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A 60GHz 144-element phased-array transceiver with 51dBm maximum EIRP and ±60° beam steering for backhaul application

机译:具有51dBm的60GHz 144元件相控阵收发器,最大EIRP和±60°波束转向用于回程应用

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The 802.11ad standard (WiGig) provides throughput speeds of multi-Gb/s covering tens of meters and uses beamforming in the four 2GHz-wide channels in the 60gHz ISM band. Conventional backhaul solutions, on the other hand, are designed with high gain directional antennas with no electronic beam steering and have high cost for installation and alignment of antennas. This paper presents a full-featured 802.11ad chipset with 144-element phased array using a tiled approach and CMOS IPs developed for WiGig to address low-cost municipal WiFi, small-cell backhauling, and broadband to home covering the last mile. Designed with a link budget of 120dB+, the phased-array solution can be mounted on top of lamp posts and roof-top buildings covering a 200m LOS, and with tens of hops a range of 2km can be covered from a single point of fiber. Moreover, the steerable phased arrays enable dynamic routing optimization between hopping nodes in a mesh network.
机译:802.11AD标准(Wigig)提供了多GB / s覆盖的吞吐量,在60GHz ISM频段中的四个2GHz范围通道中使用波束成形。另一方面,常规的回程解决方案采用高增益定向天线设计,没有电子束转向,并且具有高成本的天线的安装和对准。本文介绍了一个全功能的802.11ad芯片组,使用瓷砖方法和CMOS IPS为Wigig开发的CMOS IPS,以解决低成本的市政WiFi,小型电池回程和宽带回家覆盖最后一英里。使用120dB +的链路预算设计,分阶段阵列解决方案可以安装在灯柱顶部和覆盖200米洛杉矶的屋顶建筑物,并且可以从单点纤维覆盖2km的数十杯。此外,可转向相控阵列使网状网络中的跳跃节点之间的动态路由优化能够实现。

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