articleTop 1% cited
Efficient Far-Field Radio Frequency Energy Harvesting for Passively Powered Sensor Networks
IEEE Journal of Solid-State Circuits · 2008 · Vol. 43(5) · pp. 1287–1302
Triet Le✉(Oregon State University)Karti Mayaram(Oregon State University)T.S. Fiez(Oregon State University)
Abstract
An RF-DC power conversion system is designed to efficiently convert far-field RF energy to DC voltages at very low received power and voltages. Passive rectifier circuits are designed in a 0.25 mum CMOS technology using floating gate transistors as rectifying diodes. The 36-stage rectifier can rectify input voltages as low as 50 mV with a voltage gain of 6.4 and operates with received power as low as 5.5 muW(22.6 dBm). Optimized for far field, the circuit operates at a distance of 44 m from a 4 W EIRP source. The high voltage range achieved at low load current make it ideal for use in passively powered sensor networks.
Energy Harvesting in Wireless NetworksInnovative Energy Harvesting TechnologiesWireless Power Transfer SystemsRectifier (neural networks)Electrical engineeringRadio frequencyVoltageRectennaEnergy harvestingLow voltageDiodeCMOSTransistor
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References
Empirical formula for propagation loss in land mobile radio services
IEEE Transactions on Vehicular Technology · 1980 · 2,751 citations
Fully integrated passive uhf rfid transponder ic with 16.7-μ minimum rf input power
IEEE Journal of Solid-State Circuits · 2003 · 843 citations
On-chip high-voltage generation in MNOS integrated circuits using an improved voltage multiplier technique
IEEE Journal of Solid-State Circuits · 1976 · 1,673 citations
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