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Reconfigurable Ultra Low Power LNA for 2.4GHz Wireless Sensor Networks

机译:用于2.4GHz无线传感器网络的可重新配置的超低功耗LNA

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This work proposes an Ultra Low Power (ULP) digitally controlled LNA dedicated to Wireless Sensor Networks (WSN) implemented in a 0.13 μm CMOS technology. Both optimized topologies and reconfigurable issues are investigated to save power consumption. Based on a self biased inverter, the circuit, operating under 0.6 V, consumes 120 μW and achieves a gain of 14.6 dB and a NF of 3.8 dB at 2.4 GHz. To comply with the flexibility of the Wireless Sensor Network (WSN) in term of RF link budget variability, the core of the LNA can be reconfigured through a 3 bit DAC. Hence the gain and NF are 9.4 dB and 6.2 dB in the low gain mode, suited to cover a 10 m range, consuming 30 μW.
机译:这项工作提出了一种超低功耗(ULP)数控LNA,专用于以0.13μmCMOS技术实现的无线传感器网络(WSN)。研究了优化的拓扑和可重新配置的问题,以节省功耗。该电路基于自偏置逆变器,工作于0.6 V电压下,功耗为120μW,在2.4 GHz时增益为14.6 dB,NF为3.8 dB。为了符合无线传感器网络(WSN)在RF链路预算可变性方面的灵活性,可以通过3位DAC重新配置LNA的内核。因此,在低增益模式下,增益和NF分别为9.4 dB和6.2 dB,适合覆盖10 m范围,消耗30μW。

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