Design and implementation of a miniaturised, low power wireless sensor node

S. Harte, B. O’flynn, R. Catalá, E. Popovici
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引用次数: 27

Abstract

A miniaturised wireless sensor node with a high level of modularity is presented. A transceiver module with a size of 10 mm by 10 mm, operating in the 433/868 MHz frequency bands has been developed. An interface layer provides a regulated power supply from a rechargeable battery, USB battery charging, and USB communications to support the transceiver module. The node has been designed to support very low power operation for applications with low duty cycles, with a sleep current of 3.3 muA transmission current of 10.4 mA, and reception current of 13.3 mA. The small size combined with the level of modularity and energy efficiency results in the suitability of this system to a wide variety of potential applications. This paper discusses the design goals of the node, the decisions made during the design process, and characterisation of the resulting implementation.
小型化、低功耗无线传感器节点的设计与实现
提出了一种具有高度模块化的小型化无线传感器节点。开发了一种尺寸为10mm × 10mm,工作频率为433/868 MHz的收发模块。接口层提供来自可充电电池的稳压电源、USB电池充电和USB通信,以支持收发模块。该节点被设计为支持低占空比应用的极低功耗工作,休眠电流为3.3 muA,传输电流为10.4 mA,接收电流为13.3 mA。小尺寸与模块化水平和能源效率相结合,使该系统适用于各种潜在应用。本文讨论了节点的设计目标、设计过程中的决策以及最终实现的特征。
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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