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    SubjectsAlN (1)
    Cantilever (1)
    Energy harvesting (1)
    high temperature (1)
    MEMS (1)
    View MoreJournalJournal of Microelectromechanical Systems (1)AuthorsArroyo, Emmanuelle (1)Chen, Shao-Tuan (1)
    Du, Sijun (1)
    Jia, Yu (1)Seshia, Ashwin A. (1)Types
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    Experimental and theoretical study of a piezoelectric vibration energy harvester under high temperature

    Arroyo, Emmanuelle; Jia, Yu; Du, Sijun; Chen, Shao-Tuan; Seshia, Ashwin A. (IEEE, 2017-08-01)
    This paper focuses on studying the effect of increasing the ambient temperature up to 160 °C on the power harvested by an MEMS piezoelectric micro-cantilever manufactured using an aluminum nitride-on-silicon fabrication process. An experimental study shows that the peak output power decreases by 60% to 70% depending on the input acceleration. A theoretical study establishes the relationship of all important parameters with temperature and includes them into a temperature-dependent model. This model shows that around 50% of the power drop can be explained by a decreasing quality factor, and that thermal stresses account for around 30% of this decrease.
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