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A Novel Fully Differential CMOS Class-E Power Amplifier with Higher Output Power and Efficiency for IoT Application

机译:一种新型全差分CMOS Class-E功率放大器,具有较高的输出功率和IOT应用效率

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摘要

The class-E amplifiers are used in many devices which need high efficiency, high gain and low power consumption. These types of power amplifiers could be used in the Internet of Thing gadgets, which are widely developed as portable electronic tools nowadays. In this work we present a novel class-E power amplifier (CEPA) that achieves high power gain and high efficiency simultaneously. These approaches are attained by using fully differential topology in our PA design and employing cross coupling neutralization technique. Power consumption of proposed PA is decreased by using LC tank VCO. On the other hand, high power efficiency is achieved by using differential topology. All components are adjusted to have better performance in IoT applications. The proposed CEPA have 29.5 dBm output power in 2.4 GHz, 36 dB power gain and 43.65% PAE. All of our results are verified by the post layout simulations that perform by 0.18 um standard CMOS technology.
机译:C类放大器用于许多需要高效率,高增益和低功耗的设备。 这些类型的功率放大器可以在物联网上使用,这是现在作为便携式电子工具的广泛开发的。 在这项工作中,我们介绍了一种新型的C类功率放大器(CEPA),同时实现了高功率增益和高效率。 通过我们的PA设计中的全差分拓扑实现这些方法,采用交叉耦合中和技术。 通过使用LC罐VCO,所提出的PA的功耗降低。 另一方面,通过使用差分拓扑实现高功率效率。 调整所有组件在IOT应用程序中具有更好的性能。 所提出的CEPA具有29.5 dBm输出功率,在2.4 GHz,36 dB功率增益和43.65%的PAE中。 我们的所有结果都是通过0.18 UM标准CMOS技术执行的后布局模拟验证。

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