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JSSC 2019第9期RF & Wireless0.18µm SiGe BiCMOSPLLPhased Array

A Fully Integrated 384-Element, 16-Tile, W -Band Phased Array With Self-Alignment and Self-Test

介绍了一种基于TowerJazz 0.18µm SiGe BiCMOS工艺的可扩展W波段相控阵系统,具有自对准和自测试功能。
384-element (256TX/128RX), 60 dBm EIRP, 10 Gb/s data rate at 90.7 GHz
W波段相控阵自对准SiGe BiCMOS高数据速率
内置自对准和自测试功能
采用有机PCB中介层与天线子阵列集成
通过菊花链本地振荡器同步信号实现瓦片间相位对齐
Abstract
This paper describes the design and implementation of a scalable W-band phased-array system, with built-in self- alignment and self-test, based on an RFIC transceiver chipset manufactured in the TowerJazz 0.18- µm SiGe BiCMOS tech- nology with f T / fMAX of 240/270 GHz. The RFIC integrates 24 phase-shifter elements (16TX/8RX or 8TX/16RX) as well as direct up- and down-converters, phase-locked loop with prime-ratio frequency multiplier, analog baseband, beam lookup memory, and diagnostic circuits for performance monitoring. Two organic printed circuit board (PCB) interposers with integrated antenna sub-arrays are designed and co-assembled with the RFIC chipsets to produce a scalable phased-array tile. Tiles are phase-aligned to one another through a daisy-chained local oscillator (LO) synchronization signal. Statistical analysis of the effects of LO misalignment between tiles on beam patterns is presented. Sixteen tiles are combined onto a carrier PCB to create a 384-element (256TX/128RX) phased-array system. A maximum saturated effective isotropic radiated power (EIRP) of 60 dBm (1 kW) is measured at boresight for the 256 transmit elements. Wireless links operating at 90.7 GHz using a 16-QAM constellation at a reduced EIRP of 52 dBm produced data rates beyond 10 Gb/s for an equivalent link distance in excess of 250 m.