首页> 外文期刊>IEEE Journal of Solid-State Circuits >Millimeter-Scale Node-to-Node Radio Using a Carrier Frequency-Interlocking IF Receiver for a Fully Integrated 4 imes 4 imes
【24h】

Millimeter-Scale Node-to-Node Radio Using a Carrier Frequency-Interlocking IF Receiver for a Fully Integrated 4 imes 4 imes

机译:如果接收器用于完全集成的4 times

获取原文
获取原文并翻译 | 示例
           

摘要

Ultralow-power (ULP) mm-scale Internet-of-Things (IoT) platforms enable newly emerging applications such as pervasive agricultural monitoring and biosensing. Although there is an increasing interest in node-to-node communication as defined in Bluetooth v5.0, prior research in mm-scale wireless systems is mostly limited to asymmetric node-to-gateway communications. We present a 2.4-GHz node-to-node communication system for an ultra-small wireless sensor node fully integrated within a 4 $imes $ 4 $imes $ 4 mm(3) form factor. The system integrates multiple stacked layers including an RF transceiver, a ULP processor, a photovoltaic (PV) cell, a 32-kHz crystal, and a 3-D magnetic dipole antenna. The transceiver front-end circuit is co-designed with a printed 3-D magnetic dipole antenna to form a power oscillator for the transmitter (TX) as well as a $Q$ -enhanced amplifier (QEA) for the receiver (RX). A new carrier frequency-interlocking IF architecture successfully mitigates the TX-RX carrier frequency synchronization challenge that is critical to the mm-scale radio systems. The complete system achieves -94-dBm sensitivity with 97- $mu ext {W}$ power consumption and -12.6-dBm equivalent isotropically radiated power (EIRP). Standalone operation of a sensor node is demonstrated through bi-directional wireless communication to another sensor node over 1-m distance in real, uncontrolled wireless channels.
机译:UltraLow-Power(ULP)MM级互联网(IOT)平台实现新兴应用,例如普遍的农业监测和生物传感。尽管在蓝牙V5.0中定义的节点节点通信中存在越来越兴趣,但是MM级无线系统的现有研究主要限于非对称节点到网关通信。我们为超小型无线传感器节点提供了2.4-GHz节点到节点通信系统,完全集成在4 $ 倍$ 4 $ times $ 4 mm(3)形状因子内。该系统集成了包括RF收发器,ULP处理器,光伏(PV)单元,32-KHz晶体和3-D磁性偶极天线的多个堆叠层。收发器前端电路与印刷的3-D磁性偶极天线共同设计,以形成发射器(TX)的电源振荡器以及接收器(RX)的$ Q $-enchizer(QEA)。一种新的载波频率互锁,如果架构成功地减轻了对MM级无线电系统至关重要的TX-RX载波频率同步挑战。完整的系统实现-94-DBM灵敏度,具有97- $ mu text {w} $电力消耗和-12.6-dbm等效的各向同性辐射功率(eirp)。传感器节点的独立操作是通过双向无线通信来证明到另一个传感器节点,其在真实的不受控制的无线通道中超过1米的传感器节点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号