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Radio transceivers for wireless personal area networks using IEEE802.15.4 - [integrated circuits for communications]

机译:使用IEEE802.15.4的用于无线个人区域网的无线电收发器-[通信集成电路]

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摘要

This article describes the design considerations for low-power short-range radio transceivers with a focus on the 2.4 GHz PHY layer defined as part of the IEEE 802.15.4 standard. The specification requirements for IEEE 802.15.4-compliant transceivers, and the design challenges and practical implementation of a highly-integrated low-power 2.4 GHz transceiver are subsequently discussed. The transceiver uses a direct-conversion receiver with switched antenna diversity and a transmitter using direct closedloop VCO modulation. It integrates a mask-programmable radio controller capable of autonomously performing timing-critical MAC functions, and a sleep timer. Implemented in 0.18 ;C;m RFCMOS technology with a chip area of less than 6 mm2, the transceiver achieves a link margin of 99 dB while drawing 16.8 mA and 18 mA from a 1.8 V supply in receive and transmit mode, respectively.
机译:本文介绍了针对低功率短距离无线电收发器的设计注意事项,重点是定义为IEEE 802.15.4标准一部分的2.4 GHz PHY层。随后讨论了符合IEEE 802.15.4的收发器的规范要求以及高度集成的低功耗2.4 GHz收发器的设计挑战和实际实现。收发器使用具有切换天线分集的直接转换接收器和使用直接闭环VCO调制的发射器。它集成了能够自动执行对时序要求严格的MAC功能的掩模可编程无线电控制器,以及睡眠定时器。该收发器采用0.18; C; m RFCMOS技术实现,芯片面积小于6 mm2,在接收和发送模式下,从1.8 V电源分别汲取16.8 mA和18 mA时,可实现99 dB的链路裕量。

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  • 来源
    《Communications Magazine, IEEE》 |2009年第9期|p.150-158|共9页
  • 作者单位

    (guidoretz@gmail.com) received his Diploma in electrical engineering from the Technical University of Aachen, Germany, in 1995, his M.Eng. and Ph.D. in electronics engineering from the University of Limerick, Ireland, n 2000 and 2003, respectively. He joined the RF networking and component division at Analog Devices, Cork, Ireland, in 2003 where he was a staff design engineer working on integrated low-power ISM-band transceivers. He is now with Bosch Sensortec GmbH, Reutlingen, Germany.;

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