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Self-powered signal processing using vibration-based power generation

IEEE Journal of Solid-State Circuits · 1998 · Vol. 33(5) · pp. 687–695
Rajeevan AmirtharajahAnantha P. Chandrakasan

Abstract

Low power design trends raise the possibility of using ambient energy to power future digital systems. A chip has been designed and tested to demonstrate the feasibility of operating a digital system from power generated by vibrations in its environment. A moving coil electromagnetic transducer was used as a power generator. Calculations show that power on the order of 400 /spl mu/W can be generated. The test chip integrates an ultra-low power controller to regulate the generator voltage using delay feedback techniques, and a low power subband filter DSP load circuit. Tests verify 500 kHz self-powered operation of the subband filter, a level of performance suitable for sensor applications. The entire system, including the DSP load, consumes 18 /spl mu/W of power. The chip is implemented in a standard 0.8 /spl mu/m CMOS process. A single generator excitation produced 23 ms of valid DSP operation at a 500 kHz clock frequency, corresponding to 11,700 cycles.

Innovative Energy Harvesting TechnologiesAnalog and Mixed-Signal Circuit DesignEngineering and Technology InnovationsDigital signal processingClock generatorChipPower (physics)Electrical engineeringElectronic engineeringGenerator (circuit theory)VibrationCMOSEngineering
Citations
614
FWCI
13.27
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References
27
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References
Analysis of a micro-electric generator for microsystems
Sensors and Actuators A Physical · 1996 · 1,377 citations
High-speed CMOS circuit technique
IEEE Journal of Solid-State Circuits · 1989 · 789 citations
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