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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >A high efficiency transmitter and receiver for magnetic resonant wireless battery charging system in 0.35 μm BCD
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A high efficiency transmitter and receiver for magnetic resonant wireless battery charging system in 0.35 μm BCD

机译:适用于0.35μmBCD的磁共振无线电池充电系统的高效发射器和接收器

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摘要

This paper presents a transmitter and receiver for magnetic resonant wireless battery charging system. In the receiver, a wide-input range CMOS multi-mode active rectifier is proposed for a magnetic resonant wireless battery charging system. The configuration is automatically changed with respect to the magnitude of the input AC voltage. The output voltage of the multi-mode rectifier is sensed by a comparator. Furthermore, the configuration of the multi-mode rectifier is automatically selected by switches as original rectifier mode, 1-stage voltage multiplier or 2-stage voltage multiplier mode. As a result, a rectified DC voltage is output from 7.5 to 19 V for an input AC voltage of 5-20 V. In the transmitter, a class-E power amplifier (PA) with an automatic power control loop and load compensation circuit is proposed to improve the power efficiency. The transmitted power is controlled by adjusting the signal applied to the gate of the power control transistor. In addition, a parallel capacitor is also controlled to enhance the efficiency and compensate for the load variation. This chip is implemented using 0.35 μm BCD technology with an active area of around 5,000 × 2,500 μm. When the magnitude of the input AC voltage is 10 V, the power conversion efficiency of the multi-mode active rectifier is about 94%. The maximum power efficiency of the receiver is about 70%. The transmitter provides an output power control range of 10-30.2 dBm. The maximum power efficiency of the PA is 71.5%.
机译:本文提出了一种用于磁共振无线电池充电系统的发射器和接收器。在接收器中,提出了一种宽输入范围的CMOS多模式有源整流器,用于磁共振无线电池充电系统。配置会根据输入交流电压的大小自动更改。多模式整流器的输出电压由比较器感测。此外,多模式整流器的配置可通过开关自动选择为原始整流器模式,一级电压倍增器或二级电压倍增器模式。结果,在输入交流电压为5-20 V的情况下,整流后的直流电压从7.5到19 V输出。在变送器中,具有自动功率控制环路和负载补偿电路的E类功率放大器(PA)为建议提高电源效率。通过调节施加到功率控制晶体管的栅极的信号来控制发射功率。另外,还控制并联电容器以提高效率并补偿负载变化。该芯片采用0.35μmBCD技术实现,其有效面积约为5,000×2,500μm。当输入交流电压的大小为10 V时,多模式有源整流器的功率转换效率约为94%。接收器的最大功率效率约为70%。发射器提供10-30.2 dBm的输出功率控制范围。 PA的最大功率效率为71.5%。

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