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15.2 A 90ns/V Fast-Transition Symbol-Power-Tracking Buck Converter for 5G mm-Wave Phased-Array Transceiver

机译:15.2 A 90ns / V快速转换符号 - 电源跟踪降压转换器,用于5G mm波相控阵收发器

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The 5G-New-Radio (NR) standard in millimeter wave (mm-wave) bands requires a low-cost antenna module consisting of a phased-array transceiver with beamforming [1], an antenna array, and a power management IC (PMIC). Since a typical on-chip mm-wave CMOS power-amplifier (PA) arrays have poor power efficiency due to the lossy substrate and the low maximum available-gain frequency of CMOS processes, they cause serious thermal issues due to the high power density and reduce battery life in a mobile handset. Recently, supply-modulation (SM) techniques, such as an envelope tracking (ET) and an average-power tracking (APT) instead of a direct battery-connected supply, have been introduced to enhance PA efficiency [2]. However, these techniques have few challenges, such as limited ET tracking bandwidth and APT transition time, to support new requirements of the 5G NR standard. In order to manage the power effectively of a phased-array module, a special SM technique named symbol-power tracking (SPT) is proposed for the power management in this work. The SPT controls the supply voltage of mm-wave PA arrays every few micro-second (symbol to symbol), which is much faster than that of APT, which adjusts the output voltage every one millisecond (sub-frame to sub-frame).
机译:的5G-NEW-无线电(NR)在毫米波(毫米波)频带标准要求组成的低成本天线模块的相控阵收发器与波束形成[1],天线阵列,和功率管理集成电路(PMIC )。由于典型的片上毫米波CMOS功率放大器(PA)阵列具有功率效率差,由于有损基板与CMOS工艺的低的最大可用的增益频率,它们会导致由于高功率密度严重热问题和减少在手机的电池寿命。最近,供给调制(SM)技术,如包络跟踪(ET)和平均功耗跟踪(APT),而不是直接电池连接的电源,已被引入来提高功率放大器的效率[2]。然而,这些技术有一些挑战,比如有限的ET跟踪带宽和APT的过渡时间,支持5G NR标准的新要求。为了有效的相控阵模块的管理力量,一种特殊的SM技术命名为符号功率跟踪(SPT)提出了这项工作的电源管理。该SPT控制毫米波PA阵列的电源电压每隔几微秒(符号到符号),这是比的APT,其调整所述输出电压每一毫秒(子帧到子帧)快得多。

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