/AC field detection reached 10 -7 T and 10 -9 T levels, respectively. An ultra-low anisotropy magnetoelectric (ME) magnetic field sensor consisting of strictly concentric toroidal nickel-zinc ferrite/piezoelectric composite with toroidal solenoid was developed, and its sensitivity and resolution under different angles of planar AC/DC magnetic field were systemically characterized. The experimental results demonstrate that the induced voltage output strength was constant along the angles between the ME magnetic sensor and the planar DC/AC magnetic field due to toroidal structure had ultra-low shape-induced anisotropy. Consequently, for the DC case its sensitivity and resolution could reach about 15mV/Oe and 2×10 -7 T under a low excitation of ƒ=111.42kHz circumferential AC magnetic field, respectively. Correspondingly, for the AC case its sensitivity and resolution could reach about 56.9mV/Oe and 7×10 -9 T under a 2.25Oe circumferential DC bias magnetic field. These findings provided more flexibility of the device design for weak magnetic field detection." @default.
- W4308488449 created "2022-11-12" @default.
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- W4308488449 date "2022-12-01" @default.
- W4308488449 modified "2023-10-12" @default.
- W4308488449 title "Ultra-low anisotropy magnetoelectric sensor in ferrite/piezoelectric toroidal composites" @default.
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- W4308488449 doi "https://doi.org/10.1016/j.jmmm.2022.170115" @default.
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