Design of integrated parasitic element antennas for a remote wake up device

F. Fezai, C. Menudier, M. Thevenot, E. Arnaud, T. Monediere
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Abstract

The reduction of standby power consumption is a priority in the development of electronic devices. We propose a system that minimizes this standby power in home automation or multimedia systems. This system is composed of a 2.45 GHz emitter and a receiver with a sensitivity of -22 dBm (higher than a receiver directly supplied). This receiver implies a difficult link budget contrary to classical receiver sensitivity (-80 or -90 dBm). That is why the antennas have a very important role because they must be totally optimized to avoid link budget degradation. Moreover, this system is dedicated to mass market applications. As a result, all the materials and manufacturing process concerning the antennas must be as versatile as possible to be integrated in different cases and cheap to manufacture. To satisfy these objectives, we present a generic design of parasitic element antennas that are suited to both the emitter and the receiver. Measurements results are presented to validate the design.
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远程唤醒装置的集成寄生元件天线设计
降低待机功耗是电子设备发展的首要任务。我们提出一个系统,以尽量减少这种待机功率在家庭自动化或多媒体系统。该系统由一个2.45 GHz的发射器和一个灵敏度为-22 dBm(高于直接供应的接收器)的接收器组成。这种接收器意味着与传统接收器灵敏度(-80或-90 dBm)相反的困难链路预算。这就是为什么天线具有非常重要的作用,因为它们必须完全优化以避免链路预算退化。此外,该系统是专门为大众市场应用。因此,有关天线的所有材料和制造工艺必须尽可能通用,以便在不同情况下集成,并且制造成本低。为了满足这些目标,我们提出了一种适用于发射器和接收器的寄生元件天线的通用设计。测量结果验证了设计的正确性。
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