Publication | Open Access
An ultralow-power UHF transceiver integrated in a standard digital CMOS process: architecture and receiver
130
Citations
23
References
2001
Year
Low-power ElectronicsSensor NetworksElectrical EngineeringEnergy HarvestingEngineeringBroad RangeCircuit SystemRadio FrequencyUltralow-power Uhf TransceiverMixed-signal Integrated CircuitComputer EngineeringPrototype Receiver ChipCommunication CircuitDigital Circuit DesignMicroelectronicsPower ConsumptionPower-aware DesignRf Subsystem
A broad range of high-volume consumer applications require low-power battery-operated wireless microsystems and sensors. These systems should conciliate a sufficient battery lifetime with reduced dimensions, low cost, and versatility. Their design highlights the tradeoff between performance, lifetime, cost, and power consumption. Also, special circuit and design techniques are needed to comply with the reduced supply voltage (down to 1 V, for single battery cell operation). These considerations are illustrated by the design of a prototype receiver chip realized in a standard 0.5-/spl mu/m digital CMOS process with 0.6-V threshold voltage. The chip is dedicated to a distributed sensors network and is based on a direct-conversion architecture. The circuit operates at 1-V power supply in the 434-MHz European ISM band and consumes only 1 mW in receive mode. It achieves a -95 dBm sensitivity for a data rate of 24 kb/s.
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