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Article in English | MEDLINE | ID: mdl-18986886

ABSTRACT

In this study, we report results on a piezoelectric- material-based mechanical energy-harvesting device that was fabricated by combining laser machining with microelectronics packaging technology. It was found that the laser-machining process did not have significant effect on the electrical properties of piezoelectric material. The fabricated device was tested in the low-frequency regime of 50 to 1000 Hz at constant force of 8 g (where g = 9.8 m/s(2)). The device was found to generate continuous power of 1.13 microW at 870 Hz across a 288.5 kOmega load with a power density of 301.3 microW/cm(3).


Subject(s)
Acoustics/instrumentation , Electric Power Supplies , Energy Transfer , Equipment Design/methods , Lasers , Equipment Design/instrumentation , Equipment Failure Analysis , Motion , Vibration
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