A fully integrated 1 V, +9.5 dBm, 43%-PAE injection-locked Class-E power amplifier for wireless sensor network

Hyoung-Seok Oh, Taeksang Song, Sang-Hyun Baek, E. Yoon, C. Kim
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引用次数: 6

Abstract

In most short-range wireless sensor network applications, the maximum transmit-power is typically about 10 dBm at 2.4 GHz ISM band. In such a low transmit-power level, the driving power and DC power consumption in the previous stage are no more negligible compared to the transmitted signal power. So, to increase the overall transmitter efficiency, not only the output power stage, but also the driver stage needs to be co-optimized for low power operation. In this paper, we present an injection-locked Class-E power amplifier (Class-E ILPA) suitable for the low transmit-power sensor network applications. The proposed power amplifier, which is fully integrated in 0.18 /spl mu/m CMOS technology, achieves a power added efficiency (PAE) of 43% while delivering an output power of 9.5 dBm with a drain efficiency (DE) of 48.5% at 1 V supply voltage.
全集成1v, +9.5 dBm, 43%-PAE注入锁定e类功率放大器,用于无线传感器网络
在大多数短距离无线传感器网络应用中,在2.4 GHz ISM频段的最大发射功率通常约为10 dBm。在如此低的发射功率水平下,与发射信号功率相比,前一级的驱动功率和直流功耗不再是可以忽略不计的。因此,为了提高发射机的整体效率,不仅需要对输出功率级进行协同优化,还需要对驱动级进行协同优化,以实现低功耗工作。本文设计了一种适用于低发射功率传感器网络应用的注入锁定型e类功率放大器。该功率放大器完全集成了0.18 /spl mu/m CMOS技术,在1 V电源电压下,输出功率为9.5 dBm,漏极效率(DE)为48.5%,功率增加效率(PAE)为43%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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