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A 77-GHz Phased-Array Transceiver With On-Chip Antennas in Silicon: Transmitter and Local LO-Path Phase Shifting

机译:硅片上带有天线的77 GHz相控阵收发器:发射器和本地LO路径相移

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摘要

Integration of mm-wave multiple-antenna systems on silicon-based processes enables complex, low-cost systems for high-frequency communication and sensing applications. In this paper, the transmitter and LO-path phase-shifting sections of the first fully integrated 77-GHz phased-array transceiver are presented. The SiGe transceiver utilizes a local LO-path phase-shifting architecture to achieve beam steering and includes four transmit and receive elements, along with the LO frequency generation and distribution circuitry. The local LO-path phase-shifting scheme enables a robust distribution network that scales well with increasing frequency and/or number of elements while providing high-resolution phase shifts. Each element of the heterodyne transmitter generates +12.5 dBm of output power at 77 GHz with a bandwidth of 2.5 GHz leading to a 4-element effective isotropic radiated power (EIRP) of 24.5 dBm. Each on-chip PA has a maximum saturated power of +17.5 dBm at 77 GHz. The phased-array performance is measured using an internal test option and achieves 12-dB peak-to-null ratio with two transmit and receive elements active
机译:在基于硅的工艺中集成毫米波多天线系统,可为高频通信和传感应用提供复杂的低成本系统。在本文中,介绍了第一个完全集成的77 GHz相控阵收发器的发射机和LO路径相移部分。 SiGe收发器利用本地LO路径相移架构来实现波束控制,并包括四个发射和接收元件,以及LO频率生成和分配电路。本地LO路径相移方案可实现强大的配电网络,该网络可随频率和/或元件数量的增加而很好地扩展,同时提供高分辨率的相移。外差发射器的每个元件在77 GHz时产生+12.5 dBm的输出功率,带宽为2.5 GHz,导致4元素有效各向同性辐射功率(EIRP)为24.5 dBm。每个片上功率放大器在77 GHz时的最大饱和功率为+17.5 dBm。使用内部测试选件测量相控阵性能,并在两个发射和接收元件处于活动状态时达到12 dB的峰均比

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