Here we propose a spintronic based accelerometer that exploits the coupling of mechanical with spintronic components to develop a compact sub micro-accelerometer in which the external acceleration is obtained via measurement of the voltage variation in a spin torque diode. The solution is based on three spintronic devices, two spin torque diodes and a spin torque nano oscillator, that enables a robust and reliable sensing and read-out mechanisms thanks to voltage differential measurements. The results confirm the potential of mechanical-spintronic accelerometers to become an alternative to current state of the art technology.

Sub micro-accelerometer based on spintronic technology: A design optimization

Garesci Francesca
Secondo
;
Finocchio G.
Ultimo
2023-01-01

Abstract

Here we propose a spintronic based accelerometer that exploits the coupling of mechanical with spintronic components to develop a compact sub micro-accelerometer in which the external acceleration is obtained via measurement of the voltage variation in a spin torque diode. The solution is based on three spintronic devices, two spin torque diodes and a spin torque nano oscillator, that enables a robust and reliable sensing and read-out mechanisms thanks to voltage differential measurements. The results confirm the potential of mechanical-spintronic accelerometers to become an alternative to current state of the art technology.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3284796
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