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A Fully Integrated Bluetooth Low-Energy Transmitter in 28 nm CMOS With 36% System Efficiency at 3 dBm

机译:采用28 nm CMOS的全集成蓝牙低功耗发射机,在3 dBm时系统效率为36%

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摘要

We propose a new transmitter architecture for ultra-low power radios in which the most energy-hungry RF circuits operate at a supply just above a threshold voltage of CMOS transistors. An all-digital PLL employs a digitally controlled oscillator with switching current sources to reduce supply voltage and power without sacrificing its startup margin. It also reduces 1/f noise and supply pushing, thus allowing the ADPLL, after settling, to reduce its sampling rate or shut it off entirely during a direct DCO data modulation. The switching power amplifier integrates its matching network while operating in class-E/F2 to maximally enhance its efficiency at low voltage. The transmitter is realized in 28 nm digital CMOS and satisfies all metal density and other manufacturing rules. It consumes 3.6 mW/5.5 mW while delivering 0 dBm/3 dBm RF power in Bluetooth Low-Energy mode.
机译:我们为超低功率无线电提出了一种新的发射机架构,其中最耗能的RF电路在电源上工作,而电源电压刚好高于CMOS晶体管的阈值电压。全数字PLL采用带有开关电流源的数控振荡器,以在不牺牲启动裕度的情况下降低电源电压和功耗。它还降低了1 / f噪声和电源推动,从而使ADPLL在建立之后能够降低其采样率或在直接DCO数据调制期间完全将其关闭。开关功率放大器在E / F2级工作时集成了其匹配网络,以最大程度地提高其低电压效率。该发射器采用28 nm数字CMOS实现,并满足所有金属密度和其他制造规则。在蓝牙低功耗模式下,它的功耗为3.6 mW / 5.5 mW,同时提供0 dBm / 3 dBm的RF功率。

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