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A Sub-nW 2.4 GHz Transmitter for Low Data-Rate Sensing Applications
A Sub-nW 2.4 GHz Transmitter for Low Data-Rate Sensing Applications IEEE JOURNAL OF SOLID-STATE CIRCUITS Mercier, P. P., Bandyopadhyay, S., Lysaght, A. C., Stankovic, K. M., Chandrakasan, A. P. 2014; 49 (7): 1463-1474Abstract
This paper presents the design of a narrowband transmitter and antenna system that achieves an average power consumption of 78 pW when operating at a duty-cycled data rate of 1 bps. Fabricated in a 0.18 µm CMOS process, the transmitter employs a direct-RF power oscillator topology where a loop antenna acts as a both a radiative and resonant element. The low-complexity single-stage architecture, in combination with aggressive power gating techniques and sizing optimizations, limited the standby power of the transmitter to only 39.7 pW at 0.8 V. Supporting both OOK and FSK modulations at 2.4 GHz, the transmitter consumed as low as 38 pJ/bit at an active-mode data rate of 5 Mbps. The loop antenna and integrated diodes were also used as part of a wireless power transfer receiver in order to kick-start the system power supply during energy harvesting operation.
View details for DOI 10.1109/JSSC.2014.2316237
View details for Web of Science ID 000338512700002
View details for PubMedID 26246641
View details for PubMedCentralID PMC4523311