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A Single-Stage Delay-Tuned Active Rectifier for Constant-Current Constant-Voltage Wireless Charging

机译:用于恒流恒压无线充电的单级延迟调谐有源整流器

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This paper presents a single-stage regulated active rectifier with two operation modes of constant-current charging mode (CC) and constant-voltage charging mode (CV) for battery wireless charging. With the delay-tuned active rectifier, the proposed wireless charger can realize AC-DC power rectification, voltage regulation, CC and CV battery charging in a single power stage with high efficiency and small volume. The adaptive tuning of the delay of the power NMOS gate-drive signals, regulates the average charging current at a constant value for the CC mode, and the output voltage for the CV mode. The circuit achieves a precise average AC current sensing with a replica sensing stage. The utilization of a hysteresis comparator detects the output voltage and changes the charging mode during the battery charging process. The proposed single-stage wireless charger, designed in standard 0.35μm CMOS, operates at 6.78MHz. Simulation results show that the efficiency of the entire CC mode is higher than 89.8% with the battery voltage ranging from 2.8V to 4.2V. And we obtain a peak efficiency of 94.3% with 4.2 V and 1A output.
机译:本文介绍了一个单级调节的有源整流器,具有两个操作模式的恒流充电模式(CC)和恒压充电模式(CV),用于电池无线充电。利用延迟调谐的主动整流器,所提出的无线充电器可以通过高效率和小体积实现单个功率级的AC-DC电源整流,电压调节,CC和CV电池充电。功率NMOS栅极驱动信号延迟的自适应调整,调节CC模式的恒定值的平均充电电流,以及用于CV模式的输出电压。该电路通过复制传感阶段实现精确的平均AC电流检测。滞后比较器的利用检测输出电压并在电池充电过程中改变充电模式。所提出的单级无线充电器,设计为标准的0.35μmCMOS,在6.78MHz上运行。仿真结果表明,整个CC模式的效率高于89.8%,电池电压范围为2.8V至4.2V。我们获得了4.2 V和1A输出的94.3%的峰值效率。

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