High-sensitivity tunneling magneto-resistive micro-gyroscope with immunity to external magnetic interference

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Abstract

Micro-electro-mechanical system (MEMS) gyroscopes have numerous potential applications including guidance, robotics, tactical-grade navigation, and automotive applications fields. The methods with ability of the weak Coriolis force detection are critical for MEMS gyroscopes. In this paper, we presented a design of MEMS gyroscope based on the tunneling magneto-resistance effect with higher detection sensitivity. Of all these designed parameters, the structural, magnetic field, and magneto-resistance sensitivity values reach to 21.6 nm/°/s, 0.0023 Oe/nm, and 29.5 mV/Oe, thus, with total sensitivity of 1.47 mV/°/s. Multi-bridge circuit method is employed to suppress external magnetic interference and avoid the integration error of the TMR devices effectively. The proposed tunneling magneto-resistive micro-gyroscope shows a possibility to make an inertial grade MEMS gyroscope in the future.

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APA

Jin, L., Qin, S. Y., Zhang, R., & Li, M. W. (2020). High-sensitivity tunneling magneto-resistive micro-gyroscope with immunity to external magnetic interference. Scientific Reports, 10(1). https://doi.org/10.1038/s41598-020-73369-6

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