完全集成的28纳米蓝牙低功耗发射器,在3dBm时系统效率为36%

F. Kuo, M. Babaie, H. Chen, K. Yen, Jinn-Yeh Chien, Lan-chou Cho, F. Kuo, C. Jou, F. Hsueh, R. Staszewski
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引用次数: 7

摘要

我们提出了一种新的超低功率无线电发射机(TX)架构。全数字锁相环采用带有开关电流源的数字控制振荡器,在不牺牲相位噪声和启动裕度的情况下降低电源电压和功率。它还降低了1/f噪声,允许ADPLL在沉降后降低其采样率或在直接DCO数据调制期间完全关闭它。开关功率放大器在e /F2类工作的同时集成了匹配网络,最大限度地提高了效率。发射器采用28nm CMOS实现,满足所有金属密度和其他制造规则。它消耗3.6 mW/5.5mW,同时在蓝牙低功耗中提供0dBm/ 3dbm射频功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A fully integrated 28nm Bluetooth Low-Energy transmitter with 36% system efficiency at 3dBm
We propose a new transmitter (TX) architecture for ultra-low power radios. An all-digital PLL employs a digitally controlled oscillator with switching current sources to reduce supply voltage and power without sacrificing its phase noise and startup margins. It also reduces 1/f noise allowing the ADPLL, after settling, to reduce its sampling rate or shut it off entirely during direct DCO data modulation. The switching power amplifier integrates its matching network while operating in class-E/F2 to maximally enhance its efficiency. The transmitter is realized in 28nm CMOS and satisfies all metal density and other manufacturing rules. It consumes 3.6 mW/5.5mW while delivering 0dBm/3 dBm RF power in Bluetooth Low-Energy.
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