首页> 外文会议>43rd IEEE European Solid State Circuits Conference >A 900 MHz RF energy harvesting system in 40 nm CMOS technology with efficiency peaking at 47 and higher than 30 over a 22dB wide input power range
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A 900 MHz RF energy harvesting system in 40 nm CMOS technology with efficiency peaking at 47 and higher than 30 over a 22dB wide input power range

机译:采用40 nm CMOS技术的900 MHz RF能量采集系统,在22dB宽输入功率范围内,效率峰值达到47%,高于30%

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A 900 MHz RF energy harvesting system is proposed for a far-field wireless power transfer application. The topology of a single-stage CMOS rectifier loaded with an integrated boost DC-DC converter is implemented in a 40 nm CMOS technology. The co-design of a cross-coupled CMOS rectifier and an impedance matching network is described to optimize RF-DC conversion efficiency for the target input power. Two tuning techniques are employed to improve the power conversion efficiency of the entire system over a wide input power range, which include using an input-regulated DC-DC converter to control the rectifier with an optimal output voltage, and tuning an impedance matching network to compensate the input impedance variation of the rectifier. The measurement results show the proposed system can achieve an end-to-end power conversion efficiency higher than 30% over a 22dB input power range (-10 to 12 dBm) with a peak value of 47% at 0 dBm for a 1.5 V output voltage. The maximum output voltage of the system is 2.45V with a sensitivity of -15 dBm.
机译:提出了一种900 MHz射频能量收集系统,用于远场无线功率传输应用。装有集成升压DC-DC转换器的单级CMOS整流器的拓扑以40 nm CMOS技术实现。描述了交叉耦合的CMOS整流器和阻抗匹配网络的共同设计,以针对目标输入功率优化RF-DC转换效率。两种调谐技术可用于在较宽的输入功率范围内提高整个系统的功率转换效率,包括使用输入调节的DC-DC转换器以最佳输出电压控制整流器,以及将阻抗匹配网络调谐为补偿整流器的输入阻抗变化。测量结果表明,所提出的系统在22dB输入功率范围(-10至12 dBm)下可以实现高于30%的端到端功率转换效率,对于1.5 V输出,在0 dBm时的峰值为47%电压。系统的最大输出电压为2.45V,灵敏度为-15dBm。

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